Fluorinated amide electrolytes represent a promising solution for high-energy density lithium metal batteries,yet their application in Ni-rich layered oxide cathodes is hindered by interfacial instability.This study d...Fluorinated amide electrolytes represent a promising solution for high-energy density lithium metal batteries,yet their application in Ni-rich layered oxide cathodes is hindered by interfacial instability.This study develops a nonflammable fluorinated amide-based deep eutectic electrolyte modified with fluoroethylene carbonate,which simultaneously enhances ionic conductivity(1.5×10-4 S cm-1)and anodic stability(>4.4 V vs Li+/Li).Applied in Li/NCM811 batteries,the fluoroethylene carbonate-based electrolyte enables 83.2%capacity retention after 200 cycles at 0.5 C,significantly outperforming conventional counterparts.ToF-SMIS and XPS tests reveal that fluoroethylene carbonate facilitates the formation of a LiF-rich cathode-electrolyte interphase,suppressing parasitic reactions and improving Li+transport kinetics.Furthermore,the electrolyte demonstrates superior lithium metal compatibility,inhibiting dendrite growth while enhancing thermal safety.These findings underscore the critical role of fluorinated amide electrolytes in stabilizing Ni-rich cathodes and highlight their potential for next-generation high-voltage lithium metal batteries.展开更多
Radical cycloaddition reactions(RCRs) are highly effective methods for constructing complex carbo-and heterocycles,which are frequently encountered in natural products that exhibit intriguing biological properties and...Radical cycloaddition reactions(RCRs) are highly effective methods for constructing complex carbo-and heterocycles,which are frequently encountered in natural products that exhibit intriguing biological properties and hold significant potential for applications in medicinal chemistry.Radical-mediated cycloaddition strategies,which recycle radical character,are particularly appealing because they require only a catalytic amount of reagent and promise reactions with theoretically high atom economy.This review focuses on recent developments and synthetic applications in RCRs,with an emphasis on visible lightinduced radical photocycloaddition reactions(RPCRs),transition metal-catalyzed approaches,and small molecule-catalyzed methods.By highlighting some outstanding innovations and addressing current challenges,this review aims to identify potential areas for improvement.These advancements will provide more efficient pathways for the synthesis of natural product molecules and offer valuable insights for the development of new synthetic methodologies.展开更多
Discriminative region localization and efficient feature encoding are crucial for fine-grained object recognition.However,existing data augmentation methods struggle to accurately locate discriminative regions in comp...Discriminative region localization and efficient feature encoding are crucial for fine-grained object recognition.However,existing data augmentation methods struggle to accurately locate discriminative regions in complex backgrounds,small target objects,and limited training data,leading to poor recognition.Fine-grained images exhibit“small inter-class differences,”and while second-order feature encoding enhances discrimination,it often requires dual Convolutional Neural Networks(CNN),increasing training time and complexity.This study proposes a model integrating discriminative region localization and efficient second-order feature encoding.By ranking feature map channels via a fully connected layer,it selects high-importance channels to generate an enhanced map,accurately locating discriminative regions.Cropping and erasing augmentations further refine recognition.To improve efficiency,a novel second-order feature encoding module generates an attention map from the fourth convolutional group of Residual Network 50 layers(ResNet-50)and multiplies it with features from the fifth group,producing second-order features while reducing dimensionality and training time.Experiments on Caltech-University of California,San Diego Birds-200-2011(CUB-200-2011),Stanford Car,and Fine-Grained Visual Classification of Aircraft(FGVC Aircraft)datasets show state-of-the-art accuracy of 88.9%,94.7%,and 93.3%,respectively.展开更多
Exploring new structures and properties of matter is a central topic in condensed matter physics.In this work,firstprinciples calculations and structure prediction methods were employed to investigate fluorine-rich yt...Exploring new structures and properties of matter is a central topic in condensed matter physics.In this work,firstprinciples calculations and structure prediction methods were employed to investigate fluorine-rich yttrium compounds.Two new stable phases,Pmmn-YF3and Amm2-YF6,have been identified under high pressure.Pmmn-YF3is stable over a pressure range of 50 GPa to 500 GPa,and Amm2-YF6remains stable at pressures beyond 429 GPa.Analysis of the band structure,density of states(DOS),and Bader charge for these two stable compounds reveals that Pmmn-YF3is an insulator and Amm2-YF6is a metal,elucidating their chemical bonding characteristics.F-F bond lengths and Bader charge analysis confirm the+3 oxidation state of yttrium in the molecular crystal YF3and the crystal structure YF6.Our work provides a valuable theoretical foundation for elucidating the properties of the rare earth transition metal yttrium.展开更多
The anaphase-promoting complex/cyclosome(APC/C),a multiunit-E3 ligase,governs both mitotic and non-mitotic pathways by interacting with ubiquitinated proteins.However,developmental functions of APC/C subunits in tomat...The anaphase-promoting complex/cyclosome(APC/C),a multiunit-E3 ligase,governs both mitotic and non-mitotic pathways by interacting with ubiquitinated proteins.However,developmental functions of APC/C subunits in tomato have been rarely studied.Here,we identified a total of nine APC/C subunits in tomato genome and established their functions in leaf and fruit development via VIGS gene silencing technology.Protein interactions between subunits revealed that tomato'Heinz 1706'had a slightly different APC/C structure from other systems,in which APC8 and APC10 had the most interactions.Silencing APC/C subunits in tomato led to smaller plants with significantly reduced plant height,biomass,leaf area,flower size and fruit size.Cytological analyses confirmed that silencing APC/C subunits repressed both cell division and expansion in tomato leaves and fruits.Both flow cytometric and mitotic index analyses verified the positive role of APC/C in regulating M phase of cell cycle,which led to increased DNA contents in cells of silencing plants.APC1,APC2,APC4,APC11 and CDC27a had more impacts on the floral organ development than other subunits.Silencing APC/C subunits reduced the pollen viability due to unbalanced meiotic division.APC4 and APC6 were important for the fruit maturation while APC1,APC4 and APC10 modulated the fruit shape.Taken together,our findings illustrate that APC/C is essential for tomato development through the modulation of mitotic and meiotic division,and different subunits may have distinct or more profound impacts on the certain tissue development than others.展开更多
Thermo-responsive hydrogels based on poly(N-isopropylacrylamide)(PNIPAM)are promising candidates for soft actuation,yet their practical applications are often constrained by sluggish thermo-responsive kinetics and ins...Thermo-responsive hydrogels based on poly(N-isopropylacrylamide)(PNIPAM)are promising candidates for soft actuation,yet their practical applications are often constrained by sluggish thermo-responsive kinetics and insufficient mechanical robustness.Herein,phosphotungstic acid(PTA),a tungsten-containing polyoxometalate,was incorporated to regulate the phase transition behavior and modulate a PNIPAM/P(AA-co-AM)bilayer hydrogel,in which the thermo-responsive PNIPAM layer serves as the actuator whereas the non-thermo-responsive P(AA-co-AM)layer provides mechanical support.By increasing the PTA content up to 4 wt%,the thermally induced deformation time of the PNIPAM layer was prolonged from 30 to 120 s,whereas the recovery time at low temperature was shortened from 120 to 60 min,thereby enabling programmable thermo-responsive kinetics.The thermal transition of the PTA-PNIPAM layer was effectively regulated by PTA,with the lower critical solution temperature(LCST)gradually increasing and tunable up to 42℃,accompanied by an improved thermal stability manifested by reduced mass loss at 150℃.Mechanical characterization demonstrated that the P(AA-co-AM)layer modulated the tensile properties of hydrogel networks,and the bilayer configuration significantly outperformed the pristine PNIPAM hydrogel.Benefiting from the synergistic effects of kinetic regulation and mechanical modulation,the bilayer hydrogel further exhibited multi-substrate adhesion and reversible deformation,enabling an underwater gripping demonstration.This work highlights a polyoxometalate-enabled strategy for simultaneously controlling thermo-responsive kinetics and toughening PNIPAM-based hydrogels,thereby advancing functional soft materials for actuation-related applications.展开更多
TMPRSS2 plays a crucial role in facilitating the entry of both the influenza virus and the SARSCoV-2 coronavirus into host cells.Recent studies have identified a guanine-rich sequence in the proximal promoter region o...TMPRSS2 plays a crucial role in facilitating the entry of both the influenza virus and the SARSCoV-2 coronavirus into host cells.Recent studies have identified a guanine-rich sequence in the proximal promoter region of the TMPRSS2 gene,which can form G-quadruplex structures(TMPRSS2-G4s)that are potential targets for small molecules to inhibit TMPRSS2 expression.However,the structural details of the major TMPRSS2-G4 and its complex with small molecules remain unknown,hindering the development of antiviral drugs targeting TMPRSS2-Gquadruplexes(G4s).This study reports the first high-resolution nuclear magnetic resonance(NMR)solution structure of the major TMPRSS2-G4,which consists of a three-tetrad core parallel-stranded G4.Both 3′and 5′flanking regions form well-defined capping structures stabilized by multiple hydrogen bonds.Importantly,we found that berberine,an antiviral alkaloid,strongly binds to the major TMPRSS2-G4 and determined its binding complex structure with TMPRSS2-G4 at a 2∶1 binding stoichiometry.Each berberine molecule recruits an adjacent flanking residue,forming a coplanar structure superimposed on two outer G-tetrads.Moreover,we demonstrated that the major TMPRSS2-G4 can stably form within a longer deoxyribonucleic acid(DNA)context and be targeted by small molecules to inhibit DNA polymerase activity.Overall,this study provides structural insights into the recognition mechanism of small molecules by the major TMPRSS2-G4 and may facilitate the development of novel antiviral therapeutics targeting TMPRSS2-G4.展开更多
To develop herbicides with a novel mechanism of action,a series of 1,3,4-oxadiazolpyridine derivatives were designed and synthesized based on active substructure splicing and structure optimization.These derivatives(5...To develop herbicides with a novel mechanism of action,a series of 1,3,4-oxadiazolpyridine derivatives were designed and synthesized based on active substructure splicing and structure optimization.These derivatives(5aa-5bd)were characterized by their melting points,1H and13C nuclear magnetic resonance spectroscopy,and high-resolution mass spectrometry.The configuration of 5 al was determined using single-crystal X-ray diffraction.Additionally,5 al exhibited excellent herbicidal activity at a dosage of 75 g/hm2,showing an EC 50 of 4.03 g/hm2against both E.crus-galli and quinclorac-resistant E.crus-galli.At a dosage of 375 g/hm 2,5 al was safe for application on rice and sorghum and showed low toxicity(>200μg/g)towards Apis mellifera.After treatment with 5 al,the lamellae of the chloroplast grana of barnyard grass leaves were stacked disorderly and arranged loosely,and some thylakoids were broken,as observed by transmission electron microscopy.Transcriptomics analysis of E.crus-galli revealed that 5 al affects the defense response,membranes,plasma membranes,and chloroplasts of differentially expressed genes,which alter membrane permeability and energy metabolism,potentially leading to plant death.Thus,we successfully developed a novel molecular scaffold with a new mechanism of action that exhibits herbicidal activity against resistant E.crus-galli.Therefore,further development of lead herbicides based on this scaffold is required.展开更多
Deforestation is one of the most serious environmental problems facing humankind.It continues to escalate rapidly across many regions of the world,thereby deteriorating the forest soil quality.This has prompted a larg...Deforestation is one of the most serious environmental problems facing humankind.It continues to escalate rapidly across many regions of the world,thereby deteriorating the forest soil quality.This has prompted a large number of field-based studies aimed at understanding the impacts of deforestation on soil properties.However,the lack of comprehensive meta-analyses that utilized these studies has limited our deeper understanding of how different soil properties,including the soil organic carbon(SOC)pool,respond to deforestation.To address this critical knowledge gap,we conducted a meta-analysis of 144 studies to explore the impacts of deforestation on soil chemical,physical,and biological properties,with special emphasis on the long-term changes in SOC,such as concentrations,stocks,and sequestration.The results revealed that deforestation significantly decreased soil organic matter,electrical conductivity,and base saturation by 52%,50%,and 98%,respectively.While deforestation increased soil total nitrogen content and decreased available phosphorus content by 51%and 99%,respectively,it resulted in slight decreases in some chemical properties,including soil pH(1%)and base cations(1%–13%).Deforestation significantly increased bulk density by 27%and soil erosion by 47%,but significantly decreased soil aggregate stability by 39%and saturated hydraulic conductivity by 63%.Soil microbial biomass C and N concentrations and enzyme activities were significantly decreased as a consequence of deforestation.Soil biological properties were much more affected by deforestation than soil physical and chemical properties.Regarding the SOC,the land use conversion from forest to pasture significantly increased SOC concentrations,stocks,and sequestration rates(11%–13%),whereas the land use conversions from forest to both plantation and cropland significantly decreased SOC concentrations,stocks,and sequestration rates(10%–43%).This observed decline in SOC accumulations decreased with increasing years after deforestation.The SOC dynamics following deforestation were predominantly regulated by microbial biomass concentrations,dehydrogenase activity,soil erosion,saturated hydraulic conductivity,aggregate stability,as well as concentrations of total organic carbon,total nitrogen,total phosphorus and organic matter.The present meta-analytical study provides compelling evidence that deforestation can induce profound changes in soil characteristics,including soil C contents,and has significant implications for soil health sustainability and climate change mitigation.展开更多
Gossypium raimondii(2n=2x=26,D5),an untapped wild species,is the putative progenitor of the D-subgenome of G.hirsutum(2n=4x=52,AD1),an extensively cultivated species.Here,we developed a G.hirsutum(recipient)–G....Gossypium raimondii(2n=2x=26,D5),an untapped wild species,is the putative progenitor of the D-subgenome of G.hirsutum(2n=4x=52,AD1),an extensively cultivated species.Here,we developed a G.hirsutum(recipient)–G.raimondii(donor)introgression population to exploit the favorable QTLs/genes and mapped potential quantitative trait loci(QTLs)from wild cotton species.The introgression population consisted of 256 lines with an introgression rate of 52.33%for the G.raimondii genome.The introgression segment length range was 0.03–19.12 Mb,with an average of 1.22 Mb.The coverage of total introgression fragments from G.raimondii was 386.98 Mb.Further genome-wide association analysis(Q+K+MLM)and QTL mapping(RSTEP-LRT)identified 59 common QTLs,including 14 stable QTLs and six common QTL(co-QTL)clusters,and one hotspot of micronaire(MIC).The common QTLs for seed index all showed positive additive effects,while the common QTLs for boll weight all had negative additive effects,indicating that the linkage between seed index and boll weight could be broken.QTLs for lint percentage showed positive effects and could be beneficial for improving cotton yield.Most QTLs for fiber quality had negative additive effects,implying these QTLs were domesticated/improved in G.hirsutum.A few fiber quality QTLs showed positive additive effects,so they could be used to improve cotton fiber quality.The introgression lines developed could be useful for molecular marker-assisted breeding and mapping QTLs precisely for mining desirable genes from the wild species G.raimondii.Such genes can improve cultivated cotton in the future through a designbreeding approach.展开更多
We successfully prepared a series of rare-earth doped borosilicate glasses using the melt-quenching method,and carefully investigated the luminescent properties and the spectral modulation of Tb/Eucodoped borosilicate...We successfully prepared a series of rare-earth doped borosilicate glasses using the melt-quenching method,and carefully investigated the luminescent properties and the spectral modulation of Tb/Eucodoped borosilicate glasses under UV(200-400 nm)excitation.The results show that the prepared samples have the characteristics of broadband response,excellent transparency and tunable luminescence.By adjusting the excitation wavelength,the emissions of Tb3+,Eu2+and Eu3+ions are observed,which exhibit yellow-green,blue,red color and multi-color even white emissions,respectively.Moreover,the energy transfer between Tb3+and Eu3+ions in the codoped glasses is confirmed.Tb3+absorbs a large number of solar-blind light,transfers to Eu3+and results in intense visible emission in a wide waveband range.This makes the Tb/Eu co-doped glass a desirable candidate for solar-blind light detections.The photodetection system was built and shows a strong and stable response to the UV light of 210-400 nm.Due to broad detection range,high sensitivity and stability,our results offer strong implications for the development of photodetection device for diverse applications.展开更多
TypeⅠinterferon(IFN)-mediated innate immune responses represent the first line of host defense against viral infection.However,the molecular mechanisms by which avian infuenza virus(AIV)inhibits typeⅠIFN production ...TypeⅠinterferon(IFN)-mediated innate immune responses represent the first line of host defense against viral infection.However,the molecular mechanisms by which avian infuenza virus(AIV)inhibits typeⅠIFN production in ducks are not well understood.Here,we frst found that the polymerase basic 2(PB2)protein of H5N1 subtype AIV inhibited the typeⅠIFN responses by targeting duck mitochondrial antiviral signaling protein(MAVS).We further demonstrated that H5N1-PB2 bound to theΔtransmembrane(ΔTM)domain of duck MAVS,and the polymerase basic 1(PB1)binding domain(PBD)and RNA binding nuclear import domain(RND)of H5N1-PB2 interacted with MAVS to inhibit typeⅠIFN expression in ducks.Collectively,our fndings contribute to understanding the molecular mechanism by which AIV proteins regulate the retinoic acid-inducible geneⅠ(RIG-Ⅰ)-like receptor(RLR)signaling pathway to evade host antiviral immune responses in ducks.展开更多
Modern pharmacology has found that both Realgar and Coptis chinensis can induce apoptosis in tumor cells,and tra-ditional Chinese medicine theory suggests the possibility of combining the two,however,the specific mech...Modern pharmacology has found that both Realgar and Coptis chinensis can induce apoptosis in tumor cells,and tra-ditional Chinese medicine theory suggests the possibility of combining the two,however,the specific mechanisms involved have not been elucidated.This study investigated the therapeutic mechanism of the Realgar-Coptis chin-ensis drug pair(RCCD)against hepatocellular carcinoma(HCC)by identifying its key active compounds and targets.Through integrated LC-MS analysis,transcriptomics,network pharmacology,and bioinformatics,we identified the mechanism of action,key bioactive compounds,and core targets.Molecular docking,molecular dynamics simula-tions,and microscale thermophoresis(MST)validated the binding affinity between key compounds and core targets.TIMER2.0 database was used to analyze the relationship between the core targets and HCC.H22 tumor xenograft mouse model and immunohistochemistry and pathology analyses were performed to validate the antitumor efficacy of the active compounds.RCCD has a high degree of selectivity of lipid metabolism pathway,4-Methylumbellifer-one(4-MU)was the key active compound with strong binding activity to the core target fatty acid synthase(FAS),and 4-MU down-regulated the expression of FASN in tumor tissues and induced apoptosis in HCC cells.In addition,as a hyaluronan synthase(HAS2/3)inhibitor,4-MU interfered with the HA-dependent tumor microenvironment and fibrosis process by inhibiting HAS2/3.Thus,4-MU may inhibit tumor progression by inhibiting FAS and HAS2/3.4-MU extracted from RCCD exerts anti-HCC effects by modulating the activities of FAS and HAS2/3,thereby repro-gramming lipid metabolism and regulating hyaluronan synthesis.展开更多
Background:To comprehensively analyze the clinical characteristics of patients who underwent gastric endoscopic submucosal dissection(ESD)and explore the incidence and influencing factors of postoperative pain.Methods...Background:To comprehensively analyze the clinical characteristics of patients who underwent gastric endoscopic submucosal dissection(ESD)and explore the incidence and influencing factors of postoperative pain.Methods:The clinical data of patients who underwent gastric ESD at our center from 2009 to 2024 were retrospectively analyzed.Pain severity was assessed using a visual analogue scale,with a score≥4 defined as postoperative pain.Based on the presence or absence of postoperative pain,patients were divided into a pain group and a control group.Independent factors influencing postoperative pain were identified using multivariate logistic regression analysis.To control for confounding bias,patients in the case and control groups were matched by sex and lesion size,and the matched participants were further analyzed using a conditional logistic regression model.Results:In total,993 patients were analyzed.The incidence of postoperative pain was 9.1%(95%confidence interval[CI],7.3-11.1).In the univariate analysis,sex,operation duration,anesthesia method,intraoperative electrocoagulation,nasogastric tube placement,and postoperative vomiting were significantly associated with postoperative pain.Multivariate analysis identified eight independent factors:male sex(odds ratio[OR],0.61;95%CI,0.37-0.97;p=0.04),operation duration(OR,1.29;95%CI,1.03-1.63;p=0.02),protuberant lesions(OR,0.43;95%CI,0.26-0.71;p<0.01),antral lesions(OR,1.84;95%CI,1.10-3.05;p=0.01),intubation general anesthesia(OR,0.40;95%CI,0.22-0.72;p=0.002),intraoperative electrocoagulation(OR,0.32;95%CI,0.19-0.55;p<0.01),nasogastric tube placement(OR,2.005;95%CI,1.12-3.57;p=0.01),and postoperative vomiting(OR,3.24;95%CI,1.40-7.47;p=0.005).Conditional logistic regression analysis further identified diabetes mellitus(OR,2.50;95%CI,1.03-6.06;p=0.04).Conclusion:Female sex,diabetes mellitus,concave-type lesions,lesions in the gastric antrum,non-intubation general anesthesia,absence of intraoperative electrocoagulation,prolonged operation duration,nasogastric tube placement,and postoperative vomiting were independent factors associated with moderate to severe pain after gastric ESD.For patients at increased risk of postoperative pain,appropriate prophylactic and therapeutic measures during the perioperative period may effectively alleviate pain following gastric ESD.展开更多
[Objectives]Farmland ginseng cultivation,as a sustainable alternative to traditional forest-clearing ginseng planting,requires systematic evaluation of soil optimization strategies.This study aimed to quantify the lin...[Objectives]Farmland ginseng cultivation,as a sustainable alternative to traditional forest-clearing ginseng planting,requires systematic evaluation of soil optimization strategies.This study aimed to quantify the linkage between soil improvement outcomes and ginseng(Panax ginseng)yield across five regions in Yanbian Korean Autonomous Prefecture.[Methods]Soil improvement trials were conducted using farmland soils,with forest soils as the baseline.Soil nutrient contents were measured via soil agrochemical analysis method using a continuous flow analyzer.Statistical approaches,including significance tests,correlation analysis,and regression analysis,were applied to identify key factors influencing yield.[Results]Ginseng yield exhibited a significant positive correlation with organic matter content and available phosphorus,but a negative correlation with electrical conductivity,ammonium nitrogen,and available potassium.Wangqing and Liucai regions achieved post-improvement yields equivalent to 94%and 88%of forest soil yields,respectively,demonstrating the highest soil similarity to forest ecosystems.[Conclusions]Region-specific soil improvement protocols in Wangqing and Liucai show high replicability and efficacy.These strategies can serve as benchmarks for sustainable farmland ginseng cultivation,minimizing ecological disruption while maintaining productivity.展开更多
With the large-scale commercial launch of fifth generation(5G)mobile network,the development of new services and applications catering to the year 2030,along with the deep convergence of information,communication,and ...With the large-scale commercial launch of fifth generation(5G)mobile network,the development of new services and applications catering to the year 2030,along with the deep convergence of information,communication,and data technologies(ICDT),and the lessons and experiences from 5G practice will drive the evolution of the next generation of mobile networks.This article surveys the history and driving forces of the evolution of the mobile network architecture and proposes a logical function architecture for sixth generation(6G)mobile network.The proposed 6G network architecture is termed SOLIDS(related to the following basic features:soft,on-demand fulfillment,lite,native intelligence,digital twin,and native security),which can support self-generation,self-healing,self-evolution,and self-immunity without human involvement and address the primary issues in the legacy 5G network(e.g.,high cost,high power consumption,and highly complicated operation and maintenance),significantly well.展开更多
Production of mutants with altered phenotypes is a powerful approach for determining the biological functions of genes in an organism. In this study, a high-grain-weight mutant line M8008 was identified from a library...Production of mutants with altered phenotypes is a powerful approach for determining the biological functions of genes in an organism. In this study, a high-grain-weight mutant line M8008 was identified from a library of mutants of the common wheat cultivar YN15 treated with ethylmethane sulfonate(EMS). F2 and F2:3generations produced from crosses of M8008 × YN15(MY) and M8008 × SJZ54(MS) were used for genetic analysis. There were significant differences between M8008 and YN15 in plant height(PH), spike length(SL),fertile spikelet number per spike(FSS), grain width(GW), grain length(GL), GL/GW ratio(GLW), and thousand-grain weight(TGW). Most simple correlation coefficients were significant for the investigated traits, suggesting that the correlative mutations occurred in M8008. Approximately 21% of simple sequence repeat(SSR) markers showed polymorphisms between M8008 and YN15, indicating that EMS can induce a large number of mutated loci. Twelve quantitative trait loci(QTLs) forming QTL clusters(one in MY and two in MS) were detected. The QTL clusters coinciding with(MY population) or near(MS population) the marker wmc41 were associated mainly with grain-size traits, among which the M8008 locus led to decreases in GW, factor form density(FFD), and TGW and to increases in GLW. The cluster in the wmc25–barc168 interval in the MS population was associated with yield traits, for which the M8008 locus led to decreased PH, spike number per plant(SN), and SL.展开更多
Lithium-selenium(Li-Se)battery has attracted growing attention.Nevertheless,its practical application is still impeded by the shuttle effect of the formed polyselenides.Herein,we report in-situ hydrothermal weaving th...Lithium-selenium(Li-Se)battery has attracted growing attention.Nevertheless,its practical application is still impeded by the shuttle effect of the formed polyselenides.Herein,we report in-situ hydrothermal weaving the three-dimensional(3 D)highly conductive hierarchically interconnected nanoporous web by threading microporous metal organic framework MIL-68(Al)crystals onto multi-walled carbon nanotubes(MWCNTs).Such 3 D hierarchically nanoporous web(3 D MIL-68(Al)@MWCNTs web)with a very high surface area,a large amount of micropores,electrical conductivity and elasticity strongly traps the soluble polyselenides during the electrochemical reaction and significantly facilitates lithium ion diffusion and electron transportation.Molecular dynamic calculation confirmed the strong affinity of MIL-68(Al)for the adsorption of polyselenides,quite suitable for Li-Se battery.Their hexahedral channels(1.56 nm)are more efficient for the confinement of polyselenides and for the diffusion of electrolytes compared to their smaller triangular channels(0.63 nm).All these excellent characteristics of 3 D MIL-68(Al)@MWCNTs web with suitable confinement of a large amount of selenium and the conductive linkage between MIL-68(Al)host by MWCNTs result in a high capacity of 453 m Ah/g at 0.2 C with 99.5%coulombic efficiency after 200 cycles with significantly improved cycle stability and rate performance.The 3 D MIL-68(Al)@MWCNTs web presents a good performance in Li-Se battery in term of the specific capacity and cycling stability and also in terms of rate performance compared with all the metal-organic framework(MOF)based or MOF derived porous carbons used in Li-Se battery.展开更多
We report broadband all-fiber optical phase modulation based on the photo-thermal effect in a gas-filled hollow-core fiber.The phase modulation dynamics are studied by multi-physics simulation.A phase modulator is fab...We report broadband all-fiber optical phase modulation based on the photo-thermal effect in a gas-filled hollow-core fiber.The phase modulation dynamics are studied by multi-physics simulation.A phase modulator is fabricated using a 5.6-cm-long anti-resonant hollow-core fiber with pure acetylene filling.It has a half-wave optical power of 289 mW at 100 kHz and an average insertion loss 0.6 dB over a broad wavelength range from 1450 to 1650 nm.The rise and fall time constants are 3.5 and 3.7μs,respectively,2–3 orders of magnitude better than the previously reported microfiber-based photo-thermal phase modulators.The gas-filled hollow-core waveguide configuration is promising for optical phase modulation from ultraviolet to mid-infrared which is challenging to achieve with solid optical fibers.展开更多
基金supported by the National Natural Science Foundation of China(22209059,22139001)Hubei Provincial Natural Science Fundation of China(2025AFA025,2023AFB1117)+1 种基金the Young Talents Research Project of the Department of Education of Hubei Province(Grant No.Q20234401)the Natural Science Foundation of Shandong Province(Grant No.ZR2021QB053)。
摘要Fluorinated amide electrolytes represent a promising solution for high-energy density lithium metal batteries,yet their application in Ni-rich layered oxide cathodes is hindered by interfacial instability.This study develops a nonflammable fluorinated amide-based deep eutectic electrolyte modified with fluoroethylene carbonate,which simultaneously enhances ionic conductivity(1.5×10-4 S cm-1)and anodic stability(>4.4 V vs Li+/Li).Applied in Li/NCM811 batteries,the fluoroethylene carbonate-based electrolyte enables 83.2%capacity retention after 200 cycles at 0.5 C,significantly outperforming conventional counterparts.ToF-SMIS and XPS tests reveal that fluoroethylene carbonate facilitates the formation of a LiF-rich cathode-electrolyte interphase,suppressing parasitic reactions and improving Li+transport kinetics.Furthermore,the electrolyte demonstrates superior lithium metal compatibility,inhibiting dendrite growth while enhancing thermal safety.These findings underscore the critical role of fluorinated amide electrolytes in stabilizing Ni-rich cathodes and highlight their potential for next-generation high-voltage lithium metal batteries.
基金The financial support from the National Natural Science Foundation of China (Nos.22150410339,W2432012,22301237 and 22171218)the Ministry of Science and Technology China (No.wgxz2022188) is greatly acknowledged。
摘要Radical cycloaddition reactions(RCRs) are highly effective methods for constructing complex carbo-and heterocycles,which are frequently encountered in natural products that exhibit intriguing biological properties and hold significant potential for applications in medicinal chemistry.Radical-mediated cycloaddition strategies,which recycle radical character,are particularly appealing because they require only a catalytic amount of reagent and promise reactions with theoretically high atom economy.This review focuses on recent developments and synthetic applications in RCRs,with an emphasis on visible lightinduced radical photocycloaddition reactions(RPCRs),transition metal-catalyzed approaches,and small molecule-catalyzed methods.By highlighting some outstanding innovations and addressing current challenges,this review aims to identify potential areas for improvement.These advancements will provide more efficient pathways for the synthesis of natural product molecules and offer valuable insights for the development of new synthetic methodologies.
基金supported,in part,by the National Nature Science Foundation of China under Grant 62272236,62376128 and 62306139the Natural Science Foundation of Jiangsu Province under Grant BK20201136,BK20191401.
摘要Discriminative region localization and efficient feature encoding are crucial for fine-grained object recognition.However,existing data augmentation methods struggle to accurately locate discriminative regions in complex backgrounds,small target objects,and limited training data,leading to poor recognition.Fine-grained images exhibit“small inter-class differences,”and while second-order feature encoding enhances discrimination,it often requires dual Convolutional Neural Networks(CNN),increasing training time and complexity.This study proposes a model integrating discriminative region localization and efficient second-order feature encoding.By ranking feature map channels via a fully connected layer,it selects high-importance channels to generate an enhanced map,accurately locating discriminative regions.Cropping and erasing augmentations further refine recognition.To improve efficiency,a novel second-order feature encoding module generates an attention map from the fourth convolutional group of Residual Network 50 layers(ResNet-50)and multiplies it with features from the fifth group,producing second-order features while reducing dimensionality and training time.Experiments on Caltech-University of California,San Diego Birds-200-2011(CUB-200-2011),Stanford Car,and Fine-Grained Visual Classification of Aircraft(FGVC Aircraft)datasets show state-of-the-art accuracy of 88.9%,94.7%,and 93.3%,respectively.
基金supported by the National Natural Science Foundation of China(Grant No.12204280)the Natural Science Foundation of Shandong Province(Grant No.ZR2023QA131)+1 种基金the China Postdoctoral Science Foundation(Grant Nos.2023T160396 and 2021M691980)the Youth Innovation Team Plan of Colleges and Universities in Shandong Province(Grant No.2023KJ350)。
摘要Exploring new structures and properties of matter is a central topic in condensed matter physics.In this work,firstprinciples calculations and structure prediction methods were employed to investigate fluorine-rich yttrium compounds.Two new stable phases,Pmmn-YF3and Amm2-YF6,have been identified under high pressure.Pmmn-YF3is stable over a pressure range of 50 GPa to 500 GPa,and Amm2-YF6remains stable at pressures beyond 429 GPa.Analysis of the band structure,density of states(DOS),and Bader charge for these two stable compounds reveals that Pmmn-YF3is an insulator and Amm2-YF6is a metal,elucidating their chemical bonding characteristics.F-F bond lengths and Bader charge analysis confirm the+3 oxidation state of yttrium in the molecular crystal YF3and the crystal structure YF6.Our work provides a valuable theoretical foundation for elucidating the properties of the rare earth transition metal yttrium.
基金the support of Key R&D Program of Shandong Province,China(Grant No.2024LZGC012)National Natural Science Foundation of China(Grant No.31872951)Taian Agricultural Seed Engineering Project(Grant No.2024NYLZ09)。
摘要The anaphase-promoting complex/cyclosome(APC/C),a multiunit-E3 ligase,governs both mitotic and non-mitotic pathways by interacting with ubiquitinated proteins.However,developmental functions of APC/C subunits in tomato have been rarely studied.Here,we identified a total of nine APC/C subunits in tomato genome and established their functions in leaf and fruit development via VIGS gene silencing technology.Protein interactions between subunits revealed that tomato'Heinz 1706'had a slightly different APC/C structure from other systems,in which APC8 and APC10 had the most interactions.Silencing APC/C subunits in tomato led to smaller plants with significantly reduced plant height,biomass,leaf area,flower size and fruit size.Cytological analyses confirmed that silencing APC/C subunits repressed both cell division and expansion in tomato leaves and fruits.Both flow cytometric and mitotic index analyses verified the positive role of APC/C in regulating M phase of cell cycle,which led to increased DNA contents in cells of silencing plants.APC1,APC2,APC4,APC11 and CDC27a had more impacts on the floral organ development than other subunits.Silencing APC/C subunits reduced the pollen viability due to unbalanced meiotic division.APC4 and APC6 were important for the fruit maturation while APC1,APC4 and APC10 modulated the fruit shape.Taken together,our findings illustrate that APC/C is essential for tomato development through the modulation of mitotic and meiotic division,and different subunits may have distinct or more profound impacts on the certain tissue development than others.
基金supported by the National Natural Science Foundation of China(Grant No.22101086)Guangdong Basic and Applied Basic Research Foundation(Grant No.2024A1515030212)Guangzhou Science and Technology Plan Project(Grant No.2025A04J3974)。
摘要Thermo-responsive hydrogels based on poly(N-isopropylacrylamide)(PNIPAM)are promising candidates for soft actuation,yet their practical applications are often constrained by sluggish thermo-responsive kinetics and insufficient mechanical robustness.Herein,phosphotungstic acid(PTA),a tungsten-containing polyoxometalate,was incorporated to regulate the phase transition behavior and modulate a PNIPAM/P(AA-co-AM)bilayer hydrogel,in which the thermo-responsive PNIPAM layer serves as the actuator whereas the non-thermo-responsive P(AA-co-AM)layer provides mechanical support.By increasing the PTA content up to 4 wt%,the thermally induced deformation time of the PNIPAM layer was prolonged from 30 to 120 s,whereas the recovery time at low temperature was shortened from 120 to 60 min,thereby enabling programmable thermo-responsive kinetics.The thermal transition of the PTA-PNIPAM layer was effectively regulated by PTA,with the lower critical solution temperature(LCST)gradually increasing and tunable up to 42℃,accompanied by an improved thermal stability manifested by reduced mass loss at 150℃.Mechanical characterization demonstrated that the P(AA-co-AM)layer modulated the tensile properties of hydrogel networks,and the bilayer configuration significantly outperformed the pristine PNIPAM hydrogel.Benefiting from the synergistic effects of kinetic regulation and mechanical modulation,the bilayer hydrogel further exhibited multi-substrate adhesion and reversible deformation,enabling an underwater gripping demonstration.This work highlights a polyoxometalate-enabled strategy for simultaneously controlling thermo-responsive kinetics and toughening PNIPAM-based hydrogels,thereby advancing functional soft materials for actuation-related applications.
基金supported by the National Natural Science Foundation of China (Nos.82322065,82173707,and 82204241)the Innovation and Entrepreneurship (Shuangchuang) Program of Jiang-su Province (2024)+3 种基金the Natural Science Foundation of Jiangsu Province (No.BK20221039)the Project Program of State Key Laboratory of Natural Medicines (China Pharmaceutical University,No.SKLNMZZ2024JS12)the Fundamental Research Funds for the Central Universities (No.2632025ZD06)the Scientific Research Foundation for High-level Faculty,China Pharmaceutical University (No.3150020065)
摘要TMPRSS2 plays a crucial role in facilitating the entry of both the influenza virus and the SARSCoV-2 coronavirus into host cells.Recent studies have identified a guanine-rich sequence in the proximal promoter region of the TMPRSS2 gene,which can form G-quadruplex structures(TMPRSS2-G4s)that are potential targets for small molecules to inhibit TMPRSS2 expression.However,the structural details of the major TMPRSS2-G4 and its complex with small molecules remain unknown,hindering the development of antiviral drugs targeting TMPRSS2-Gquadruplexes(G4s).This study reports the first high-resolution nuclear magnetic resonance(NMR)solution structure of the major TMPRSS2-G4,which consists of a three-tetrad core parallel-stranded G4.Both 3′and 5′flanking regions form well-defined capping structures stabilized by multiple hydrogen bonds.Importantly,we found that berberine,an antiviral alkaloid,strongly binds to the major TMPRSS2-G4 and determined its binding complex structure with TMPRSS2-G4 at a 2∶1 binding stoichiometry.Each berberine molecule recruits an adjacent flanking residue,forming a coplanar structure superimposed on two outer G-tetrads.Moreover,we demonstrated that the major TMPRSS2-G4 can stably form within a longer deoxyribonucleic acid(DNA)context and be targeted by small molecules to inhibit DNA polymerase activity.Overall,this study provides structural insights into the recognition mechanism of small molecules by the major TMPRSS2-G4 and may facilitate the development of novel antiviral therapeutics targeting TMPRSS2-G4.
基金supported by the National Key Research and Development Program of China(2023YFD1400504)Natural Science Foundation of Hunan Province(2024JJ2036)+3 种基金Natural Science Foundation of China(32172433)Foundation for Tobacco Science of China National Tobacco Corporation(110202401015,(LS-05))Scientific-Innovative of Hunan Agricultural Sciences and Technology(2024CX69)China Agriculture Research System of MOF and MARA(CARS-16-E19)。
摘要To develop herbicides with a novel mechanism of action,a series of 1,3,4-oxadiazolpyridine derivatives were designed and synthesized based on active substructure splicing and structure optimization.These derivatives(5aa-5bd)were characterized by their melting points,1H and13C nuclear magnetic resonance spectroscopy,and high-resolution mass spectrometry.The configuration of 5 al was determined using single-crystal X-ray diffraction.Additionally,5 al exhibited excellent herbicidal activity at a dosage of 75 g/hm2,showing an EC 50 of 4.03 g/hm2against both E.crus-galli and quinclorac-resistant E.crus-galli.At a dosage of 375 g/hm 2,5 al was safe for application on rice and sorghum and showed low toxicity(>200μg/g)towards Apis mellifera.After treatment with 5 al,the lamellae of the chloroplast grana of barnyard grass leaves were stacked disorderly and arranged loosely,and some thylakoids were broken,as observed by transmission electron microscopy.Transcriptomics analysis of E.crus-galli revealed that 5 al affects the defense response,membranes,plasma membranes,and chloroplasts of differentially expressed genes,which alter membrane permeability and energy metabolism,potentially leading to plant death.Thus,we successfully developed a novel molecular scaffold with a new mechanism of action that exhibits herbicidal activity against resistant E.crus-galli.Therefore,further development of lead herbicides based on this scaffold is required.
基金This study was financially supported by the Strategic Priority Research Program of the Chinese Academy of Sciences(Grant No.XDA28020300)the National Natural Science Foundation of China(Grant No.42250410332)+2 种基金the Key Foreign Cooperation Program of the Bureau of International Cooperation of the Chinese Academy of Sciences(Grant No.177GJHZ2022020BS)the‘Double-First Class’Initiative Program for Foreign Talents of Southwest University(Grant No.cstc2021ycjh-bgzxm0002)the‘Prominent Scientist Program’of Chongqing Talents(Grant No.cstc2021ycjh-bgzxm0020)。
摘要Deforestation is one of the most serious environmental problems facing humankind.It continues to escalate rapidly across many regions of the world,thereby deteriorating the forest soil quality.This has prompted a large number of field-based studies aimed at understanding the impacts of deforestation on soil properties.However,the lack of comprehensive meta-analyses that utilized these studies has limited our deeper understanding of how different soil properties,including the soil organic carbon(SOC)pool,respond to deforestation.To address this critical knowledge gap,we conducted a meta-analysis of 144 studies to explore the impacts of deforestation on soil chemical,physical,and biological properties,with special emphasis on the long-term changes in SOC,such as concentrations,stocks,and sequestration.The results revealed that deforestation significantly decreased soil organic matter,electrical conductivity,and base saturation by 52%,50%,and 98%,respectively.While deforestation increased soil total nitrogen content and decreased available phosphorus content by 51%and 99%,respectively,it resulted in slight decreases in some chemical properties,including soil pH(1%)and base cations(1%–13%).Deforestation significantly increased bulk density by 27%and soil erosion by 47%,but significantly decreased soil aggregate stability by 39%and saturated hydraulic conductivity by 63%.Soil microbial biomass C and N concentrations and enzyme activities were significantly decreased as a consequence of deforestation.Soil biological properties were much more affected by deforestation than soil physical and chemical properties.Regarding the SOC,the land use conversion from forest to pasture significantly increased SOC concentrations,stocks,and sequestration rates(11%–13%),whereas the land use conversions from forest to both plantation and cropland significantly decreased SOC concentrations,stocks,and sequestration rates(10%–43%).This observed decline in SOC accumulations decreased with increasing years after deforestation.The SOC dynamics following deforestation were predominantly regulated by microbial biomass concentrations,dehydrogenase activity,soil erosion,saturated hydraulic conductivity,aggregate stability,as well as concentrations of total organic carbon,total nitrogen,total phosphorus and organic matter.The present meta-analytical study provides compelling evidence that deforestation can induce profound changes in soil characteristics,including soil C contents,and has significant implications for soil health sustainability and climate change mitigation.
基金funded by the National Key Research and Development Program of China(2016YFD0100203 and 2016YFD0102000)the Key Scientific and Technological Projects of the Eighth Division of the Xinjiang Production and Construction Corps(XPCC),China(2024NY01,2023 NY09,2023 NY10)+2 种基金the Key Scientific and Technological Project of XPCC,China(2021AB010)the Postgraduate Research&Practice Innovation Program of Jiangsu Province,China(KYCX22_0748)supported by the High-performance Computing Platform of the Bioinformatics Center,Nanjing Agricultural University,China。
摘要Gossypium raimondii(2n=2x=26,D5),an untapped wild species,is the putative progenitor of the D-subgenome of G.hirsutum(2n=4x=52,AD1),an extensively cultivated species.Here,we developed a G.hirsutum(recipient)–G.raimondii(donor)introgression population to exploit the favorable QTLs/genes and mapped potential quantitative trait loci(QTLs)from wild cotton species.The introgression population consisted of 256 lines with an introgression rate of 52.33%for the G.raimondii genome.The introgression segment length range was 0.03–19.12 Mb,with an average of 1.22 Mb.The coverage of total introgression fragments from G.raimondii was 386.98 Mb.Further genome-wide association analysis(Q+K+MLM)and QTL mapping(RSTEP-LRT)identified 59 common QTLs,including 14 stable QTLs and six common QTL(co-QTL)clusters,and one hotspot of micronaire(MIC).The common QTLs for seed index all showed positive additive effects,while the common QTLs for boll weight all had negative additive effects,indicating that the linkage between seed index and boll weight could be broken.QTLs for lint percentage showed positive effects and could be beneficial for improving cotton yield.Most QTLs for fiber quality had negative additive effects,implying these QTLs were domesticated/improved in G.hirsutum.A few fiber quality QTLs showed positive additive effects,so they could be used to improve cotton fiber quality.The introgression lines developed could be useful for molecular marker-assisted breeding and mapping QTLs precisely for mining desirable genes from the wild species G.raimondii.Such genes can improve cultivated cotton in the future through a designbreeding approach.
基金Project supported by the Significant Science and Technology Projects of LongMen Laboratory in Henan Province(231100220100,231100221100)the Key Research and Development Program of Henan province(231111222200)+2 种基金the College Students Innovations Special Project(202410482008)the National Natural Science Foundation of China(62275105,12104163)Basic Scientific Research Operating Expenses of Henan Academy of Sciences(240607004)。
摘要We successfully prepared a series of rare-earth doped borosilicate glasses using the melt-quenching method,and carefully investigated the luminescent properties and the spectral modulation of Tb/Eucodoped borosilicate glasses under UV(200-400 nm)excitation.The results show that the prepared samples have the characteristics of broadband response,excellent transparency and tunable luminescence.By adjusting the excitation wavelength,the emissions of Tb3+,Eu2+and Eu3+ions are observed,which exhibit yellow-green,blue,red color and multi-color even white emissions,respectively.Moreover,the energy transfer between Tb3+and Eu3+ions in the codoped glasses is confirmed.Tb3+absorbs a large number of solar-blind light,transfers to Eu3+and results in intense visible emission in a wide waveband range.This makes the Tb/Eu co-doped glass a desirable candidate for solar-blind light detections.The photodetection system was built and shows a strong and stable response to the UV light of 210-400 nm.Due to broad detection range,high sensitivity and stability,our results offer strong implications for the development of photodetection device for diverse applications.
基金supported by the grants from the National Natural Science Foundation of China(31872497 and 32072844)the National Key Research and Development Program of China(2021YFD1800200 and 2016YFD0500207)the Laboratory of Lingnan Modern Agriculture Project,China(NT2021007)。
摘要TypeⅠinterferon(IFN)-mediated innate immune responses represent the first line of host defense against viral infection.However,the molecular mechanisms by which avian infuenza virus(AIV)inhibits typeⅠIFN production in ducks are not well understood.Here,we frst found that the polymerase basic 2(PB2)protein of H5N1 subtype AIV inhibited the typeⅠIFN responses by targeting duck mitochondrial antiviral signaling protein(MAVS).We further demonstrated that H5N1-PB2 bound to theΔtransmembrane(ΔTM)domain of duck MAVS,and the polymerase basic 1(PB1)binding domain(PBD)and RNA binding nuclear import domain(RND)of H5N1-PB2 interacted with MAVS to inhibit typeⅠIFN expression in ducks.Collectively,our fndings contribute to understanding the molecular mechanism by which AIV proteins regulate the retinoic acid-inducible geneⅠ(RIG-Ⅰ)-like receptor(RLR)signaling pathway to evade host antiviral immune responses in ducks.
基金supported by Natural Science Foundation of Hubei Province(2024AFD252)Natural Science Foundation Project of Hubei Provincial Administration of Traditional Chinese Medicine(ZY2025D020)+2 种基金Fundamental Research Funds for the Central Universities,South-Central Minzu University(CZZ24017)State Administration of Traditional Chinese Medicine High-level Key Discipline Construction Project of Traditional Chinese Medicine-Chinese Medicine Resource Science(Medicinal Mineralogy)Open Fund of Hubei Key Laboratory of Resources and Chemistry of Chinese Medicine and Hubei Provincial Department of Education Guiding Program(B2023089).
摘要Modern pharmacology has found that both Realgar and Coptis chinensis can induce apoptosis in tumor cells,and tra-ditional Chinese medicine theory suggests the possibility of combining the two,however,the specific mechanisms involved have not been elucidated.This study investigated the therapeutic mechanism of the Realgar-Coptis chin-ensis drug pair(RCCD)against hepatocellular carcinoma(HCC)by identifying its key active compounds and targets.Through integrated LC-MS analysis,transcriptomics,network pharmacology,and bioinformatics,we identified the mechanism of action,key bioactive compounds,and core targets.Molecular docking,molecular dynamics simula-tions,and microscale thermophoresis(MST)validated the binding affinity between key compounds and core targets.TIMER2.0 database was used to analyze the relationship between the core targets and HCC.H22 tumor xenograft mouse model and immunohistochemistry and pathology analyses were performed to validate the antitumor efficacy of the active compounds.RCCD has a high degree of selectivity of lipid metabolism pathway,4-Methylumbellifer-one(4-MU)was the key active compound with strong binding activity to the core target fatty acid synthase(FAS),and 4-MU down-regulated the expression of FASN in tumor tissues and induced apoptosis in HCC cells.In addition,as a hyaluronan synthase(HAS2/3)inhibitor,4-MU interfered with the HA-dependent tumor microenvironment and fibrosis process by inhibiting HAS2/3.Thus,4-MU may inhibit tumor progression by inhibiting FAS and HAS2/3.4-MU extracted from RCCD exerts anti-HCC effects by modulating the activities of FAS and HAS2/3,thereby repro-gramming lipid metabolism and regulating hyaluronan synthesis.
基金supported by Beijing Natural Science Foundation(L232101).
摘要Background:To comprehensively analyze the clinical characteristics of patients who underwent gastric endoscopic submucosal dissection(ESD)and explore the incidence and influencing factors of postoperative pain.Methods:The clinical data of patients who underwent gastric ESD at our center from 2009 to 2024 were retrospectively analyzed.Pain severity was assessed using a visual analogue scale,with a score≥4 defined as postoperative pain.Based on the presence or absence of postoperative pain,patients were divided into a pain group and a control group.Independent factors influencing postoperative pain were identified using multivariate logistic regression analysis.To control for confounding bias,patients in the case and control groups were matched by sex and lesion size,and the matched participants were further analyzed using a conditional logistic regression model.Results:In total,993 patients were analyzed.The incidence of postoperative pain was 9.1%(95%confidence interval[CI],7.3-11.1).In the univariate analysis,sex,operation duration,anesthesia method,intraoperative electrocoagulation,nasogastric tube placement,and postoperative vomiting were significantly associated with postoperative pain.Multivariate analysis identified eight independent factors:male sex(odds ratio[OR],0.61;95%CI,0.37-0.97;p=0.04),operation duration(OR,1.29;95%CI,1.03-1.63;p=0.02),protuberant lesions(OR,0.43;95%CI,0.26-0.71;p<0.01),antral lesions(OR,1.84;95%CI,1.10-3.05;p=0.01),intubation general anesthesia(OR,0.40;95%CI,0.22-0.72;p=0.002),intraoperative electrocoagulation(OR,0.32;95%CI,0.19-0.55;p<0.01),nasogastric tube placement(OR,2.005;95%CI,1.12-3.57;p=0.01),and postoperative vomiting(OR,3.24;95%CI,1.40-7.47;p=0.005).Conditional logistic regression analysis further identified diabetes mellitus(OR,2.50;95%CI,1.03-6.06;p=0.04).Conclusion:Female sex,diabetes mellitus,concave-type lesions,lesions in the gastric antrum,non-intubation general anesthesia,absence of intraoperative electrocoagulation,prolonged operation duration,nasogastric tube placement,and postoperative vomiting were independent factors associated with moderate to severe pain after gastric ESD.For patients at increased risk of postoperative pain,appropriate prophylactic and therapeutic measures during the perioperative period may effectively alleviate pain following gastric ESD.
基金Supported by National Natural Science Foundation Cultivation Project of Lishui University(036/2024)Municipal-Level Project:Pathways for Establishing Low-carbon Pilot Counties(FGLS202210).
摘要[Objectives]Farmland ginseng cultivation,as a sustainable alternative to traditional forest-clearing ginseng planting,requires systematic evaluation of soil optimization strategies.This study aimed to quantify the linkage between soil improvement outcomes and ginseng(Panax ginseng)yield across five regions in Yanbian Korean Autonomous Prefecture.[Methods]Soil improvement trials were conducted using farmland soils,with forest soils as the baseline.Soil nutrient contents were measured via soil agrochemical analysis method using a continuous flow analyzer.Statistical approaches,including significance tests,correlation analysis,and regression analysis,were applied to identify key factors influencing yield.[Results]Ginseng yield exhibited a significant positive correlation with organic matter content and available phosphorus,but a negative correlation with electrical conductivity,ammonium nitrogen,and available potassium.Wangqing and Liucai regions achieved post-improvement yields equivalent to 94%and 88%of forest soil yields,respectively,demonstrating the highest soil similarity to forest ecosystems.[Conclusions]Region-specific soil improvement protocols in Wangqing and Liucai show high replicability and efficacy.These strategies can serve as benchmarks for sustainable farmland ginseng cultivation,minimizing ecological disruption while maintaining productivity.
基金the National Key Research and Development Program of China(2020YFB1806800).
摘要With the large-scale commercial launch of fifth generation(5G)mobile network,the development of new services and applications catering to the year 2030,along with the deep convergence of information,communication,and data technologies(ICDT),and the lessons and experiences from 5G practice will drive the evolution of the next generation of mobile networks.This article surveys the history and driving forces of the evolution of the mobile network architecture and proposes a logical function architecture for sixth generation(6G)mobile network.The proposed 6G network architecture is termed SOLIDS(related to the following basic features:soft,on-demand fulfillment,lite,native intelligence,digital twin,and native security),which can support self-generation,self-healing,self-evolution,and self-immunity without human involvement and address the primary issues in the legacy 5G network(e.g.,high cost,high power consumption,and highly complicated operation and maintenance),significantly well.
基金supported by the National Natural Science Foundation of China (31271712)the National Key Technologies R&D Program of China (2013BAD01B02-8)
摘要Production of mutants with altered phenotypes is a powerful approach for determining the biological functions of genes in an organism. In this study, a high-grain-weight mutant line M8008 was identified from a library of mutants of the common wheat cultivar YN15 treated with ethylmethane sulfonate(EMS). F2 and F2:3generations produced from crosses of M8008 × YN15(MY) and M8008 × SJZ54(MS) were used for genetic analysis. There were significant differences between M8008 and YN15 in plant height(PH), spike length(SL),fertile spikelet number per spike(FSS), grain width(GW), grain length(GL), GL/GW ratio(GLW), and thousand-grain weight(TGW). Most simple correlation coefficients were significant for the investigated traits, suggesting that the correlative mutations occurred in M8008. Approximately 21% of simple sequence repeat(SSR) markers showed polymorphisms between M8008 and YN15, indicating that EMS can induce a large number of mutated loci. Twelve quantitative trait loci(QTLs) forming QTL clusters(one in MY and two in MS) were detected. The QTL clusters coinciding with(MY population) or near(MS population) the marker wmc41 were associated mainly with grain-size traits, among which the M8008 locus led to decreases in GW, factor form density(FFD), and TGW and to increases in GLW. The cluster in the wmc25–barc168 interval in the MS population was associated with yield traits, for which the M8008 locus led to decreased PH, spike number per plant(SN), and SL.
基金supported by the National Postdoctoral Program(2020M672782)National Natural Science Foundation of China(No.U1663225)+2 种基金Changjiang Scholars and Innovative Research Team in University(No.IRT15R52)National 111 project from the Ministry of Science and Technologythe Ministry of Education of China and the National Key R&D Program of China(No.2016YFA0202602)。
摘要Lithium-selenium(Li-Se)battery has attracted growing attention.Nevertheless,its practical application is still impeded by the shuttle effect of the formed polyselenides.Herein,we report in-situ hydrothermal weaving the three-dimensional(3 D)highly conductive hierarchically interconnected nanoporous web by threading microporous metal organic framework MIL-68(Al)crystals onto multi-walled carbon nanotubes(MWCNTs).Such 3 D hierarchically nanoporous web(3 D MIL-68(Al)@MWCNTs web)with a very high surface area,a large amount of micropores,electrical conductivity and elasticity strongly traps the soluble polyselenides during the electrochemical reaction and significantly facilitates lithium ion diffusion and electron transportation.Molecular dynamic calculation confirmed the strong affinity of MIL-68(Al)for the adsorption of polyselenides,quite suitable for Li-Se battery.Their hexahedral channels(1.56 nm)are more efficient for the confinement of polyselenides and for the diffusion of electrolytes compared to their smaller triangular channels(0.63 nm).All these excellent characteristics of 3 D MIL-68(Al)@MWCNTs web with suitable confinement of a large amount of selenium and the conductive linkage between MIL-68(Al)host by MWCNTs result in a high capacity of 453 m Ah/g at 0.2 C with 99.5%coulombic efficiency after 200 cycles with significantly improved cycle stability and rate performance.The 3 D MIL-68(Al)@MWCNTs web presents a good performance in Li-Se battery in term of the specific capacity and cycling stability and also in terms of rate performance compared with all the metal-organic framework(MOF)based or MOF derived porous carbons used in Li-Se battery.
基金We are grateful for financial supports from the National Key Research and Development Program of China(2019YFB2203904)the National Natural Science Foundation of China(U21A20506,62105122,61827820,62005233)+1 种基金the Shenzhen STIC Funding(RCBS20200714114819032)the Local Innovative and Research Teams Project of Guangdong Pear River Talents Program(2019BT02X105).
摘要We report broadband all-fiber optical phase modulation based on the photo-thermal effect in a gas-filled hollow-core fiber.The phase modulation dynamics are studied by multi-physics simulation.A phase modulator is fabricated using a 5.6-cm-long anti-resonant hollow-core fiber with pure acetylene filling.It has a half-wave optical power of 289 mW at 100 kHz and an average insertion loss 0.6 dB over a broad wavelength range from 1450 to 1650 nm.The rise and fall time constants are 3.5 and 3.7μs,respectively,2–3 orders of magnitude better than the previously reported microfiber-based photo-thermal phase modulators.The gas-filled hollow-core waveguide configuration is promising for optical phase modulation from ultraviolet to mid-infrared which is challenging to achieve with solid optical fibers.