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与耐盐相关的蛋白STO与一种Myb转录因子同源物结合,并赋予拟南芥耐盐性。

Salt tolerance-related protein STO binds to a Myb transcription factor homologue and confers salt tolerance in Arabidopsis.

作者信息

Nagaoka Shuuichi, Takano Tetsuo

机构信息

Asian Natural Environmental Science Center, The University of Tokyo, University Farm, 1-1-1 Midori-cho, Nishitokyo-shi, Tokyo 188-0002, Japan.

出版信息

J Exp Bot. 2003 Oct;54(391):2231-7. doi: 10.1093/jxb/erg241. Epub 2003 Aug 8.

Abstract

Regulating the intracellular Na+/K+ ratio is an essential process for salinity tolerance. The yeast mutant, can, which is deficient in calcineurin, can not grow on medium containing Na+ because it is unable to regulate the intracellular Na+/K+ ratio. Expression of the STO gene of Arabidopsis thaliana in the can mutant complements the salt-sensitive phenotype. A protein of Arabidopsis, an H-protein promoter binding factor (HPPBF-1), that binds to STO protein was isolated. HPPBF-1 cDNA has a sequence encoding a Myb DNA binding-motif and its gene expression is induced by salt stress. Furthermore, HPPBF-1 protein is localized in the nucleus. Although, the expression level of STO is not induced under salt-stress conditions, overexpression of STO in a transgenic Arabidopsis plant gave it a higher salt tolerance than was observed in the wild type. When STO transgenic plants and wild-type plants were subjected to salt stress, root growth was increased by 33-70% in the transgenic plants under salt stress. These results suggest that STO is involved in salt-stress responses in Arabidopsis.

摘要

调节细胞内的钠钾比是耐盐性的一个重要过程。酵母突变体“can”缺乏钙调神经磷酸酶,无法在含钠培养基上生长,因为它无法调节细胞内的钠钾比。拟南芥STO基因在“can”突变体中的表达弥补了其盐敏感表型。分离出一种拟南芥蛋白,即与STO蛋白结合的H蛋白启动子结合因子(HPPBF - 1)。HPPBF - 1 cDNA具有编码Myb DNA结合基序的序列,其基因表达受盐胁迫诱导。此外,HPPBF - 1蛋白定位于细胞核。虽然在盐胁迫条件下STO的表达水平未被诱导,但在转基因拟南芥植株中过表达STO使其比野生型具有更高的耐盐性。当转基因拟南芥植株和野生型植株遭受盐胁迫时,转基因植株在盐胁迫下的根生长增加了33 - 70%。这些结果表明STO参与了拟南芥的盐胁迫反应。

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