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首页> 外文期刊>Saudi Journal of Biological Sciences >Molecular cloning and expression analysis of RrNHX1 and RrVHA-c genes related to salt tolerance in wild Rosa rugosa
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Molecular cloning and expression analysis of RrNHX1 and RrVHA-c genes related to salt tolerance in wild Rosa rugosa

机译:野蔷薇耐盐性相关RrNHX1和RrVHA-c基因的分子克隆和表达分析

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摘要

Salt stress is one important factor influencing the growth and development of plants, and salt tolerance of plants is a result of combined action of multiple genes and mechanisms. Rosa rugosa is not only an important ornamental plant, but also the natural aromatic plant of high value. Wild R. rugosa which is naturally distributed on the coast and islands of China has a good salt tolerance due to the special living environment. Here, the vacuolar Na^+/H^+ reverse transporter gene (NHX1) and the vacuolar H^+-ATPase subunit C gene (VHA-c) closely related to plant salt tolerance were isolated from wild R. rugosa, and the expression patterns in R. rugosa leaves of the two genes under NaCl stress were determined by real-time quantitative fluorescence PCR. The results showed that the RrNHX1 protein is a constitutive Na^+/H^+ reverse transporter, the expression of the RrNHX1 gene first increased and then decreased with the increasing salt concentration, and had a time-controlled effect. The RrVHA-c gene is suggestive of the housekeeping feature, its expression pattern showed a similar variation trend with the RrNHX1 gene under the stress of different concentrations of NaCl, and its temporal expression level under 200mM NaCl stress presented bimodal change. These findings indicated that RrNHX1 and RrVHA-c genes are closely associated with the salt tolerance trait of wild R. rugosa.
机译:盐胁迫是影响植物生长发育的重要因素之一,植物的耐盐性是多种基因和多种机制共同作用的结果。玫瑰蔷薇不仅是重要的观赏植物,而且还是高价值的天然芳香植物。自然分布在中国沿海和岛屿上的野山R由于其特殊的生活环境具有良好的耐盐性。在此,从野生拟南芥中分离出与植物耐盐性密切相关的液泡型Na ^ + / H ^ +反向转运蛋白基因(NHX1)和液泡型H ^ +-ATPase亚基C基因(VHA-c),并表达通过实时定量荧光PCR确定了两个基因在NaCl胁迫下的皱叶红景天叶片中的模式。结果表明,RrNHX1蛋白为Na ^ + / H ^ +组成型逆向转运蛋白,RrNHX1基因的表达随盐浓度的升高先升高后降低,并具有时间调控作用。 RrVHA-c基因暗示了管家功能,其表达模式在不同浓度的NaCl胁迫下与RrNHX1基因表现出相似的变化趋势,在200mM NaCl胁迫下其时间表达水平呈现双峰变化。这些发现表明,RrNHX1和RrVHA-c基因与野生R.rugosa的耐盐性密切相关。

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