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首页> 外文期刊>Functional Plant Biology >Arabidopsis cysteine-rich trans-membrane module (CYSTM) small proteins play a protective role mainly against heat and UV stresses
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Arabidopsis cysteine-rich trans-membrane module (CYSTM) small proteins play a protective role mainly against heat and UV stresses

机译:富含拟拟拟合性富含的跨膜模块(Cystm)小蛋白主要在热和紫外线胁迫下发挥保护作用

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摘要

The genomes of Arabidopsis and other plants contain cysteine-rich small protein of unknown function, harbouring a transmembrane module (CYSTM proteins). In this work we show that the transcript of one gene (At1g05340) encoding a CYSTM protein is induced mainly by heat and to a lesser extent by UV, but less by NaCl or sorbitol. A functional analysis of At1g05340 and its paralog At2g32210 using T-DNA insertional mutants revealed a decrease in seedlings root length, and a lower PSII efficiency in mature plant, due to heat stress and to a lesser extent due to UV stress, in comparison to the effect on wild-type plants. The sensitivity of these mutants to salt or osmotic stresses did not differ from wild type response, indicating a specific function for these genes in heat and UV. Heat and UV increased reactive oxygen species levels in wild type; however, the levels were higher in the mutant line than in wild type due to heat treatment, but was similar in the mutant lines and wild type due to UV stress. Taken together, our results suggest that these small cysteine-rich proteins are necessary for thermotolerance and protection from UV exposure. The proteins encoded by these genes most likely, act in heat stress by reducing reactive oxygen species level by yet unknown mechanism.
机译:拟南芥和其他植物的基因组含有富含半胱氨酸的小蛋白,未知功能,含有跨膜模块(Cystm蛋白)。在这项工作中,我们表明,编码囊体蛋白的一种基因(AT1G05340)的转录物主要通过热量并通过UV较小,但不含NaCl或山梨糖醇。使用T-DNA插入突变体的AT1G05340及其ParaLoG AT2G32210的功能分析显示幼苗根长的降低,以及成熟植物的较低PSII效率,由于紫外线应力,较小的程度相比对野生型植物的影响。这些突变体与盐或渗透胁迫的敏感性与野生型反应没有不同,表明热量和紫外线中这些基因的特定功能。热量和紫外线在野生型中增加反应性氧物种水平;然而,由于热处理,突变线的突变线的水平高于野生型,但由于UV应力,突变线和野生型类似。我们的结果表明,富含紫外线暴露的热能和保护是必需的富含富含半胱氨酸的富含蛋白质。通过这些基因编码的蛋白质最有可能通过降低反应性氧物种水平尚不清楚的机制来动作热应力。

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