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首页> 外文期刊>The Plant Cell >A wheat SIMILAR TO RCD-ONE gene enhances seedling growth and abiotic stress resistance by modulating redox homeostasis and maintaining genomic integrity.
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A wheat SIMILAR TO RCD-ONE gene enhances seedling growth and abiotic stress resistance by modulating redox homeostasis and maintaining genomic integrity.

机译:类似于RCD-ONE的小麦基因通过调节氧化还原稳态和维持基因组完整性来增强幼苗生长和抗非生物胁迫。

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摘要

Plant growth inhibition is a common response to salinity. Under saline conditions, Shanrong No. 3 (SR3), a bread wheat (Triticum aestivum) introgression line, performs better than its parent wheat variety Jinan 177 (JN177) with respect to both seedling growth and abiotic stress tolerance. Furthermore, the endogenous reactive oxygen species (ROS) was also elevated in SR3 relative to JN177. The SR3 allele of sro1, a gene encoding a poly(ADP ribose) polymerase (PARP) domain protein, was identified to be crucial for both aspects of its superior performance. Unlike RADICAL-INDUCED CELL DEATH1 and other Arabidopsis thaliana SIMILAR TO RCD-ONE (SRO) proteins, sro1 has PARP activity. Both the overexpression of Ta-sro1 in wheat and its heterologous expression in Arabidopsis promote the accumulation of ROS, mainly by enhancing the activity of NADPH oxidase and the expression of NAD(P)H dehydrogenase, in conjunction with the suppression of alternative oxidase expression. Moreover, it promotes the activity of ascorbate-GSH cycle enzymes and GSH peroxidase cycle enzymes, which regulate ROS content and cellular redox homeostasis. sro1 is also found to be involved in the maintenance of genomic integrity. We show here that the wheat SRO has PARP activity; such activity could be manipulated to improve the growth of seedlings exposed to salinity stress by modulating redox homeostasis and maintaining genomic stability.
机译:抑制植物生长是对盐度的常见反应。在盐分条件下,面包小麦(Triticum aestivum)渗入系山绒3号(SR3)在幼苗生长和非生物胁迫耐受性方面均优于其亲本小麦品种济南177(JN177)。此外,相对于JN177,SR3中的内源性活性氧(ROS)也升高。 sro1的SR3等位基因是一种编码聚ADP核糖聚合酶(PARP)域蛋白的基因,被认为对其优越性能的两个方面都至关重要。不同于RADICAL-INDUCED CELL DEATH1和其他拟南芥RCD-ONE(SRO)蛋白,sro1具有PARP活性。 Ta-sro1在小麦中的过表达及其在拟南芥中的异源表达都促进ROS的积累,这主要是通过增强NADPH氧化酶的活性和NAD(P)H脱氢酶的表达,以及抑制其他氧化酶的表达来实现的。此外,它还促进了抗坏血酸-GSH循环酶和GSH过氧化物酶循环酶的活性,从而调节ROS含量和细胞氧化还原稳态。 sro1也被发现与基因组完整性的维持有关。我们在这里表明小麦SRO具有PARP活性;可以通过调节氧化还原稳态并保持基因组稳定性来控制这种活性,以提高盐胁迫下幼苗的生长。

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