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首页> 外文期刊>Plant Molecular Biology >Non-redundant functions of sHSP-CIs in acquired thermotolerance and their role in early seed development in Arabidopsis
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Non-redundant functions of sHSP-CIs in acquired thermotolerance and their role in early seed development in Arabidopsis

机译:sHSP-CIs在获得性耐热性中的非冗余功能及其在拟南芥种子早期发育中的作用

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Heat-shock proteins (HSPs) are a group of evolutionarily conserved polypeptides whose expression is induced in all organisms in response to environmental stresses and during various developmental processes. In this work, we show that the rose (Rosa hybrida) cytoplasmic 17.5-kDa Class I small HSP (sHSP17.5-CI, accession number: BQ103946) increases dramatically during flower development, and accumulates in closed bud petals and leaves only in response to heat stress. mRNA for a putative ortholog of this protein is also found in petals, but not leaves, of Arabidopsis (Arabidopsis thaliana) plants grown under optimal conditions, and it accumulates in leaves in response to heat stress. Analysis of Arabidopsis T-DNA insertion lines affected at three homologous genes revealed that their acquired thermotolerance, as measured by hypocotyl-elongation assay, is impaired. The correlation between sHSP-CI accumulation and expansion of rose petal cells, impairment of acquired thermotolerance, and defects in early embryogenesis of the double mutants (hsp17.4/hsp17.6A), all suggest that sHSP-CI proteins play a role in protecting cell proteins at various developmental stages, whereas in hypocotyl elongation they have a non-redundant function in acquired thermotolerance but have a redundant function in early embryogenesis.
机译:热休克蛋白(HSP)是一组进化保守的多肽,其表达是在所有生物中响应环境压力和在各种发育过程中诱导的。在这项工作中,我们显示玫瑰(Rosa hybrida)细胞质17.5-kDa I类小HSP(sHSP17.5-CI,保藏号:BQ103946)在花发育过程中急剧增加,并且仅在封闭的芽花瓣和叶片中积累加热压力。在最佳条件下生长的拟南芥(Arabidopsis thaliana)植物的花瓣中,但在叶片中却没有发现这种蛋白质的直系同源物的mRNA,并且在热胁迫下它会在叶片中积累。分析受到三个同源基因影响的拟南芥T-DNA插入系显示,通过下胚轴伸长测定法测定的其获得的耐热性受损。 sHSP-CI积累和玫瑰花瓣细胞扩增,获得性耐热性受损以及双突变体(hsp17.4 / hsp17.6A)早期胚胎发生中的缺陷之间的相关性均表明sHSP-CI蛋白在保护中发挥作用细胞蛋白处于不同的发育阶段,而在下胚轴延伸中,它们在获得的耐热性中具有非冗余功能,但在早期胚胎发生中具有多余的功能。

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