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首页> 外文期刊>Nature Communications >The plastid metalloprotease FtsH6 and small heat shock protein HSP21 jointly regulate thermomemory in Arabidopsis
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The plastid metalloprotease FtsH6 and small heat shock protein HSP21 jointly regulate thermomemory in Arabidopsis

机译:质体金属蛋白酶FtsH6和小的热休克蛋白HSP21共同调节拟南芥(Arabidopsis )的温度记忆

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摘要

Acquired tolerance to heat stress is an increased resistance to elevated temperature following a prior exposure to heat. The maintenance of acquired thermotolerance in the absence of intervening stress is called ‘thermomemory’ but the mechanistic basis for this memory is not well defined. Here we show that Arabidopsis HSP21, a plastidial small heat shock protein that rapidly accumulates after heat stress and remains abundant during the thermomemory phase, is a crucial component of thermomemory. Sustained memory requires that HSP21 levels remain high. Through pharmacological interrogation and transcriptome profiling, we show that the plastid-localized metalloprotease FtsH6 regulates HSP21 abundance. Lack of a functional FtsH6 protein promotes HSP21 accumulation during the later stages of thermomemory and increases thermomemory capacity. Our results thus reveal the presence of a plastidial FtsH6–HSP21 control module for thermomemory in plants.
机译:获得的对热应力的耐受性是在事先暴露于热之后对高温的抵抗力增加。在没有中间压力的情况下维持获得的耐热性被称为“热记忆”,但是这种记忆的机制基础尚不明确。在这里,我们显示拟南芥HSP21是热记忆的重要组成部分,它是热应激后迅速积累并在热记忆阶段保持丰富的质体小热激蛋白。持续的内存要求HSP21保持高电平。通过药理研究和转录组分析,我们表明质体定位的金属蛋白酶FtsH6调节HSP21的丰度。功能性FtsH6蛋白的缺乏会在热记忆的后期促进HSP21的积累并增加热记忆的能力。因此,我们的结果表明存在用于植物热记忆的质体FtsH6-HSP21控制模块。

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