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首页> 外文期刊>Transgenic research >Ectopic expression of GroEL from Xenorhabdus nematophila in tomato enhances resistance against Helicoverpa armigera and salt and thermal stress
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Ectopic expression of GroEL from Xenorhabdus nematophila in tomato enhances resistance against Helicoverpa armigera and salt and thermal stress

机译:番茄线虫中GroEL在番茄中的异位表达增强了对棉铃虫,盐和热胁迫的抗性

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摘要

The GroEL homolog XnGroEL protein of Xenorhabdus nematophila belongs to a highly conserved family of molecular chaperones/heat shock proteins (Hsps). XnGroEL was shown to possess oral insecticidal activity against a major crop pest Helicoverpa armigera. Under normal conditions, the Hsps/chaperones facilitate folding, assembly, and translocation of cellular proteins, while in stress conditions they protect proteins from denaturation. In this study, we describe generation of transgenic tomato plants overexpressing insecticidal XnGroEL protein and their tolerance to biotic and abiotic stresses. Presence of XnGroEL in the transgenic tomato lines conferred resistance against H. armigera showing 100 % (p a parts per thousand currency sign 0.001) mortality of neonates. In addition, XnGroEL provided thermotolerance and protection against high salt concentration to the tomato plants. Expression of XnGroEL minimized photo-oxidation of chlorophyll and reduced oxidative damage of cell membrane system of the plants under heat and salt stress. The enhanced tolerance to abiotic stresses correlated with increase in the anti-oxidative enzyme activity and reduced H2O2 accumulation in transgenic tomato plants. The variety of beneficial properties displayed by XnGroEL protein provides an opportunity for value addition and improvement of crop productivity.
机译:Xenorhabdus nematophila的GroEL同源XnGroEL蛋白属于分子伴侣/热激蛋白(Hsps)的高度保守的家族。 XnGroEL被证明具有对主要农作物害虫Helicoverpa armigera的口服杀虫活性。在正常条件下,Hsps /分子伴侣有助于细胞蛋白质的折叠,组装和转运,而在应激条件下,它们可保护蛋白质免于变性。在这项研究中,我们描述了过表达杀虫XnGroEL蛋白的转基因番茄植株及其对生物和非生物胁迫的耐受性。 XnGroEL在转基因番茄品系中的存在赋予了对棉铃虫的抗药性,显示新生儿死亡率为100%(每千货币符号的份数为0.001)。此外,XnGroEL还为番茄植物提供了耐热性和高盐浓度保护。 XnGroEL的表达使热和盐胁迫下叶绿素的光氧化作用最小化,并减少了植物细胞膜系统的氧化损伤。对非生物胁迫的耐受性增强与转基因番茄植株中抗氧化酶活性的增加和H2O2积累的减少有关。 XnGroEL蛋白展现出的多种有益特性为增值和提高作物生产力提供了机会。

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