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温度逆境交叉适应过程中葡萄幼苗质膜Ca2+-ATPase的细胞化学定位与活性变化

Cytochemical Localization and Changes in Activity of Plasma Membrane Ca2+-ATPase in Young Grape (Vitis vinifera L. cv. Jingxiu) Plants During Cross Adaptation to Temperature Stresses

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【作者】 张俊环张国强刘悦萍黄卫东

【Author】 ZHANG Jun-huan 1,2,ZHANG Guo-qiang 3,LIU Yue-ping1,HUANG Wei-dong 1(1 College of Food Science and Nutritional Engineering,China Agricultural University,Beijing 100083;2 Institute of Forestry and Pomology,Beijing Academy of Agriculture and Forestry Science,Beijing 100093;3 College of Animal Science and Technology,China Agricultural University,Beijing 100094)

【机构】 中国农业大学食品科学与营养工程学院中国农业大学动物科技学院中国农业大学食品科学与营养工程学院 北京100083北京市农林科学院林业果树研究所北京100093北京100094北京100083

【摘要】 目的研究植物交叉适应现象及其生理生化机制。方法以京秀葡萄(VitisviniferaL.cv.Jingxiu)为试材,研究了38℃/10h的高温锻炼预处理和8℃/2.5d的低温锻炼预处理分别对随后0℃低温和45℃高温胁迫期间葡萄叶片细胞质膜Ca2+-ATPase的影响。从生化水平测定了定位在质膜、液泡膜上的Ca2+-ATPase的活性,并用氯化铈沉淀的电镜细胞化学方法,定位观察了质膜Ca2+-ATPase的活性。结果高温锻炼预处理提高了微粒体膜上的Ca2+-ATPase酶的活性,并且在随后的低温胁迫条件下,保持了酶活性的稳定性;低温锻炼提高了微粒体在高温胁迫下的ATP酶活性。结论高温锻炼诱导的抗冷性和低温锻炼所诱导的耐热性的提高与微粒体膜上Ca2+-ATPase活性的变化有关,且高温锻炼和低温锻炼具有相同的调控机制。

【Abstract】 【Objective】The aim of the experiment is to explore the mechanism of cross adaptation to different temperature stresses in the plants【.Method】Leaves from one-year-old young grape(Vitis vinifera L.cv.Jingxiu) plants were used as experimental materials in this experiment.The changes of activity of plasma membrane Ca2+-ATPase both in chilling-treated plants after heat acclimation(HA,38℃/10 h) and heat-treated plants after cold acclimation(CA,8℃/2.5 d) were analyzed with biochemistry assay and electromicroscopic-cytochemical assay in which cerium trichloride(CeCl3) precipitation method was adopted.【Result】The plasma membrane Ca2+-ATPase activity was increased by HA or CA pretreatments.There was no obvious change in tonoplast Ca2+-ATPase activity after HA or CA.However,the stability of Ca2+-ATPase was enhanced under the subsequent cross-temperatures stresses,and the activity was always kept at higher level than that of control.【Conclusion】This result from biochemistry assay agreed with the observation through the electro-microscopic technology,which suggested that plasma membrane Ca2+-ATPase was involved in the chilling resistance induced by heat HA and the thermotolerance of grape plants induced by CA and almost had the same regulating mechanism.

【基金】 国家自然科学基金资助项目(30270918和30471192);国家“863”计划资助项目(2003AA241170)
  • 【文献出处】 中国农业科学 ,Scientia Agricultura Sinica , 编辑部邮箱 ,2006年08期
  • 【分类号】S663.1
  • 【被引频次】46
  • 【下载频次】585
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