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首页> 外文期刊>Electronic Journal of Biotechnology >Construction of an RNAi vector for knockdown of GM-ACS genes in the cotyledonary nodes of soybean
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Construction of an RNAi vector for knockdown of GM-ACS genes in the cotyledonary nodes of soybean

机译:敲除大豆子叶节中GM-ACS基因的RNAi载体的构建

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Background: Ethylene plays an important role in the regulation of floral organ development in soybean, and ACC synthase is a rate-limiting enzyme for ethylene biosynthesis. However, whether ACC synthase also regulates floral organ differentiation in soybean remains unknown. To address this, we constructed an RNAi vector to inhibit ACC synthase expression in cotyledonary nodes. Linear DNA cassettes of RNAi-ACS obtained by PCR were used to transform soybean cotyledonary nodes. Results: One hundred thirty-one of 139 transiently transformed plants acquired herbicide resistance and displayed GUS activities in the new buds. In comparison to untransformed seedling controls, a greater number of flower buds were differentiated at the cotyledonary node; GM-ACS1 mRNA expression levels and ethylene emission in the transformed buds were reduced. Conclusion: These results indicate that the cotyledonary node transient transformation system may be suitable for stable transformation, and that inhibition of ACC synthase expression may be an effective strategy for promoting floral organ differentiation in soybean.
机译:背景:乙烯在调节大豆花器官发育中起着重要作用,ACC合酶是乙烯生物合成的限速酶。但是,ACC合酶是否也调节大豆花器官分化尚不清楚。为了解决这个问题,我们构建了RNAi载体来抑制子叶节中ACC合酶的表达。通过PCR获得的RNAi-ACS的线性DNA盒被用于转化大豆子叶节。结果:139个瞬时转化植物中的131个获得了除草剂抗性,并在新芽中表现出GUS活性。与未转化的幼苗对照相比,子叶节处分化出更多的花蕾。 GM-ACS1 mRNA表达水平和转化芽中的乙烯释放降低。结论:这些结果表明子叶节瞬时转化系统可能适合稳定转化,并且抑制ACC合酶表达可能是促进大豆花器官分化的有效策略。

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