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Rice intermediate filament OsIF stabilizes photosynthetic machinery and yield under salinity and heat stress

机译:水稻中间花丝OsIF在盐分和热胁迫下稳定光合作用机制和产量

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摘要

Cytoskeleton plays a vital role in stress tolerance; however, involvement of intermediate filaments (IFs) in such a response remains elusive in crop plants. This study provides clear evidence about the unique involvement of IFs in cellular protection against abiotic stress in rice. Transcript abundance of Oryza sativa intermediate filament (OsIF) encoding gene showed 2–10 fold up-regulation under different abiotic stress. Overexpression of OsIF in transgenic rice enhanced tolerance to salinity and heat stress, while its knock-down (KD) rendered plants more sensitive thereby indicating the role of IFs in promoting survival under stress. Seeds of OsIF overexpression rice germinated normally in the presence of high salt, showed better growth, maintained chloroplast ultrastructure and favourable K+/Na+ ratio than the wild type (WT) and KD plants. Analysis of photosynthesis and chlorophyll a fluorescence data suggested better performance of both photosystem I and II in the OsIF overexpression rice under salinity stress as compared to the WT and KD. Under salinity and high temperature stress, OsIF overexpressing plants could maintain significantly high yield, while the WT and KD plants could not. Further, metabolite profiling revealed a 2–4 fold higher accumulation of proline and trehalose in OsIF overexpressing rice than WT, under salinity stress.
机译:细胞骨架在压力耐受中起着至关重要的作用。然而,在农作物中,中间花丝(IFs)参与这种反应仍然难以捉摸。这项研究提供了有关IFs参与水稻抗非生物胁迫细胞保护作用的独特证据。在不同的非生物胁迫下,水稻稻中间丝(OsIF)编码基因的转录本丰富度显示出2-10倍的上调。 OsIF在转基因水稻中的过表达增强了对盐分和热胁迫的耐受性,而其敲低(KD)使植物更敏感,从而表明了IFs在促进胁迫下存活的作用。过表达OsIF的水稻种子在高盐条件下可以正常发芽,表现出比野生型更好的生长,保持叶绿体超微结构和有利的K + / Na + 比和KD工厂。对光合作用和叶绿素a荧光数据的分析表明,与WT和KD相比,盐胁迫下OsIF过表达水稻的光系统I和II表现更好。在盐分和高温胁迫下,过表达OsIF的植物可以保持明显的高产,而野生型和KD植物则不能。此外,在盐分胁迫下,过表达OsIF的大米中脯氨酸和海藻糖的代谢物分析显示,脯氨酸和海藻糖的积累比WT高2-4倍。

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