首页> 外文期刊>BMC Plant Biology >Rice OsRH58, a chloroplast DEAD-box RNA helicase, improves salt or drought stress tolerance in Arabidopsis by affecting chloroplast translation
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Rice OsRH58, a chloroplast DEAD-box RNA helicase, improves salt or drought stress tolerance in Arabidopsis by affecting chloroplast translation

机译:米奥罗姆汤汤中的死箱RNA螺旋酶,通过影响叶绿体翻译来改善拟南芥中的盐或干旱胁迫耐受性

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摘要

Despite increasing characterization of DEAD-box RNA helicases (RHs) in chloroplast gene expression regulation at posttranscriptional levels in plants, their functional roles in growth responses of crops, including rice (Oryza sativa), to abiotic stresses are yet to be characterized. In this study, rice OsRH58 (LOC_Os01g73900), a chloroplast-localized DEAD-box RH, was characterized for its expression patterns upon stress treatment and its functional roles using transgenic Arabidopsis plants under normal and abiotic stress conditions. Chloroplast localization of OsRH58 was confirmed by analyzing the expression of OsRH58-GFP fusion proteins in tobacco leaves. Expression of OsRH58 in rice was up-regulated by salt, drought, or heat stress, whereas its expression was decreased by cold, UV, or ABA treatment. The OsRH58-expressing Arabidopsis plants were taller and had more seeds than the wild type under favorable conditions. The transgenic plants displayed faster seed germination, better seedling growth, and a higher survival rate than the wild type under high salt or drought stress. Importantly, levels of several chloroplast proteins were increased in the transgenic plants under salt or dehydration stress. Notably, OsRH58 harbored RNA chaperone activity. These findings suggest that the chloroplast-transported OsRH58 possessing RNA chaperone activity confers stress tolerance by increasing translation of chloroplast mRNAs.
机译:尽管在植物前术语水平水平的叶绿体基因表达调节中提高了死箱RNA螺旋酶(RHS)的表达,但它们在包括水稻(Oryza Sativa)的作物的生长响应中的功能作用尚不考位。在该研究中,稻OSRH58(LOM_OS01G73900)是一种叶绿体局部的死箱RH,其表征在正常和非生物胁迫条件下使用转基因拟南芥植物的应力处理和其功能作用的表达模式。通过分析烟叶中OSRH58-GFP融合蛋白的表达来证实OSRH58的叶绿体定位。通过盐,干旱或热应激升调水稻中OSRH58的表达,而其表达通过冷,UV或ABA处理减少。奥斯仑58型拟南芥植物较高,比野生型在有利条件下具有更多的种子。转基因植物显示出更快的种子萌发,更好的幼苗生长,高于高盐或干旱胁迫下的野生型生存率较高。重要的是,在盐或脱水应力下的转基因植物中增加了几种叶绿体蛋白的水平。值得注意的是,OSRH58患有RNA伴侣的活性。这些发现表明,通过增加叶绿体MRNA的翻译,具有RNA伴侣活性的叶绿体传输的OSRH58赋予应力耐受性。

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