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12篇 您的检索式:作者名="Yuean"
    题名 作者 年代 出处 被引量
1Simultaneous determination of arsenic,ntimony,bismuthand mercuryin biological samples by vapor generation-four-chanelnon-dispersive atomic fluorescence spectrometry显示文摘Zhongxi Li Xiaoming Yang Yuean Guo 0,,74:1
2Expression of YB-1- binding protein 1 in chinese patients with breast cancer 显示文摘Wenxiu Xie Junlan Yang Yuean Cao 2012Tumor Biol2012,33,1:1
3Simultaneous determination of arsenic, antimony, bismuth and mercury in geological materials by vapor generation-four-channel non-dispersive atomic fluorescence spectrometry 显示文摘Ll Zhongxi Yang Xiaoming Guo Yuean 2007Talanta2007,03,:1
4Simultaneous determination oftrace arsenic,antimony,bismuth and selenium in biologicalsamples by hydr ide generation-four-channel atomicfluorescence spectrometry显示文摘Zhongxi Li Yuean Guo 2005Talanta2005,,65:1
5Simultaneousdetermination of arsenic,antimony,bismuth and mercuryin geological materials by vapor generation-four-channelnon-dispersive atomic fluorescence spectrometry显示文摘Zhongxi Li Xiaoming Yang Yuean Guo etal 2008Talanta2008,,74:1
6Expression of YB-l-binding protein 1 in chinese patients with breast cancer显示文摘Wenxiu Xie Junlan Yang Yuean Cao 2012Tumor Biol2012,33,1:1
7Simultane- ous determination of arsenic, antimony, bismuth and mer- cury in geological materials by vapor generation-four-chan- nel non-dispersive atomic fluorescence spectrometry 显示文摘Li Zhongxi Yang Xiaoming Guo Yuean 2008Talanta2008,74,:1
8Simultaneous determination of arsenic,antimony,bismuth and mercury in geological materials by vapor generation-four-channel non-dispersive atomic fluorescence spectrometry显示文摘LI Zhongxi YANG Xiaoming GUO Yuean 2008Talanta2008,74,:1
9Simultaneous determination of trace arsenic,antimony,bismuth and selenium in biological samples by hydride generation-four-channel atomic fluorescence spectrometry显示文摘LI Zhongxi GUO Yuean 2005Talanta2005,65,:1
10Simultane-ous determination of arsenic,antimony,bismuth and mer-cury in geological materials by vapor generation-four-channel non-dispersive atomic fluorescence spectrometry显示文摘Li Zhongxi Yang Xiaoming Guo Yuean 2008Talanta2008,74,:1
11Spherical Packing Superlattices in Self-Assembly of Homogenous Soft Matter:Progresses and Potentials显示文摘The construction of complex superlattices using homogenous soft matter has great potential for the bottom-up fabrication of complex,nanoscale structures.This topic is not only interested in scientific exploring for new concepts of supramolecular crystals with nanometer in sizes,which is about thousand times larger in volumes than those of normal crystals,but also practically important to provide construction principles of metamaterials which are artificially structured materials for controlling and manipulating light,sound,and other physical behaviors.These systems have fast assembly kinetics and convenient processing procedures,making them ideal for large-scale superlattice production.In this perspective,we focus on recent developments in the construction of complex spherical packing superlattices using homogenous soft self-assemblies.We discuss the general mechanism of those formations of supramolecular motifs and provide an overview of the spherical packing superlattices self-assembled by homogenous soft matters based on different volume asymmetry.Additionally,we outline the potentials of utilizing this approach in constructing novel superlattices as well as its future challenges.Yuchu Liu Huanyu Lei Qing-Yun Guo Xianyou Liu Xinghan Li Yuean Wu Weiyi Li Wei Zhang Geng Xin Liu Xiao-Yun Yan Stephen Z.D.Cheng 2023Chinese Journal of Polymer Science2023,41,5:0
12CmWRKY6-1-CmWRKY15-like transcriptional cascade negatively regulates the resistance to fusarium oxysporum infection in Chrysanthemum morifolium显示文摘Chrysanthemum Fusarium wilt is a soil-borne disease that causes serious economic losses to the chrysanthemum industry.However,the molecular mechanism underlying the response of chrysanthemum WRKY to Fusarium oxysporum infection remains largely unknown.In this study,we isolated CmWRKY6–1 from chrysanthemum‘Jinba’and identified it as a transcriptional repressor localized in the nucleus via subcellular localization and transcriptional activation assays.We found that CmWRKY6–1 negatively regulated resistance to F.oxysporum and affected reactive oxygen species(ROS)and salicylic acid(SA)pathways using transgenic experiments and transcriptomic analysis.Moreover,CmWRKY6–1 bound to the W-box element on the CmWRKY15-like promoter and inhibited its expression.Additionally,we observed that CmWRKY15-like silencing in chrysanthemum reduced its resistance to F.oxysporum via transgenic experiments.In conclusion,we revealed the mechanism underlying the CmWRKY6–1–CmWRKY15-like cascade response to F.oxysporum infection in chrysanthemum and demonstrated that CmWRKY6–1 and CmWRKY15-like regulates the immune system.Weihao Miao Xiangyu Xiao Yuean Wang Lijiao Ge Yanrong Yang Ye Liu Yuan Liao Zhiyong Guan Sumei Chen Weimin Fang Fadi Chen Shuang Zhao 2023Horticulture Research2023,10,7:0
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