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Cool-temperature-induced chlorosis in rice plants.

机译:水稻引起的低温诱导的绿化。

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摘要

We have established an experimental system for mimicking the phenomenon of cool-temperature-induced chlorosis (CTIC) in rice plants (Oryza sativa L.). Rice seedlings were initially grown in darkness under cool-temperature conditions and then exposed to light and warm conditions to follow the expression of CTIC. Induction of CTIC in the sensitive cultivar (cv Surjamukhi) was bimodally dependent on the temperatures experienced during the initial growth in darkness. CTIC was maximally induced between 15 and 17 degrees C. A positive correlation was demonstrated between induction of CTIC and the growth activity of shoots during growth in darkness. Electrophoretic and immunoblot analysis revealed that accumulation of NADPH-protochlorophyllide oxidoreductase in plastids was also bimodally dependent on the temperatures during the growth in darkness with minimum accumulation between 15 and 17 degrees C, suggesting that the reduction of NADPH-protochlorophyllide oxidoreductase accumulation in plastids might be closely linked to a disturbance in transformations of plastids to etioplasts during the dark growth under the critical temperatures and thereby to the CTIC phenomenon. This was corroborated by electron microscopic observations. These results suggest that growth is one of the determining factors for the expression of CTIC phenotype in rice under cool temperature.
机译:我们已经建立了一个模拟系统来模拟水稻(Oryza sativa L.)中的低温诱导的萎黄病(CTIC)现象。水稻幼苗最初是在凉爽的黑暗条件下生长的,然后暴露在光照和温暖的条件下以跟随CTIC的表达。敏感品种(cv Surjamukhi)中CTIC的诱导是双峰依赖于在黑暗中初始生长过程中经历的温度。在15到17摄氏度之间最大程度地诱导了CTIC。在黑暗中生长期间,CTIC的诱导与枝条的生长活性之间呈正相关。电泳和免疫印迹分析表明,质体中NADPH-原绿叶素氧化还原酶的积累也与温度呈双峰依赖性,最低积累在15至17摄氏度之间,这表明质体中NADPH-原绿叶素氧化还原酶的积累减少可能是由于与在临界温度下黑暗生长期间质体向质体转化的干扰密切相关,从而与CTIC现象密切相关。电子显微镜观察证实了这一点。这些结果表明,生长是低温下水稻CTIC表型表达的决定因素之一。

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