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Co-expression of G2-EPSPS and glyphosate acetyltransferase GAT genes conferring high tolerance to glyphosate in soybean

机译:大豆中对草甘膦具有高度耐受性的 G2-EPSPS 和草甘膦乙酰基转移酶 GAT 基因的共表达

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Glyphosate is a widely used non-selective herbicide with broad spectrum of weed control around the world. At present, most of the commercial glyphosate tolerant soybeans utilize glyphosate tolerant gene CP4-EPSPS or glyphosate acetyltransferase gene GAT separately. In this study, both glyphosate tolerant gene G2-EPSPS and glyphosate degraded gene GAT were co-transferred into soybean and transgenic plants showed high tolerance to glyphosate. Molecular analysis including PCR, Sothern blot, qRT-PCR, and Western blot revealed that target genes have been integrated into genome and expressed effectively at both mRNA and protein levels. Furthermore, the glyphosate tolerance analysis showed that no typical symptom was observed when compared with a glyphosate tolerant line HJ06-698 derived from GR1 transgenic soybean even at fourfold labeled rate of Roundup. Chlorophyll and shikimic acid content analysis of transgenic plant also revealed that these two indexes were not significantly altered after glyphosate application. These results indicated that co-expression of G2-EPSPS and GAT conferred high tolerance to the herbicide glyphosate in soybean. Therefore, combination of tolerant and degraded genes provides a new strategy for developing glyphosate tolerant transgenic crops.
机译:草甘膦是一种广泛使用的非选择性除草剂,在世界范围内具有广泛的杂草控制能力。目前,大多数商业耐草甘膦大豆分别利用耐草甘膦基因CP4-EPSPS或草甘膦乙酰转移酶基因GAT。在这项研究中,草甘膦耐受基因G2-EPSPS和草甘膦降解基因GAT被共转移到大豆中,转基因植物对草甘膦表现出高耐受性。包括PCR,Sothern印迹,qRT-PCR和Western印迹在内的分子分析表明,靶基因已整合到基因组中,并在mRNA和蛋白质水平上均有效表达。此外,草甘膦耐受性分析表明,与来自GR1转基因大豆的耐草甘膦品系HJ06-698相比,即使以农达的标记率是四倍,也没有观察到典型症状。转基因植物的叶绿素和sh草酸含量分析还表明,施用草甘膦后这两个指标没有显着变化。这些结果表明G2-EPSPS和GAT的共表达赋予大豆中除草剂草甘膦高耐受性。因此,耐性基因和降解基因的组合为开发耐草甘膦转基因作物提供了新的策略。

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