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    题名 作者 年代 出处 被引量
1光照条件下低温对水稻籼粳亚种幼苗抗氧化物质含量的影响显示文摘与对低温不敏感的粳稻台北309和武育粳相比,对低温敏感的籼稻IR64、CA212和Pusa经光照条件下8℃处理后最大光合速率(Pmax)和原初光化学效率(Fv/Fm)下降较多,出现了O2-·、过氧化氢、氧化型谷胱甘肽(GSSG)和氧化型抗坏血酸(DHA)的大量累积,其GSSG和DHA的含量分别与叶绿素含量的下降呈极显著负相关,表明光照条件下低温胁迫下,还原态的谷胱甘肽(GSH)和抗坏血酸的再生受阻,不能有效地清除活性氧,导致其叶绿素含量降低和光合能力受抑,而汕优63的变化位于上述两种类型之间。其中AsA/DHA和GSH/GSSG的变化与叶绿素含量的变化呈极显著正相关。李霞 戴传超 焦德茂 Christine H.Foyer 2006植物生理与分子生物学学报2006,32,3:13
2Glutathione in plants: an integrated overview显示文摘GRAHAMNOCTOR AMNAMHAMDI SEJIRCHAOUCH YIHAN JENNYNEUKERMANS BELENMARQUEZ‐GARCIA GUILLAUMEQUEVAL CHRISTINE H.FOYER 2012Plant, Cell & Environment2012,,2:2
3Oxidant and antioxidant signalling in plants: a re‐evaluation of the concept of oxidative stress in a physiological context显示文摘CHRISTINE H.FOYER GRAHAMNOCTOR 2005Plant Cell & Environment2005,,8:1
4A novel function for a redox‐related LEA protein (SAG21/AtLEA5) in root development and biotic stress responses显示文摘FAEZAH MOHDSALLEH KARLYEVANS BENJAMINGOODALL HELENAMACHIN SHAHEEN B.MOWLA LUIS A. J.MUR JOHNRUNIONS FREDERICA L.THEODOULOU CHRISTINE H.FOYER HILARY J.ROGERS 2012Plant Cell & Environment2012,,2:1
5Oxidant and antioxidant signalling in plants: a re‐evaluation of the concept of oxidative stress in a physiological context显示文摘CHRISTINE H.FOYER GRAHAMNOCTOR 2005Plant Cell & Environment2005,,8:1
6Yeast complementation reveals a role for an Arabidopsis thaliana late embryogenesis abundant (LEA)‐like protein in oxidative stress tolerance显示文摘Shaheen B.Mowla AnnCuypers Simon P.Driscoll GuyKiddle JenniferThomson Christine H.Foyer Frederica L.Theodoulou 2006The Plant Journal2006,,5:1
7Redox sensing and signalling associated with reactive oxygen in chloroplasts, peroxisomes and mitochondria显示文摘Christine H.Foyer GrahamNoctor 2003Physiologia Plantarum2003,,3:1
8Trehalose:A sugar molecule involved in temperature stress management in plants显示文摘Trehalose(Tre)is a non-reducing disaccharide found in many species,including bacteria,fungi,invertebrates,yeast,and even plants,where it acts as an osmoprotectant,energy source,or protein/membrane protector.Despite relatively small amounts in plants,Tre concentrations increase following exposure to abiotic stressors.Trehalose-6-phosphate,a precursor of Tre,has regulatory functions in sugar metabolism,crop production,and stress tolerance.Among the various abiotic stresses,temperature extremes(heat or cold stress)are anticipated to impact crop production worldwide due to ongoing climate changes.Applying small amounts of Tre can mitigate negative physiological,metabolic,and molecular responses triggered by temperature stress.Trehalose also interacts with other sugars,osmoprotectants,amino acids,and phytohormones to regulate metabolic reprogramming that underpins temperature stress adaptation.Transformed plants expressing Tre-synthesis genes accumulate Tre and show improved stress tolerance.Genome-wide studies of Tre-encoding genes suggest roles in plant growth,development,and stress tolerance.This review discusses the functions of Tre in mitigating temperature stress—highlighting genetic engineering approaches to modify Tre metabolism,crosstalk,and interactions with other molecules—and in-silico approaches for identifying novel Tre-encoding genes in diverse plant species.We consider how this knowledge can be used to develop temperature-resilient crops essential for sustainable agriculture.Ali Raza Savita Bhardwaj Md Atikur Rahman Pedro García-Caparrós Madiha Habib Faisal Saeed Sidra Charagh Christine H.Foyer Kadambot H.M.Siddique Rajeev K.Varshney 2024The Crop Journal2024,12,1:0
9根—茎间系统信号驱动茉莉酸依赖的根结线虫抗性显示文摘文章简介植物在进化中形成了一系列适应季节和环境变化的内在机制,然而对于植物如何通过不同器官互作来应对生物与非生物胁迫则知之甚少。王郭婷 胡超轶 周杰 Ya Liu Jiaxing Cai Caizhe Pan Yu Wang Xiaodan Wu Kai Shi Xiaojian Xia 周艳虹 Christine H.Foyer 喻景权 2020科学新闻2020,,2:0
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