中关村旭月非损伤微测技术产业联盟

栏目:小说资讯  时间:2023-08-12
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  第一轮获奖名单(截至2017年5月)

  第一作者

  通讯作者

  单位

  期刊名

  文章名

  研究领域

  张和臣

  吕馥龄

  尹伟伦

  夏新莉

  北京林业大学

  Plant Cell Reports

  The calcium sensor PeCBL1, interacting with PeCIPK24/25 and PeCIPK26, regulates Na+/K+ homeostasis in Populus euphratica

  盐胁迫

  吕馥龄

  尹伟伦

  夏新莉

  北京林业大学

  Plant Cell Reports

  Expression profiling and functional characterization of a CBL-interacting protein kinase gene from Populus euphratica

  盐胁迫

  马志慧

  林思祖

  福建农林大学

  PLoS One

  Ion Flux in Roots of Chinese Fir (Cunninghamia lanceolata (Lamb.) Hook) under Aluminum Stress

  铝胁迫

  陈喆

  仇荣亮

  汤叶涛

  中山大学环境科学与工程学院

  Chemosphere

  Mechanisms of Fe biofortification and mitigation of Cd accumulation in rice (Oryza sativa L.) grown hydroponically with Fe chelate fertilization

  重金属胁迫

  周爱民

  柳参奎

  东北农业大学

  Plant Biotechnology Journal

  Conserved V-ATPase c subunit plays a role in plant growth by influencing V-ATPase-dependent endosomal trafficking

  盐胁迫

  吴新新

  郭仰东

  中国农业大学园艺学院

  Plant and Cell Physiology

  Brassica oleracea MATE Encodes a Citrate Transporter and Enhances Aluminum Tolerance in Arabidopsis thaliana

  铝胁迫

  黄咏明

  邹英宁

  吴强盛

  长江大学

  Scientific Reports

  Mycorrhiza-induced lower oxidative burst is related with higher antioxidant enzyme activities, net H2O2 effluxes, and Ca2+ influxes in trifoliate orange roots under drought stress

  干旱胁迫

  邹英宁

  吴强盛

  长江大学

  Chemosphere

  Alleviation of drought stress by mycorrhizas is related to increased root H2O2 efflux in trifoliate orange mycorrhizas is related to increased root H2O2 efflux in trifoliate orange

  干旱胁迫

  阮丽

  成浩

  王丽鸢

  中国农业科学院茶叶研究所

  Scientific Reports

  Characteristics of NH4+ and NO3? fluxes in tea (Camellia sinensis) roots measured by scanning

  ion-selective electrode technique

  植物

  氮营养

  王宁

  严根土

  黄群

  中国农业科学院棉花研究所

  Acta Physiologiae Plantarum

  Cotton (Gossypium hirsutum L.) genotypes with contrasting K+/Na+ ion homeostasis: implications for salinity tolerance

  盐胁迫

  王宁

  严根土

  中国农业科学院棉花研究所

  Soil Science and Plant Nutrition

  Genotypic variations in ion homeostasis, photochemical efficiency and antioxidant capacity adjustment to salinity in cotton (Gossypium hirsutum L.)

  盐胁迫

  赵中先

  王玮

  山东农业大学

  Plant Science

  The improvement of salt tolerance in transgenic tobacco by overexpression of wheat F-box gene TaFBA1

  盐胁迫

  唐波

  尹春英

  中国科学院成都生物研究所

  Acta Oecologica

  Positive effects of night warming on physiology of coniferous trees in late growing season: Leaf and root

  高温胁迫

  谭松

  印莉萍

  首都师范大学

  Transgenic Research

  Over-expression of the MxIRT1 gene increases iron and zinc content in rice seeds

  植物营养

  李妹芳

  杨兴洪

  山东农业大学

  Physiologia Plantarum

  Glycine betaine-mediated potentiation of HSP gene expression involves calcium signaling pathways in tobacco exposed to NaCl stress

  盐胁迫

  胡增辉

  冷平生

  北京农学院

  Plant Physiology and Biochemistry

  Ca2+ signal contributing to the synthesis and emission of monoterpenes regulated by light intensity in Lilium ‘siberia

  植物生理

  冯中涛

  王宝山

  山东师范大学

  Acta Physiologiae Plantarum

  Study on pathway and characteristics of ion secretion of salt glands of Limonium bicolor

  盐胁迫

  氮营养

  冯中涛

  王宝山

  山东师范大学

  Plant Science

  K+ accumulation in the cytoplasm and nucleus of the salt gland cells of Limonium bicolor accompanies increased rates of salt secretion under NaCl treatment using NanoSIMS

  盐胁迫

  赖迪文

  谢彦杰

  南京农业大学

  Plant Science

  Endogenous hydrogen sulfide enhances salt tolerance by coupling thereestablishment of redox homeostasis and preventing salt-induced K+ loss in seedlings of Medicago sativa

  盐胁迫

  王鹏

  崔素娟

  南京农业大学

  Journal of Biological Chemistry

  A Na+ Ca2+ exchanger-like protein (AtNCL) involved in salt stress in Arabidopsis

  盐胁迫

  王飞娟

  王飞娟

  朱诚

  中国计量大学

  Plant Physiology and Biochemistry

  Different responses of low grain-Cd-accumulating and high grain-Cd accumulating rice cultivars to Cd stress

  重金属胁迫

  李双

  印莉萍

  首都师范大学

  Plant Science

  OsSEC24, a functional SEC24-like protein in rice, improves tolerance to iron deficiency and high pH by enhancing H+ secretion mediated byPM-H+-ATPase

  植物铁营养

   

  本活动持续至2018年12月31日,如需申请,请点击NMT方法学奖励申请 。

   

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