首页> 美国卫生研究院文献>Plant Physiology >Effect of Light and Chilling Temperatures on Chilling-sensitive and Chilling-resistant Plants. Pretreatment of Cucumber and Spinach Thylakoids in Vivo and in Vitro
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Effect of Light and Chilling Temperatures on Chilling-sensitive and Chilling-resistant Plants. Pretreatment of Cucumber and Spinach Thylakoids in Vivo and in Vitro

机译:光照和低温对低温敏感植物和耐低温植物的影响。黄瓜和菠菜类囊体的体内和体外预处理

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摘要

The effects of chilling temperatures, in light or dark, on the isolated thylakoids and leaf discs of cucumber (Cucumis sativa L. “Marketer”) and spinach (Spinacia oleracea L. “Bloomsdale”) were studied. The pretreatment of isolated thylakoids and leaf discs at 4 C in the dark did not affect the phenazine methosulfate-dependent phosphorylation, proton uptake, osmotic response to sucrose, Ca2+-dependent ATPase activity, or chlorophyll content. Exposure of cucumber cotyledon discs and isolated thylakoids of cucumber and spinach to 4 C in light resulted in a rapid inactivation of the thylakoids. The sequence of activities or components lost during inactivation (starting with the most sensitive) are: phenazine methosulfate-dependent cyclic phosphorylation, proton uptake, osmotic response to sucrose, Ca2+-dependent ATPase activity, and chlorophyll. The rate of loss of proton uptake, osmotic response to sucrose, Ca2+-dependent ATPase activity and chlorophyll is similar for isolated cucumber and spinach thylakoids, whereas spinach thylakoids are more resistant to the loss of phenazine methosulfate-dependent phosphorylation. The thylakoids of spinach leaf discs were unaffected by exposure to 4 C in light. The results question whether the extreme resistance of spinach thylakoids treated in vivo is solely a function of the chloroplast thylakoid membranes and establish the validity of using in vitro results to make inferences about cucumber thylakoids treated in vivo at 4 C in light.
机译:研究了低温(冷或暗)对黄瓜(Cucumis sativa L.“ Marketer”)和菠菜(Spinacia oleracea L.“ Bloomsdale”)的类囊体和叶盘的影响。在黑暗中于4 C预处理分离的类囊体和叶盘不会影响吩嗪硫酸甲酯依赖性的磷酸化,质子吸收,对蔗糖的渗透反应,Ca 2 + 依赖性ATPase活性或叶绿素含量。黄瓜子叶盘和黄瓜和菠菜分离的类囊体在光照下暴露于4 C导致类囊体迅速失活。灭活过程中失去活性或成分的顺序(从最敏感的开始)为:吩嗪硫酸甲酯依赖性环状磷酸化,质子吸收,对蔗糖的渗透反应,Ca 2 + 依赖性ATPase活性和叶绿素。分离的黄瓜和菠菜类囊体中质子吸收的损失速率,对蔗糖的渗透反应,Ca 2 + 依赖性ATP酶活性和叶绿素相似,而菠菜类囊体对吩嗪硫酸甲酯的损失更有抵抗力。依赖性磷酸化。菠菜叶盘的类囊体不受光暴露于4 C的影响。该结果质疑体内处理的菠菜类囊体的极端抗性是否仅是叶绿体类囊体膜的功能,并建立了使用体外结果推断在4 C的光照下体内处理的黄瓜类类囊体的有效性。

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