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富含蛋氨酸的低分子量叶绿体热休克蛋白:与耐热性相关的进化保守性和积累

The methionine-rich low-molecular-weight chloroplast heat-shock protein: evolutionary conservation and accumulation in relation to thermotolerance.

作者信息

Downs C, Heckathorn S, Bryan J, Coleman J

出版信息

Am J Bot. 1998 Feb;85(2):175.

Abstract

The evolutionary conservation of the low-molecular-weight chloroplast-localized heat-shock protein (LMW chlpHsp) in vascular plants was examined using immunological methods. An antibody (Abmet) specific to the LMW chlpHsp was produced using a synthetic 28-residue peptide containing the most conserved elements of its unique "methionine-rich domain" as an antigen. This antibody detected a heat-inducible low-molecular-weight chloroplast protein in plants of six divergent Anthophyta species, including C3, C4, CAM, monocot, and dicot species. Abmet also detected a LMW chlpHsp in species from the Divisions Psilotophyta, Equisetophyta, Polypodiophyta, and Ginkgophyta. A preliminary examination of the relationship between accumulation of the LMW chlpHsp and habitat was also conducted. Seven Anthophyta species originating from both warm- and cool-temperature habitats were grown at 28C and then heat stressed at 40C. A positive qualitative relationship between the accumulation of the LMW chlpHsp and organismal thermotolerance in these species was observed; similar results were obtained separately with four nonAnthophyta species. The strong evolutionary conservation of this LMW Hsp and its localization to the chloroplast, and the correlation between production of this protein and plant thermotolerance, suggest that the LMW chlpHsp plays an important role in adaptation to heat stress.

摘要

利用免疫学方法研究了维管植物中低分子量叶绿体定位热激蛋白(LMW chlpHsp)的进化保守性。使用一种合成的28个残基的肽作为抗原,该肽包含其独特的“富含甲硫氨酸结构域”中最保守的元件,从而产生了一种对LMW chlpHsp特异的抗体(Abmet)。该抗体在六种不同的被子植物物种的植物中检测到一种热诱导的低分子量叶绿体蛋白,这些物种包括C3、C4、景天酸代谢(CAM)植物、单子叶植物和双子叶植物。Abmet还在松叶蕨纲、木贼纲、真蕨纲和银杏纲的物种中检测到一种LMW chlpHsp。还对LMW chlpHsp的积累与栖息地之间的关系进行了初步研究。将七种来自温暖和凉爽温度栖息地的被子植物物种在28℃下培养,然后在40℃下进行热胁迫。观察到这些物种中LMW chlpHsp的积累与生物体耐热性之间存在正定性关系;另外对四种非被子植物物种也分别获得了类似结果。这种LMW热激蛋白的强烈进化保守性及其在叶绿体中的定位,以及该蛋白的产生与植物耐热性之间的相关性,表明LMW chlpHsp在适应热胁迫中起重要作用。

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