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首页> 外文期刊>Plant Molecular Biology >Molecular Cloning and Characterization of a Vacuolar H(+)-pyrophos-phatase Gene, SsVP, from the Halophyte Suaeda salsa and its Overexpression Increases Salt and Drought Tolerance of Arabidopsis
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Molecular Cloning and Characterization of a Vacuolar H(+)-pyrophos-phatase Gene, SsVP, from the Halophyte Suaeda salsa and its Overexpression Increases Salt and Drought Tolerance of Arabidopsis

机译:盐生食盐藻的Vacuolar H(+)焦磷酸酶基因SsVP的分子克隆和表征,其过表达增加拟南芥的耐盐性和耐旱性

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摘要

The chenopodiaceae Suaeda salsa L. is a leaf succulent euhalophyte. Shoots of the S. salsa are larger and more succulent when grown in highly saline environments. This increased growth and water uptake has been correlated with a large and specific cellular accumulation of sodium. S. salsa does not have salt glands or salt bladders on its leaves. Thus, this plant must compartmentalize the toxic Na(+) in the vacuoles. The ability to compartmentalize sodium may result from a stimulation of the proton pumps that provide the driving force for increased sodium transport into the vacuole. In this work, we isolated the cDNA of the vacuolar membrane proton-translocating inorganic pyrophosphatase (H(+)-PPase) from S. salsa. The SsVP cDNA contains an uninterrupted open reading frame of 2292 bp, coding for a polypeptide of 764 amino acids. Northern blotting analysis showed that SsVP was induced in salinity treated leaves. The activities of both the V-ATPase and the V-PPase in Arabidopsis overexpressing SsVP-2 is higher markedly than in wild-type plant under 200 mM NaCl and drought stresses. The Overexpression of SsVP can increase salt and drought tolerance of transgenic Arabidopsis.
机译:藜科Suaeda salsa L.是一种叶多肉的真盐植物。在高盐度环境中生长时,S。salsa的芽较大且更肉质。这种增长的生长和水分吸收与钠的大量特定的细胞积累有关。 S. salsa的叶子上没有盐腺或盐囊。因此,该植物必须在液泡中分隔有毒的Na(+)。钠分隔的能力可能是由于质子泵的刺激而产生的,该质子泵提供了增加钠向液泡中转运的驱动力。在这项工作中,我们从S. salsa中分离了液泡膜质子易位的无机焦磷酸酶(H(+)-PPase)的cDNA。 SsVP cDNA包含2292 bp的不间断开放阅读框,编码764个氨基酸的多肽。 Northern印迹分析表明在盐处理的叶片中诱导了SsVP。在200 mM NaCl和干旱胁迫下,过表达拟南芥SsVP-2的V-ATPase和V-PPase活性均明显高于野生型植物。 SsVP的过表达可以提高转基因拟南芥的耐盐耐旱性。

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