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OsiSAP1 overexpression improves water-deficit stress tolerance in transgenic rice by affecting expression of endogenous stress-related genes

机译:OsiSAP1过表达通过影响内源胁迫相关基因的表达提高转基因水稻的水分胁迫逆境耐受性

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摘要

OsiSAP1, an A20/AN1 zinc-finger protein, confers water-deficit stress tolerance at different stages of growth by affecting expression of several endogenous genes in transgenic rice. Transgenic lines have been generated from rice constitutively expressing OsiSAP1, an A20/AN1 zinc-finger containing stress-associated protein gene from rice, driven by maize UBIQUITIN gene promoter and evaluated for water-deficit stress tolerance at different stages of growth. Their seeds show early germination and seedlings grow better under water-deficit stress compared to non-transgenic (NT) rice. Leaves from transgenic seedlings showed lesser membrane damage and lipid peroxidation under water-deficit stress. Relatively lower rate of leaf water loss has been observed in detached intact leaves from transgenic plants during late vegetative stage. Delayed leaf rolling and higher relative water content were also observed in transgenic plants under progressive water-deficit stress during reproductive developmental stage. Although reduction in grain yield is observed under unstressed condition, the relative water-deficit stress-induced yield losses are lower in transgenic rice vis-A -vis NT plants thereby resulting in yield loss protection. Transcriptome analysis suggests that overexpression of OsiSAP1 in transgenic rice results in altered expression of several endogenous genes including those coding for transcription factors, membrane transporters, signaling components and genes involved in metabolism, growth and development. A total of 150 genes were found to be more than twofold up-regulated in transgenic rice of which 43 genes are known to be involved in stress response. Our results suggest that OsiSAP1 is a positive regulator of water-deficit stress tolerance in rice.
机译:OsiSAP1是一种A20 / AN1锌指蛋白,通过影响转基因水稻中几个内源基因的表达,在不同的生长阶段赋予了水分亏缺胁迫耐受性。从玉米组成性表达OsiSAP1(一种包含来自水稻的胁迫相关蛋白基因的A20 / AN1锌指)的水稻中产生了转基因品系,由玉米UBIQUITIN基因启动子驱动,并评估了不同生长阶段的水分亏缺胁迫耐受性。与非转基因水稻相比,它们的种子显示出了早期发芽状态,并且在缺水胁迫下幼苗的生长更好。转基因幼苗的叶片在缺水胁迫下表现出较小的膜损伤和脂质过氧化作用。在营养后期,从转基因植物中分离的完整叶片中观察到叶片失水率相对较低。在生殖发育阶段,在进行性缺水胁迫下,转基因植物也观察到了延迟的叶片滚动和较高的相对水分含量。尽管在无胁迫条件下观察到谷物产量降低,但是相对于A-NT植物而言,相对水分亏缺胁迫诱导的产量损失较低,从而保护了产量。转录组分析表明,OsiSAP1在转基因水稻中的过表达导致几种内源基因的表达发生变化,包括编码转录因子,膜转运蛋白,信号成分和参与代谢,生长和发育的基因。发现转基因水稻中共有150个基因上调了两倍以上,其中43个基因与胁迫反应有关。我们的结果表明,OsiSAP1是水稻缺水胁迫耐受性的正调控因子。

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