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首页> 外文期刊>Journal of Experimental Botany >A novel chloroplast protein, CEST induces tolerance to multiple environmental stresses and reduces photooxidative damage in transgenic Arabidopsis
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A novel chloroplast protein, CEST induces tolerance to multiple environmental stresses and reduces photooxidative damage in transgenic Arabidopsis

机译:CEST是一种新型叶绿体蛋白,可诱导对多种环境胁迫的耐受性并减少转基因拟南芥中的光氧化损伤

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摘要

Environmental stresses are major factors in limiting plant growth and crop production. To find genes improving salt tolerance, the screening of a large population of transgenic Arabidopsis thaliana that expressed rice full-length cDNAs under salinity stress is reported here. In this study one of the isolated salt-tolerant lines, R07303 was analysed in detail. An uncharacterized rice gene CHLOROPLAST PROTEIN-ENHANCING STRESS TOLERANCE (OsCEST) was integrated in R07303. Newly constructed transgenic Arabidopsis that overexpressed OsCEST or its Arabidopsis homologue AtCEST showed improved tolerance to salinity stress. OsCEST and AtCEST were mainly transcribed in photosynthetic tissues. Green fluorescent protein-fused OsCEST and AtCEST proteins were localized to the chloroplast in the Arabidopsis leaf protoplasts. CEST-overexpressing Arabidopsis showed enhanced tolerance not only to salt stress but also to drought stress, high-temperature stress, and paraquat, which causes photooxidative stress. Under saline conditions, overexpression of CESTs modulated the stress-induced impairment of photosynthetic activity and the peroxidation of lipids. Reduced expression of AtCEST because of double-stranded RNA interference resulted in the impairment of photosynthetic activity, the reduction of green pigment, defects in chloroplast development, and growth retardation under light. This paper discusses the relationship between the chloroplast protein CEST and photooxidative damage.
机译:环境胁迫是限制植物生长和作物产量的主要因素。为了找到提高耐盐性的基因,此处报道了在盐胁迫下筛选大量表达水稻全长cDNA的转基因拟南芥的报道。在这项研究中,对分离的耐盐品系之一R07303进行了详细分析。 R07303中整合了一个未鉴定的水稻基因叶绿体蛋白质增强胁迫耐受性(OsCEST)。过表达OsCEST或其拟南芥同源物AtCEST的新构建的转基因拟南芥显示出对盐胁迫的耐受性提高。 OsCEST和AtCEST主要在光合组织中转录。绿色荧光蛋白融合的OsCEST和AtCEST蛋白位于拟南芥叶原生质体中的叶绿体上。 CEST过表达的拟南芥不仅对盐胁迫耐受性增强,而且对干旱胁迫,高温胁迫和百草枯均具有增强的耐受性,后者会引起光氧化胁迫。在盐条件下,CESTs的过表达调节了应激诱导的光合作用和脂质过氧化损伤。由于双链RNA干扰,AtCEST的表达减少导致光合作用受损,绿色色素减少,叶绿体发育缺陷以及光照下的生长迟缓。本文讨论了叶绿体蛋白CEST与光氧化损伤之间的关系。

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