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首页> 外文期刊>Plant Science: An International Journal of Experimental Plant Biology >A maize mutant with decreased capacity to accumulate chloroplast protein synthesis elongation factor (EF-Tu) displays reduced tolerance to heat stress
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A maize mutant with decreased capacity to accumulate chloroplast protein synthesis elongation factor (EF-Tu) displays reduced tolerance to heat stress

机译:玉米叶片积累叶绿体蛋白合成延伸因子(EF-Tu)的能力下降,显示出对热胁迫的耐受性降低

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A chloroplast protein synthesis elongation factor, EF-Tu, accumulates in some maize (Zea mays L.) genotypes that show increased tolerance to heat stress [Planta 212 (2001) 359]. Previous studies, have suggested that maize EF-Tu may play a role in the development of heat tolerance [Plant Sci. 163 (2002) 1075]. In the present study, we identified a maize mutant that has decreased capacity to synthesize and accumulate EF-Tu under heat stress and tested the ability of the mutant to tolerate heat stress. Experiments were conducted in the laboratory using 17-day old plants. Stress tolerance was assessed by examining heat stability of photosynthetic membranes (thylakoids), thermal aggregation of chloroplast stromal proteins, and plant growth after exposure to stress. Compared to wild type (non-mutant), the mutant showed reduced tolerance to heat stress. Importantly, chloroplast stromal proteins from the EF-Tu-deficient mutant displayed greater aggregation during exposure to high temperature than chloroplast stromal proteins from the wild type. The results strongly support the hypothesis that maize EF-Tu plays a role in the development of heat tolerance by acting as a molecular chaperone and protecting chloroplast stromal proteins from thermal aggregation. (C) 2004 Elsevier Ireland Ltd. All rights reserved.
机译:叶绿体蛋白合成延伸因子EF-Tu积累在某些玉米(Zea mays L.)基因型中,表现出对热胁迫的耐受性增强[Planta 212(2001)359]。先前的研究表明,玉米EF-Tu可能在耐热性的形成中发挥作用[Plant Sci。 163(2002)1075]。在本研究中,我们鉴定了在热胁迫下具有降低的合成和积累EF-Tu能力的玉米突变体,并测试了该突变体耐受热胁迫的能力。实验是使用17天大的植物在实验室中进行的。通过检查光合膜(类囊体)的热稳定性,叶绿体基质蛋白的热聚集以及暴露于胁迫后的植物生长来评估胁迫耐受性。与野生型(非突变体)相比,该突变体显示出对热胁迫的耐受性降低。重要的是,来自EF-Tu缺陷的突变体的叶绿体基质蛋白在暴露于高温下比来自野生型的叶绿体基质蛋白表现出更大的聚集。这些结果强有力地支持了以下假设:玉米EF-Tu通过充当分子伴侣并保护叶绿体基质蛋白免于热聚集而在耐热性的发展中起作用。 (C)2004 Elsevier Ireland Ltd.保留所有权利。

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