首页> 外文期刊>Russian Journal of Plant Physiology >Comparison of Bacterial and Plant Genes Participating in Proline Biosynthesis with Osmotin Gene, with Respect to Enhancing Salinity Tolerance of Transgenic Tobacco Plants
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Comparison of Bacterial and Plant Genes Participating in Proline Biosynthesis with Osmotin Gene, with Respect to Enhancing Salinity Tolerance of Transgenic Tobacco Plants

机译:渗透蛋白基因参与提高脯氨酸耐盐性的细菌和植物基因参与脯氨酸生物合成的比较

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摘要

In an attempt to increase tolerance to salinity stress in tobacco plants, the genes encoding the mutant form of glutamyl kinase (proB), pyrroline-5-carboxylate synthetase, and osmotin were cloned into three different shuttle vectors and were separately introduced into the tobacco plants. The transgenic lines were compared for their ability to produce shoots and grow in MS medium containing 320 mM NaCl; it was shown that the transgenic lines containing genetically handled osmotin gene are more resistant to salinity. The amount of chlorophyll a was used to show continuing growth of plant lines. The results showed that only the tobacco lines transformed with the modified osmotin gene exhibited greater tolerance to salinity.
机译:为了提高烟草植物对盐胁迫的耐受性,将编码谷氨酰激酶(proB),吡咯啉-5-羧酸合成酶和渗透素的突变形式的基因克隆到三种不同的穿梭载体中,并分别引入到烟草植物中。比较了转基因品系产生芽和在含有320mM NaCl的MS培养基中生长的能力。结果表明,含有经基因处理的渗透蛋白基因的转基因品系对盐分的抵抗力更高。叶绿素a的量用于显示植物品系的持续生长。结果表明,仅用修饰的渗透素基因转化的烟草品系表现出对盐度的更大耐受性。

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