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The plasma membrane H+-ATPase is related to the development of salicylic acid-induced thermotolerance in pea leaves 期刊论文
PLANTA, 2009, 卷号: 229, 期号: 5, 页码: 1087-1098
Authors:  Liu, Yanyan;  Liu, Hongtao;  Pan, Qiuhong;  Yang, Haoru;  Zhan, Jicheng;  Huang, Weidong
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Pea  Plasma Membrane  Plasma Membrane h+-atpase  Salicylic Acid  Subcellular Location  Thermotolerance  
The plasma membrane H(+)-ATPase is related to the development of salicylic acid-induced thermotolerance in pea leaves SCI/SSCI论文
Authors:  Liu Y. Y.;  Liu H. T.;  Pan Q. H.;  Yang H. R.;  Zhan J. C.;  Huang W. D.
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Pea  Plasma Membrane  Plasma Membrane h(+)-atpase  Salicylic Acid  Subcellular Location  Thermotolerance  Acclimation-induced Thermotolerance  Yeast Saccharomyces-cerevisiae  Systemic Acquired-resistance  Heat-shock Proteins  Young Grape Plants  Abscisic-acid  Temperature Stresses  Glucose Activation  Phospholipase-c  Tomato Plants  
Salicylic acid or heat acclimation pre-treatment enhances the plasma membrane-associated ATPase activities in young grape plants under heat shock SCI/SSCI论文
Authors:  Liu Y. P.;  Zhang J. H.;  Liu H. T.;  Huang W. D.
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Heat Acclimation  Salicylic Acid  h(+)-atpase  Ca(2+)-atpase  Young  Grape Plants  h+-atpase  Oxidative Stress  Chilling Stress  Winter-wheat  Calcium  Cells  Seedlings  ca2+-atpase  Thermotolerance  Enzyme  
Peroxidation of membrane lipid and Ca(2+) homeostasis in grape mesophyll cells during the process of cross-adaptation to temperature stresses SCI/SSCI论文
Authors:  Wang L. J.;  Huang W. D.;  Li J. Y.;  Liu Y. F.;  Shi Y. L.
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Grape  Cross Adaptation  Peroxidation  Ca(2+) Homeostasis  Heat-shock Proteins  Chilling Tolerance  Cold-acclimation  Cotton  Plants  Tomato Fruit  Salt Stress  Calcium  Seedlings  Induction  Thermotolerance