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Heterologous expression of ApGSMT2 and ApDMT2 genes from Aphanothece halophytica enhanced drought tolerance in transgenic tobacco

机译:盐生假单胞菌ApGSMT2和ApDMT2基因的异源表达增强了转基因烟草的耐旱性

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The glycine-methylation biosynthetic pathway of glycinebetaine (GB) has been investigated, but only a few studies on GB accumulation in transgenic higher plants have utilized this pathway. In this study, two methyltransferase genes named ApGSMT2 and ApDMT2, encoding proteins catalyzing GB biosynthesis from glycine, were cloned from a relative strain of Aphanothece halophytica. The potential roles of ApGSMT2 and ApDMT2 in GB synthesis were first examined in transgenic Escherichia coli, which had increased levels of GB and improved salt tolerance. Then ApGSMT2 and ApDMT2 were transferred into tobacco. Compared with transgenic tobacco expressing betA, transgenic tobacco co-expressing ApGSMT2 and ApDMT2 accumulated more GB and exhibited enhanced drought resistance with better germination performance, higher relative water content, less cell membrane damage and better photosynthetic capacity under drought stress. We concluded that the ApGSMT2 and ApDMT2 genes cloned in this study will be very useful for engineering GB-accumulating transgenic plants with enhanced drought resistance.
机译:已经研究了甘氨酸甜菜碱(GB)的甘氨酸甲基化生物合成途径,但是只有很少的关于转基因高等植物中GB积累的研究利用了该途径。在这项研究中,从嗜盐假单胞菌的相对菌株中克隆了两个甲基转移酶基因,分别命名为ApGSMT2和ApDMT2,它们编码从甘氨酸催化GB生物合成的蛋白质。首先在转基因大肠杆菌中检查了ApGSMT2和ApDMT2在GB合成中的潜在作用,该大肠杆菌具有增加的GB水平和改善的耐盐性。然后将ApGSMT2和ApDMT2转移到烟草中。与表达betA的转基因烟草相比,共表达ApGSMT2和ApDMT2的转基因烟草积累了更多的GB,并表现出增强的抗旱性,更好的发芽性能,更高的相对含水量,更少的细胞膜损伤以及在干旱胁迫下更好的光合能力。我们得出的结论是,在这项研究中克隆的ApGSMT2和ApDMT2基因对于工程化具有积累抗旱性的积累GB的转基因植物非常有用。

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