首页> 外文期刊>Plant Biotechnology Journal >Enhanced salt stress tolerance of rice plants expressing a vacuolar H+‐ATPase subunit c1 (SaVHAc1) gene from the halophyte grass Spartina alterniflora L?isel
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Enhanced salt stress tolerance of rice plants expressing a vacuolar H+‐ATPase subunit c1 (SaVHAc1) gene from the halophyte grass Spartina alterniflora L?isel

机译:从烟道草Spartina anderiflora L的含有真空H + -ATPase亚基C1(Sevhac1)基因的水稻植物的盐胁迫耐受性

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The physiological role of a vacuolar ATPase subunit c1 (SaVHAc1) from a halophyte grass Spartina alterniflora was studied through its expression in rice. The SaVHAc1-expressing plants showed enhanced tolerance to salt stress than the wild-type plants, mainly through adjustments in early stage and preparatory physiological responses. In addition to the increased accumulation of its own transcript, SaVHAc1 expression led to increased accumulation of messages of other native genes in rice, especially those involved in cation transport and ABA signalling. The SaVHAc1-expressing plants maintained higher relative water content under salt stress through early stage closure of the leaf stoma and reduced stomata density. The increased KSUP+/SUP/NaSUP+/SUP ratio and other cations established an ion homoeostasis in SaVHAc1-expressing plants to protect the cytosol from toxic NaSUP+/SUP and thereby maintained higher chlorophyll retention than the WT plants under salt stress. Besides, the role of SaVHAc1 in cell wall expansion and maintenance of net photosynthesis was implicated by comparatively higher root and leaf growth and yield of rice expressing SaVHAc1 over WT under salt stress. The study indicated that the genes contributing toward natural variation in grass halophytes could be effectively manipulated for improving salt tolerance of field crops within related taxa.
机译:通过其在水稻中表达研究了真空AtPase亚基C1(Savhac1)的生理作用来自卤素草spartina的含量。表达幼虫的植物表现出与野生型植物的盐应激耐受性增强,主要是通过早期阶段和预备生理反应的调整。除了增加其自己的成绩单的积累之外,Savhac1表达导致水稻中其他原生基因的信息的积累增加,尤其是参与阳离子运输和ABA信号传导的信息。表达幼株植物通过叶造口的早期闭合和稀疏的气孔密度保持较高的相对水含量。增加的K + / na + 比率和其他阳离子在萨肟1型植物中建立了离子同性化,以保护来自毒性Na + 的细胞溶胶因此,比盐胁迫下的WT植物保持更高的叶绿素潴留。此外,通过在盐胁迫下对WT的相对较高的根和叶片生长和水稻的生长和产量相对较高,盐胁迫下水稻的生长和产量,致癌幼虫膨胀和维持净光合作用的作用。该研究表明,可以有效地操纵有助于草嗜睡剂的自然变化的基因,以改善相关征草中野外作物的耐盐性。

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