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38篇 您的检索式:作者名="Meng Qingfeng"
    题名 作者 年代 出处 被引量
1Improving Yield and Nitrogen Use Efficiency Simultaneously for Maize and Wheat in China: A Review显示文摘同时完成两高收益和高氮使用效率(NUE ) 与对食物,自然资源的弄空,和环境的恶化的增加的全球需求成为了主要挑战。作为在世界上的 N 化肥的最伟大的消费者,中国农民滥用了 N,并且因为 N 举起收益关系的有限理解,在庄稼 N 需求和 N 供应之间有差的 synchrony。处理这个问题,这研究为二个学生的不同收益范围评估了全部、动态的 N 要求庄稼(玉米和小麦) ,和到 N 管理策略的建议改进。整个植物的 N 未葬举起要求每谷物产量(N req ) 开始与谷物收益改进死亡了然后停滞,并且然而,大多数农民仍然相信更多的化肥和更高的谷物产量是同义的。当玉米产量增加了从时 < 7.5 到 > 12.0 Mg 哈 −1, N req 从 19.8 ~ 17.0 kg Mg −1 谷物减少了。为小麦,它为谷物产量从 27.1 kg Mg −1 谷物减少了 < 4.5 Mg 哈 −1 到为产量的 22.7 kg Mg −1 谷物 > 9.0 Mg 哈 −1 。同时,干燥物质的百分比和在中间迟了的成长季节的 N 累积与谷物产量显著地增加了,它显示 N 授精应该在中间迟了的阶段被集中当农民们经常在播种前或在早生长阶段期间使用了 N 化肥的多数时,匹配庄稼需求。我们因此开发了同时增加谷物产量和 NUE 的综合土壤庄稼系统管理策略。MENG Qingfeng YUE Shanchao HOU Peng CUI Zhenling CHEN Xinping 2016Pedosphere2016,26,2:51
2Nsp2 has the potential to be a drug target revealed by global identification of SARS-CoV-2 Nsp2-interacting proteins显示文摘Severe acute respiratory syndrome coronavirus 2(SARS-CoV-2)has become a global health threat since December 2019,and there is still no highly effective drug to control the pandemic.To facilitate drug target identification for drug development,studies on molecular mechanisms,such as SARS-CoV-2 protein interactions,are urgently needed.In this study,we focused on Nsp2,a non-structural protein with largely unknown function and mechanism.The interactome of Nsp2 was revealed through the combination of affinity purification mass spectrometry(AP-MS)and stable isotope labeling by amino acids in cell culture(SILAC),and 84 proteins of high-confidence were identified.Gene ontology analysis demonstrated that Nsp2-interacting proteins are involved in several biological processes such as endosome transport and translation.Network analysis generated two clusters,including ribosome assembly and vesicular transport.Bio-layer interferometry(BLI)assay confirmed the bindings between Nsp2-and 4-interacting proteins,i.e.STAU2(Staufen2),HNRNPLL,ATP6V1B2,and RAP1GDS1(SmgGDS),which were randomly selected from the list of 84 proteins.Our findings provide insights into the Nsp2–host interplay and indicate that Nsp2 may play important roles in SARS-CoV-2 infection and serve as a potential drug target for anti-SARS-CoV-2 drug development.Yun-Xiao Zheng Lei Wang Wei-Sha Kong Hong Chen Xue-Ning Wang Qingfeng Meng Hai-Nan Zhang Shu-Juan Guo He-Wei Jiang Sheng-Ce Tao 2021Acta Biochimica et Biophysica Sinica2021,53,9:3
3Relationships between the sound speed ratio and physical properties of surface sediments in the South Yellow Sea显示文摘Building empirical equations is an effective way to link the acoustic and physical properties of sediments.These equations play an important role in the prediction of sediments sound speeds required in underwater acoustics.Although many empirical equations coupling acoustic and physical properties have been developed over the past few decades,further confirmation of their applicability by obtaining large amounts of data,especially for equations based on in situ acoustic measurement techniques,is required.A sediment acoustic survey in the South Yellow Sea from 2009 to 2010 revealed statistical relationships between the in situ sound speed and sediment physical properties.To improve the comparability of these relationships with existing empirical equations,the present study calculated the ratio of the in situ sediment sound speed to the bottom seawater sound speed,and established the relationships between the sound speed ratio and the mean grain size,density and porosity of the sediment.The sound speed of seawater at in situ measurement stations was calculated using a perennially averaged seawater sound speed map by an interpolation method.Moreover,empirical relations between the index of impedance and the sound speed and the physical properties were established.The results confirmed that the existing empirical equations between the in situ sound speed ratio and the density and porosity have general suitability for application.This study also considered that a multiple-parameter equation coupling the sound speed ratio to both the porosity and the mean grain size may be more useful for predicting the sound speed than an equation coupling the sound speed ratio to the mean grain size.Guanbao Li Jingqiang Wang Xiangmei Meng Baohua Liu Guangming Kan Guozhong Han Qingfeng Hua Yanliang Pei Lei Sun 2021Acta Oceanologica Sinica2021,40,4:2
4A quasi-3D Fano resonance cavity on optical fiber end-facet for high signal-to-noise ratio dip-and-read surface plasmon sensing显示文摘Surface plasmon devices mounted at the end-facets of optical fibers are appealing candidates for rapid and point-of-care sensing applications,by offering a special dip-and-read operation mode.At present,these devices’noise-equivalent limits-of-detection lag far behind the free-space counterparts,leaving them incapable of most biosensing applications.Here we report a quasi-3D Fano resonance cavity and its fabrication method to fundamentally improve the quality factor and coupling efficiency for fiber-coupled surface plasmon resonance.In this device,the Fano resonance combines the high coupling efficiency of a Fabry-Pérot etalon and the high quality factor resonance of a plasmonic crystal cavity.The quasi-3D device was fabricated on a planar substrate and transferred to a single-mode fiber end-facet,which requires a low-adhesion yet surface-plasmon-tunneling interface between the device and the planar substrate.Such an interface was realized with a nanocap-slit unit structure,of which the plasmonic crystal was consisted.A noise-equivalent limit of detection of~10-7 RIU was experimentally obtained,allowing bovine serum albumin physical adsorption to be distinguished at ng mL-1 level concentrations.Therefore,breaking through the long-standing signal-to-noise ratio bottleneck,this work makes fiber end-facet surface plasmon devices into one of high sensitivity label-free sensing technologies.At the same time,it provides an enabling top-down fabrication technology for making 3D plasmonic structures on fiber end-facets at the nanometer scale.Xiaqing Sun Zeyu Lei Hao Zhong Chenjia He Sihang Liu Qingfeng Meng Qingwei Liu Shengfu Chen Xiangyang Kong Tian Yang 2022Light(Advanced Manufacturing)2022,3,4:2
5Time-Frequency(scale) Analysis and Diagnosis for Nonstationary Dynamic Signals of Machinery显示文摘TimeFrequency(scale)AnalysisandDiagnosisforNonstationaryDynamicSignalsofMachineryHeZhengjiaMengQingfengZhaoJuyuanLiuXinmingDe...He Zhengjia Meng Qingfeng Zhao Juyuan Liu Xinming Dept. of Mechanical Engineering, Xi’an Jiaotong University Xi’an, 710049 P.R. CHINA 1996International Journal of Plant Engineering and Management1996,1,1:2
6Stability of Nonlinear Networked Control System with?Uncertainties显示文摘Yingwei Zhang Xue Chen Qingfeng Meng 2010Circuits Systems and Signal Processing2010,,6:1
7Analytical model ing and experimental verification of vibration-based pi- ezoelectric bimorph beam with a tip-mass for power harvesting显示文摘WANG Hongjin MENG Qingfeng 2013Mechanical Systems and Signal Process ing2013,36,1:1
8A joint call for actions to advance taxonomy in China显示文摘Taxonomy plays an important role in understanding the origin, evolution, and ecological functionality of biodiversity. There are large number of unknown species yet to be described by taxonomists, which together with their ecosystem services cannot be effectively protected prior to description. Despite this, taxonomy has been increasingly underrated insufficient funds and permanent positions to retain young talents. Further, the impact factordriven evaluation systems in China exacerbate this downward trend, so alternative evaluation metrics are urgently necessary. When the current generation of outstanding taxonomists retires,there will be too few remaining taxonomists left to train the next generation. In light of these challenges, all co-authors worked together on this paper to analyze the current situation of taxonomy and put out a joint call for immediate actions to advance taxonomy in China.Chaodong Zhu Arong Luo Ming Bai Michael COrr Zhonge Hou Siqin Ge Jun Chen Yibo Hu Xuming Zhou Gexia Qiao Hongzhi Kong Limin Lu Xiaohua Jin Lei Cai Xinli Wei Ruilin Zhao Wei Miao Qingfeng Wang Zhongli Sha Qiang Lin Meng Qu Jianping Jiang Jiatang Li Jing Che Xuelong Jiang Xiaoyong Chen Lianming Gao Zongxin Ren Chunlei Xiang Shixiao Luo Donghui Wu Dong Liu Yanqiong Peng Tao Su Chenyang Cai Tianqi Zhu Wanzhi Cai Xingyue Liu Hu Li Huaijun Xue Zhen Ye Xuexin Chen Pu Tang Shujun Wei Hong Pang Qiang Xie Feng Zhang Feng Zhang Xianjin Peng Aibing Zhang Taiping Gao Changfa Zhou Chen Shao Libin Ma Zhaoming Wei Yunxia Luan Ziwei Yin Wu Dai Cong Wei Xiaolei Huang Jingxian Liu Xiangsheng Chen Tianci Yi Zhisheng Zhang Zhulidezi Aishan Qin Li Hongying Hu 2022Zoological Systematics2022,47,3:1
9Alternative cropping systems for sustainable water and nitrogen use in the North China Plain显示文摘Qingfeng Meng Qinping Sun Xinping Chen Zhenling Cui Shanchao Yue Fusuo Zhang Volker R?mheld 2011Agriculture Ecosystems and Environment2011,,1:1
10Remotely estimating aerial N status of phenologically differing winter wheat cultivars grown in contrasting climatic and geographic zones in China and Germany显示文摘Fei Li Bodo Mistele Yuncai Hu Xianlu Yue Shanchao Yue Yuxin Miao Xinping Chen Zhenling Cui Qingfeng Meng Urs Schmidhalter 2012Field Crops Research2012,,:1
11A method and case study of thermal response test with unstable heat rate显示文摘Hu Pingfang Meng Qingfeng Sun Qiming 2012Energy and Buildings2012,48,5:1
12Matching pursuit based on nonparametric waveform estimation 显示文摘FAN HONG MENG QINGFENG ZHANG YOUYUN 2009Digital Signal Processing2009,19,4:1
13Understanding production potentials and yield gaps in intensive maize production in China显示文摘Qingfeng Meng Peng Hou Liang Wu Xinping Chen Zhenling Cui Fusuo Zhang 2012Field Crops Research2012,,:1
14Research and development of Chinese anti-COVID-19 drugs显示文摘The outbreak and spread of coronavirus disease 2019(COVID-19)highlighted the importance and urgency of the research and development of therapeutic drugs.Very early into the COVID-19 pandemic,China has begun developing drugs,with some notable progress.Herein,we summarizes the anti-COVID-19 drugs and promising drug candidates originally developed and researched in China.Furthermore,we discussed the developmental prospects,mechanisms of action,and advantages and disadvantages of the anti-COVID-19 drugs in development,with the aim to contribute to the rational use of drugs in COVID-19 treatment and more effective development of new drugs against severe acute respiratory syndrome coronavirus 2(SARS-CoV-2)and the variants.Neutralizing antibody is an effective approach to overcome COVID-19.However,drug resistance induced by rapid virus mutation will likely to challenge neutralizing antibodies.Taking into account current epidemic trends,small molecule drugs have a crucial role in fighting COVID-19 due to their significant advantage of convenient administration and affordable and broad-spectrum.Traditional Chinese medicines,including natural products and traditional Chinese medicine prescriptions,contribute to the treatment of COVID-19 due to their unique mechanism of action.Currently,the research and development of Chinese anti-COVID-19 drugs have led to some promising achievements,thus prompting us to expect even more rapidly available solutions.Xiwei Ji Xiangrui Meng Xiao Zhu Qingfeng He Yimin Cui 2022Acta Pharmaceutica Sinica B2022,12,12:1
15Critical nitrogen dilution curve for optimizing nitrogen management of winter wheat production in the North China Plain显示文摘Yue Shanehao Meng Qingfeng Zhao Rongfang 2012Agronomy Journal2012,104,2:1
16Rotating machineryfault diagnosis using Wigner distribution 显示文摘Meng Qingfeng Qu Liangsheng 1991MechanicalSystems and Signal Processing1991,5,3:1
17The binding epitope of sintilimab on PD-1 revealed by AbMap显示文摘PD-1 plays an important role as an immune checkpoint.Sintilimab is a newly approved PD-1 antibody for cancer immunotherapy with an unknown binding epitope on PD-1.In this study,to elucidate the molecular mechanism by which sintilimab blocks PD-1 activation,we applied Antibody binding epitope Mapping(AbMap)to identify the binding epitope of sintilimab.An epitope was successfully identified,i.e.SLAPKA,aa 127-132.By constructing a series of point mutations,the dominant residues S127,L128,A129,P130,and A132 of PD-1 were further validated by western blot analysis,biolayer interferometry,and flow cytometry.Structural analysis showed that the epitope is partially within the binding interface of PD-1 and PD-L1,and this epitope also partially overlaps with that of nivolumab and pembrolizumab.These results demonstrate that sintilimab can attenuate PD-1 activation by directly competing with the interaction between PD-1 and PD-L1 through binding with the key residues of the FG loop on PD-1.This study also demonstrates the high efficiency and accuracy of AbMap for determining the binding epitope of therapeutic antibodies.Mingliang Ma Huan Qi Chuansheng Hu Zhaowei Xu Fanlin Wu Nan Wang Danyun Lai Yang Li Hainan Zhang Hewei Jiang Qingfeng Meng Shujuan Guo Yani Kang Xiaodong Zhao Hua Li Sheng-ce Tao 2021Acta Biochimica et Biophysica Sinica2021,53,5:1
18Critical nitrogen dilution curve for optimizing nitrogen management of winter wheat production in the North China Plain 显示文摘Yue Shanchao Meng Qingfeng Zhao Rongfang 2012Agronomy Journal2012,104,2:1
19The benefits of recent warming for maize production in high latitude China显示文摘Meng Qingfeng Hou Peng Lobell D B 2014Climate change2014,122,:1
20Molecular cytogenetic analyses of two new wheat-rye 6RL translocation lines with resistance to wheat powdery mildew显示文摘Rye(Secale cereale)is a valuable gene donor for wheat improvement,especially for its resistance to diseases.Developing rye-derived resistance sources is important for wheat breeding.In the present study,two wheat-rye derivatives,designated JS016 and JS110,were produced by crossing common wheat cultivar Yangmai 23 with Pakistani rye accession W2A.Using sequential genomic in situ hybridization(GISH)and multicolor fluorescence in situ hybridization(mc-FISH),JS016 and JS110 were identified as a T6BS.6RL translocation line and a T6BS.6BL6RL translocation line,respectively.Ten newly 6RL chromosome arm-specific markers were developed and used to confirm the 6RL translocation.The wheat 55K single-nucleotide polymorphism(SNP)array further verified the molecular cytogenetic identification results above and clarified their breakpoints at 430.9 and 523.0 Mb of chromosome 6B in JS016 and JS110,respectively.Resistance spectrum and allelism test demonstrated that JS016 and JS110 possessed novel powdery mildew resistance gene(s)that was derived from the 6RL translocation but differed from Pm20.Moreover,JS016 and JS110 had better agronomic traits than the previously reported 6RL translocation line carrying Pm20.To efficiently transfer and detect the 6RL translocation from JS016 and JS110,one 6RL-specific Kompetitive allele specific PCR(KASP)marker was developed and validated in high throughput marker-assisted selection(MAS).Shanying Zhu Haonan Du Fuyu Su Jin Wang Qingfeng Meng Tianlei Liu Rui Guo Zhaozhao Chen Huanhuan Li Wenxuan Liu Pengtao Ma Huagang He 2023The Crop Journal2023,11,2:1
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