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首页> 外文期刊>Plant molecular biology reporter >Expression of a Suaeda salsa Vacuolar H+/Ca2+ Transporter Gene in Arabidopsis Contributes to Physiological Changes in Salinity
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Expression of a Suaeda salsa Vacuolar H+/Ca2+ Transporter Gene in Arabidopsis Contributes to Physiological Changes in Salinity

机译:Suaeda salsa液泡H + / Ca2 +转运蛋白基因在拟南芥中的表达有助于盐度的生理变化

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摘要

A cDNA (SsCAX1) encoding a tonoplast-localised Ca2+/H+ exchanger was isolated from a C-3 halophyte Suaeda salsa (L.). To clarify the role of SsCAX1 in plant salt tolerance, Arabidopsis plants expressing SsCAX1 were treated with NaCl. Transgenic Arabidopsis plants displayed decreased salt tolerance. Although Na+ content was close to wild-type plants, transgenic plants accumulated more Ca2+ and retained less K+ in leaves than the wild-type plants in salinity. Furthermore, transgenic lines held higher leaf membrane leakage than wild-type lines under NaCl treatment. In addition, transgenic plants showed a 23% increase in vacuolar H+-ATPase activity compared with wild-type plants in normal condition. But the leaf V-H+-ATPase activity had subtle changes in transgenic plants, while significantly increased in wild-type plants under saline condition. These results suggested that regulated expression of Ca2+/H+ antiport was critical for maintenance of cation homeostasis and activity of V-H+-ATPase under saline condition.
机译:从C-3盐生植物Suaeda salsa(L.)中分离出编码液泡膜定位Ca2 + / H +交换子的cDNA(SsCAX1)。为了阐明SsCAX1在植物耐盐性中的作用,用NaCl处理表达SsCAX1的拟南芥植物。转基因拟南芥植物显示出降低的耐盐性。尽管Na +含量接近野生型植物,但盐度比野生型植物的转基因植物积累更多的Ca2 +并保留较少的K +。此外,在NaCl处理下,转基因品系比野生型品系具有更高的叶膜渗漏。此外,与正常条件下的野生型植物相比,转基因植物的液泡H + -ATPase活性提高了23%。但是,叶片V-H + -ATPase活性在转基因植物中有细微的变化,而在盐条件下的野生型植物中则显着增加。这些结果表明,在盐条件下,Ca2 + / H +反向转运的调节表达对于维持阳离子稳态和V-H + -ATPase的活性至关重要。

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