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| 1 | MPK14-mediated auxin signaling controls lateral root development via ERF13-regulated very-long-chain fatty acid biosynthesis显示文摘Auxin plays a critical role in lateral root(LR)formation.The signaling module composed of auxin-response factors(ARFs)and lateral organ boundaries domain transcription factors mediates auxin signaling to control almost every stage of LR development.Here,we show that auxin-induced degradation of the APETALA2/Ethylene Responsive Factor(AP2/ERF)transcription factor ERF13,dependent on MITOGENACTIVATED PROTEIN KINASE MPK14-mediated phosphorylation,plays an essential role in LR development.Overexpression of ERF13 results in restricted passage of the LR primordia through the endodermal layer,greatly reducing LR emergence,whereas the erf13 mutants showed an increase in emerged LR.ERF13 inhibits the expression of 3-ketoacyl-CoA synthase16(KCS16),which encodes a fatty acid elongase involved in very-long-chain fatty acid(VLCFA)biosynthesis.Overexpression of KCS16 or exogenous VLCFA treatment rescues the LR emergence defects in ERF13 overexpression lines,indicating a role downstream of the auxin-MPK14-ERF13 signaling module.Collectively,our study uncovers a novel molecular mechanism by which MPK14-mediated auxin signaling modulates LR development via ERF13-regulated VLCFA biosynthesis. | Bingsheng Lv Kaijing Wei Kongqin Hu Te Tian Feng Zhang Zipeng Yu Dajian Zhang Yinghua Su Yalin Sang Xiansheng Zhang Zhaojun Ding | 2021 | Molecular Plant2021,14,2: | 6 |
| 2 | Effects of Qizhukangxian granules on idiopathic pulmonary fibrosis:a randomized,double blind,placebo-controlled and multicenter clinical pilot trial显示文摘OBJECTIVE:To evaluate the effects of Qizhukangxian granules(QG)on idiopathic pulmonary fibrosis(IPF).METHODS:This is a randomized,double blind,placebo-controlled and multicenter clinical pilot trial.Six medical centers in Tianjin,China,participated in the study.A total of 120 IPF patients were enrolled and randomized into two groups,with 60 patients in each group.The treatment group was treated with QG,while the control group received a Qizhukangxian placebo.The pharmacological treatment lasted for 48 weeks from the enrollment date.The indexes of patients were recorded on the admission day and at the end of the 24th and 48th weeks.Data were analyzed to study the effects of QG;forced vital capacity,change in forced vital capacity and maximal 6-min walk test(6MWT)distance were the primary endpoints.Secondary endpoints were percentage of patients with episodes of acute exacerbation of IPF,pulmonary function,changes in pulse oxygen saturation during the 6MWT,dyspnea score,St.George's respiratory questionnaire score,arterial blood gas analyses and the total Traditional Chinese Medicine symptom pattern score.RESULTS:After 24 weeks of treatment,QG showed greater efficacy than the placebo in certain parameters,including the dyspnea score,Traditional Chinese Medicine symptom pattern score and some indicators in the St.George's respiratory questionnaire score.Analysis of the indexes obtained from all patients at the end of the 48th week showed that the therapeutic effects in the treatment group were significantly better than those in the control group because remarkable differences were observed in most of the primary and secondary endpoints between the two groups,except for the maximal distance of the 6MWT and arterial blood gas analyses.No adverse reaction was observed in either group during the 48-week trial treatment period.CONCLUSION:QG could effectively treat IPF patients by ameliorating pulmonary function,improving the quality of life and lowering the percentage of acute exacerbations. | Guo Sijia Song Yalin Feng Jihong Liu Shuang Li Yuechuan Liu Min Wei Luqing Zhang Xian Xie Hui Sun Zengtao | 2020 | Journal of Traditional Chinese Medicine2020,40,4: | 3 |
| 3 | A review of the pathogenicity mechanism of Verticillium dahliae in cotton显示文摘Verticillium wilt,caused by the notorious fungal pathogen Verticillium dahliae,is one of the main limiting factors for cotton production.Due to the stable dormant structure microsclerotia,long-term variability and co-evolution with host plant,its pathogenicity mechanism is very complicated,and the interaction mechanism between pathogen and host plant is also unclear.So identification and functional analysis of the genes involved in the pathogenicity or virulence of this fungus will benefit to uncover the molecular pathogenic mechanism of V.dahliae.In this review,many multifunction genes covering microsclerotia development,pathogen infection,effector proteins,transcription factors,horizontal gene transfer and trans-kingdom RNA silencing have been summarized to provide a theoretical basis to deep understand the molecular pathogenicity mechanism of V.dahliae and promote to effectively control Verticillium wilt.Furtherly,these pathogenicity-related genes may be considered as targets for effective control of Verticillium wilt in cotton. | ZHANG Yalin ZHOU Jinglong ZHAO Lihong FENG Zili WEI Feng BAI Hongyan FENG Hongjie ZHU Heqin | 2022 | Journal of Cotton Research2022,5,1: | 2 |
| 4 | Underwater Environment SDAP Method Using Multi Single-Beam Sonars显示文摘 | Zheping Yan Dongnan Chi Shuping Hou Yalin Zheng Zhiguang Feng | 2013 | Mathematical Problems in Engineering2013,,: | 1 |
| 5 | An integrated measurement system of micro motions for MEMS dynamic performance analysis显示文摘 | Li Dachao Feng Yalin Jin Shijiu Jin Cuiyun Hao Yilong Zhang Dacheng | 2002 | 2nd International Symposium on Instrumentation Science and Technology Jinnan China Aug18~222002,,: | 1 |
| 6 | Studies on the extracting technical conditions of inulin from Jerusalem artichoke tubers显示文摘 | Wei Lingyun Wang Jianhua Zheng Xiaodong Teng Da Yang Yalin Cai Chenggang Feng Tianhua Zhang Fan | 2006 | Journal of Food Engineering2006,,3: | 1 |
| 7 | Efficacy evaluation and mechanism of Bacillus subtilis EBS03 against cotton Verticillium wilt显示文摘Background:In our previous study,a strain EBS03 with good biocontrol potential was screened out of 48 strains of cotton endophyte Bacillus subtilis by evaluating the controlling effect against cotton Verticillium wilt.However,its mechanism for controlling Verticillium wilt remains unclear.The objective of this study was to further clarify its con-trolling effect and mechanism against cotton Verticillium wilt.Results:The results of confrontation culture test and double buckle culture test showed that the inhibitory effects of EBS03 volatile and nonvolatile metabolite on mycelium growth of Verticillium dahliae were 70.03%and 59.00%,respectively;the inhibitory effects of sporulation and microsclerotia germination were 47.16%and 70.06%,respec-tively.In the greenhouse test,the EBS03 fermentation broth root irrigation had the highest controlling effect at 87.11%on cotton Verticillium wilt,and significantly promoted the growth of cotton seedlings.In the field experi-ment,the controlling effect of EBS03 fermentation broth to cotton Verticillium wilt was 42.54%at 60 days after cotton sowing,and the boll number per plant and boll weight in EBS03 fermentation broth seed soaking,root irrigation,and spraying treatments significantly increased by 19.48%and 7.42%,30.90%and 2.62%,15.99%and 9.20%,respec-tively.Furthermore,EBS03 improved the resistance of cotton leaves against the infection of V.dahliae,and induced the outbreak of reactive oxygen species and accumulation of callose.In addition,the results of real time fluorescent quantitative polymerase chain reaction(RT-qPCR)detection showed that EBS03 significantly induced upregulation expression level of defense-related genes PAL,POD,PPO,and PR10 in cotton leaves,enhanced cotton plant resistance to V.dahliae,and inhibited colonization level of this fungal pathogen in cotton.Conclusion:Bacillus subtilis EBS03 has a good biological defense capability,which can inhibit the growth and coloni-zation level of V.dahliae,and activate the resistance of cotton to Verticillium wilt,thus increase cotton yield. | BAI Hongyan FENG Zili ZHAO Lihong FENG Hongjie WEI Feng ZHOU Jinglong GU Aixing ZHU Heqin PENG Jun ZHANG Yalin | 2022 | Journal of Cotton Research2022,5,4: | 1 |
| 8 | Maternal genetic history of southern East Asians over the past 12,000 years显示文摘Southern East Asia,including Guangxi and Fujian provinces in China,is home to diverse ethnic groups,languages,and cultures.Previous studies suggest a high complexity regarding population dynamics and the history of southern East Asians.However,large-scale genetic studies on ancient populations in this region are hindered by limited sample preservation.Here,using highly efficient DNA capture techniques,we obtain 48 complete mitochondrial genomes of individuals from Guangxi and Fujian in China and reconstruct their maternal genetic history over the past 12,000 years.We find a strong connection between southern East Asians dating to~12,000-6000 years ago and present-day Southeast Asians.In addition,stronger genetic affinities to northern East Asians are observed in historical southern East Asians than Neolithic southern East Asians,suggesting increased interactions between northern and southern East Asians over time.Overall,we reveal dynamic connections between ancient southern East Asians and populations located in surrounding regions,as well as a shift in maternal genetic structure within the populations over time. | Yalin Liu Tianyi Wang Xichao Wu Xuechun Fan Wei Wang Guangmao Xie Zhen Li Qingping Yang Peng Cao Ruowei Yang Feng Liu Qingyan Dai Xiaotian Feng Wanjing Ping Bo Miao Yun Wu Yichen Liu Qiaomei Fu | 2021 | Journal of Genetics and Genomics2021,48,10: | 1 |
| 9 | Magnetic logic inverter from crossed structures of defect-free graphene with large unsaturated room temperature negative magnetoresistance显示文摘Introducing defects into graphene has been widely utilized to realize the negative magnetoresistanee(MR)effect in graphene.However,the reported graphene negative MR exhibits only^10%under 10 T at room temperature to date,which extremely limits the resolution of future spintronics devices.Moreover,intentional defect introduction can also cause unintentional degradation in graphene's intrinsic properties.In this paper,we report a magnetic logic inverter based on a crossed structure of defect-free graphene,resulting in a substantial gain of 4.81 mV/T while exhibiting room temperature operation.This crossed structure of graphene shows large unsaturated room temperature negative MR with an enhancement of up to 1,000%at 9 T.A transition behavior between negative and positive MR is observed in this crossed structure and the transition temperature can be tuned by a ratio of the conductivity between in-plane and out-of-plane transport.Our results open an intriguing path for future two-dimensional spintronics device applications. | Chao Feng Junxiang Xiang Ping Liu Xiangqi Wang Jianlin Wang Guojing Hu Meng Huang Zhi Wang Zengming Zhang Yuan Liu Yalin Lu Bin Xiang | 2019 | Nano Research2019,12,10: | 1 |
| 10 | The Effects of Jet Cavitation on the Growth of Microcystis Aeruginosa显示文摘 | Yunfeng Xu Ji Yang Yalin Wang Feng Liu Jinping Jia | 2006 | Journal of Environmental Science and Health, Part A2006,,10: | 1 |
| 11 | Planar-symmetry-breaking induced antisymmetric magnetoresistance in van der Waals ferromagnet Fe_(3)GeTe_(2)显示文摘Recently discovered magnetic van der Waals(vdW)materials provide an ideal platform to explore low-dimensional magnetism and spin transport.Its vdW interaction nature opens up unprecedented opportunities to build vertically stacked heterostructures with novel properties and functionalities.By engineering the planar structure as an alternative degree of freedom,herein we demonstrate an antisymmetric magnetoresistance(MR)in a vdW Fe_(3)GeTe_(2)flake with a step terrace that breaks the planar symmetry.This antisymmetric MR originates from a sign change of the anomalous Hall effect and the continuity of the current transport near the boundary of magnetic domains at the step edge.A repeatable domain wall due to the unsynchronized magnetization switching is responsible for this sign change.Such interpretation is supported by the observation of field-dependent domain switching,and the step thickness,temperature,and magnetic field orientation dependent MR.This work opens up new opportunities to encode magnetic information by controlling the planar domain structures in vdW magnets. | Ping Liu Caixing Liu Zhi Wang Meng Huang Guojing Hu Junxiang Xiang Chao Feng Chen Chen Zongwei Ma Xudong Cui Hualing Zeng Zhigao Sheng Yalin Lu Gen Yin Gong Chen Kai Liu Bin Xiang | 2022 | Nano Research2022,15,3: | 0 |
| 12 | Molecular-level proton acceptor boosts oxygen evolution catalysis to enable efficient industrial-scale water splitting显示文摘Industrial water splitting has long been suppressed by the sluggish kinetics of the oxygen evolution reaction(OER),which requires a catalyst to be efficient.Herein,we propose a molecular-level proton acceptor strategy to produce an efficient OER catalyst that can boost industrial-scale water splitting.Molecular-level phosphate(-PO_(4))group is introduced to modify the surface of PrBa_(0.5)Ca_(0.5)Co_(2)O_(5)+δ(PBCC).The achieved catalyst(PO_(4)-PBCC)exhibits significantly enhanced catalytic performance in alkaline media.Based on the X-ray absorption spectroscopy results and density functional theory(DFT)calculations,the PO_(4)on the surface,which is regarded as the Lewis base,is the key factor to overcome the kinetic limitation of the proton transfer process during the OER.The use of the catalyst in a membrane electrode assembly(MEA)is further evaluated for industrial-scale water splitting,and it only needs a low voltage of 1.66 V to achieve a large current density of 1 A cm^(-2).This work provides a new molecular-level strategy to develop highly efficient OER electrocatalysts for industrial applications. | Yaobin Wang Qian Lu Xinlei Ge Feng Li Le Chen Zhihui Zhang Zhengping Fu Yalin Lu Yang Song Yunfei Bu | 2024 | Green Energy & Environment2024,9,2: | 0 |
| 13 | Recent advances in plant centromere biology显示文摘The centromere, which is one of the essential parts of a chromosome, controls kinetochore formation and chromosome segregation during mitosis and meiosis. While centromere function is conserved in eukaryotes, the centromeric DNA sequences evolve rapidly and have few similarities among species. The histone H3 variant CENH3(CENP-A in human), which mostly exists in centromeric nucleosomes, is a universal active centromere mark in eukaryotes and plays an essential role in centromere identity determination. The relationship between centromeric DNA sequences and centromere identity determination is one of the intriguing questions in studying centromere formation. Due to the discoveries in the past decades, including 'neocentromeres' and 'centromere inactivation', it is now believed that the centromere identity is determined by epigenetic mechanisms. This review will present recent progress in plant centromere biology. | FENG Chao LIU YaLin SU HanDong WANG HeFei BIRCHLER James HAN FangPu | 2015 | Science China(Life Sciences)2015,58,3: | 0 |
| 14 | Regulation effects of water and nitrogen on yield,water,and nitrogen use efficiency of wolfberry显示文摘Wolfberry(Lycium barbarum L.)is important for health care and ecological protection.However,it faces problems of low productivity and resource utilization during planting.Exploring reasonable models for water and nitrogen management is important for solving these problems.Based on field trials in 2021 and 2022,this study analyzed the effects of controlling soil water and nitrogen application levels on wolfberry height,stem diameter,crown width,yield,and water(WUE)and nitrogen use efficiency(NUE).The upper and lower limits of soil water were controlled by the percentage of soil water content to field water capacity(θ_(f)),and four water levels,i.e.,adequate irrigation(W0,75%-85%θ_(f)),mild water deficit(W1,65%-75%θ_(f)),moderate water deficit(W2,55%-65%θ_(f)),and severe water deficit(W3,45%-55%θ_(f))were used,and three nitrogen application levels,i.e.,no nitrogen(N0,0 kg/hm^(2)),low nitrogen(N1,150 kg/hm^(2)),medium nitrogen(N2,300 kg/hm^(2)),and high nitrogen(N3,450 kg/hm^(2))were implied.The results showed that irrigation and nitrogen application significantly affected plant height,stem diameter,and crown width of wolfberry at different growth stages(P<0.01),and their maximum values were observed in W1N2,W0N2,and W1N3 treatments.Dry weight per plant and yield of wolfberry first increased and then decreased with increasing nitrogen application under the same water treatment.Dry weight per hundred grains and dry weight percentage increased with increasing nitrogen application under W0 treatment.However,under other water treatments,the values first increased and then decreased with increasing nitrogen application.Yield and its component of wolfberry first increased and then decreased as water deficit increased under the same nitrogen treatment.Irrigation water use efficiency(IWUE,8.46 kg/(hm^(2)·mm)),WUE(6.83 kg/(hm^(2)·mm)),partial factor productivity of nitrogen(PFPN,2.56 kg/kg),and NUE(14.29 kg/kg)reached their highest values in W2N2,W1N2,W1N2,and W1N1 treatments.Results of principal component analysis(PCA)showed that yield,WUE,and NUE were better in W1N2 treatment,making it a suitable water and nitrogen management mode for the irrigation area of the Yellow River in the Gansu Province,China and similar planting areas. | GAO Yalin QI Guangping MA Yanlin YIN Minhua WANG Jinghai WANG Chen TIAN Rongrong XIAO Feng LU Qiang WANG Jianjun | 2024 | Journal of Arid Land2024,16,1: | 0 |