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The wheat chloroplastic small heat shock protein (sHSP26) is involved in seed maturation and germination and imparts tolerance to heat stress

机译:小麦氯塑料小型热休克蛋白(SHSP26)参与种子成熟和萌发,并赋予热应激的耐受性

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摘要

The nuclear-encoded chloroplast small heat shock proteins (sHSPs) are present in all plant species from algae to angiosperms. Expression analysis shows that the wheat chloroplastic sHSP (HSP26) is highly inducible by heat stress in almost all the vegetative and generative tissues and is also expressed constitutively in certain developmental growth stages. We characterize wheat chloroplastic sHSP 26 through transgenic approach using Arabidopsis and report cloning of the promoter and its characterization. Transgenic Arabidopsis plants were substantially tolerant under continuous high temperature regimen than wild-type plants, as measured by photosystem II (PSII) activity, accumulation of more photosynthetic pigments, higher biomass and seed yield. Transgenic plants produced bold seeds under high temperature, having higher germination potential than the wild-type plants. Further, antisense Arabidopsis plants showed negligible tolerance even for non-lethal heat shock, impaired in basal thermo-tolerance, and accumulated less biomass and seed yield under normal growth conditions. Promoter analysis revealed the presence of several heat and other abiotic stress responsive cis-acting elements along with developmental stage and tissue-specific elements. Analysis of promoter through GUS reporter system in both transgenic rice and Arabidopsis further confirms the role of chloroplastic sHsp26 in heat and other abiotic stresses as well as during seed maturation and germination. Genome-wide expression analysis of overexpression Arabidopsis plants revealed that the transcriptome remained unchanged in the transgenic plants and the tolerance was due to the overexpression of chloroplastic heat shock protein (HSP) only.
机译:核编码的叶绿体小型热休克蛋白(SHSP)以藻类到Angiosperms的所有植物物种中存在。表达分析表明,小麦叶片SHSP(HSP26)在几乎所有营养和生成组织中的热应激高度诱导,并且在某些发育生长阶段也表达了组成型。我们通过使用拟南芥和报告启动子的克隆及其表征,通过转基因方法表征小麦叶片SHSP 26。转基因拟南芥植物在连续的高温方案下比野生型植物在连续的高温方案下耐受,如通过照相型(PSII)活性,积聚更多光合色素,更高的生物质和种子产量。转基因植物在高温下产生大胆的种子,比野生型植物具有更高的萌发潜力。此外,即使对于非致命热休克,均可忽略不计的拟征拟拟合植物即使对于非致命的热休克,并且在正常生长条件下累积较少的生物质和种子产量。启动子分析揭示了几种热量和其他非生物应激响应性CIS作用元件以及发育阶段和组织特异性元素的存在。转基因水稻和拟南芥在转基因水稻和拟南芥中通过GUS报告系统分析进一步证实了叶片SHSP26在热和其他非生物胁迫中的作用以及种子成熟和萌发过程中的作用。过表达拟南芥植物的基因组表达分析表明,转录组在转基因植物中保持不变,并且耐受性是由于叶片热休克蛋白(HSP)的过度表达。

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