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Yeast functional screen to identify genes conferring salt stress tolerance in Salicornia europaea

机译:酵母功能筛选以鉴定赋予欧洲盐柳耐盐性的基因

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摘要

Salinity is a critical environmental factor that adversely affects crop productivity. Halophytes have evolved various mechanisms to adapt to saline environments. Salicornia europaea L. is one of the most salt-tolerant plant species. It does not have special salt-secreting structures like a salt gland or salt bladder, and is therefore a good model for studying the common mechanisms underlying plant salt tolerance. To identify candidate genes encoding key proteins in the mediation of salt tolerance in S. europaea, we performed a functional screen of a cDNA library in yeast. The library was screened for genes that allowed the yeast to grow in the presence of 1.3 M NaCl. We obtained three full-length S. europaea genes that confer salt tolerance. The genes are predicted to encode (1) a novel protein highly homologous to thaumatin-like proteins, (2) a novel coiled-coil protein of unknown function, and (3) a novel short peptide of 32 residues. Exogenous application of a synthetic peptide corresponding to the 32 residues improved salt tolerance of Arabidopsis. The approach described in this report provides a rapid assay system for large-scale screening of S. europaea genes involved in salt stress tolerance and supports the identification of genes responsible for such mechanisms. These genes may be useful candidates for improving crop salt tolerance by genetic transformation.
机译:盐分是严重影响作物生产力的关键环境因素。盐生植物已经进化出多种机制来适应盐环境。 Salicornia europaea L.是最耐盐的植物之一。它没有像盐腺或盐囊这样的特殊盐分分泌结构,因此是研究植物耐盐性的常见机制的良好模型。为了鉴定在欧洲链球菌的耐盐性介导中编码关键蛋白的候选基因,我们对酵母中的cDNA文库进行了功能筛选。筛选该文库中允许酵母在1.3 M NaCl存在下生长的基因。我们获得了三个赋予盐耐性的全长欧洲链球菌基因。预计这些基因编码(1)与thaumatin样蛋白高度同源的新型蛋白,(2)功能未知的新型卷曲螺旋蛋白,以及(3)具有32个残基的新型短肽。外源施用对应于32个残基的合成肽改善了拟南芥的耐盐性。本报告中描述的方法为大规模筛选涉及盐胁迫耐受性的欧洲链球菌基因提供了一种快速测定系统,并支持鉴定负责这种机制的基因。这些基因可能是通过遗传转化改善作物耐盐性的有用候选物。

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