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首页> 外文期刊>Plant Biotechnology >Application of somatic embryos to rapid and reliable analysis of soybean seed components by RNA interference-mediated gene silencing.
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Application of somatic embryos to rapid and reliable analysis of soybean seed components by RNA interference-mediated gene silencing.

机译:应用体细胞胚通过RNA干扰介导的基因沉默技术快速,可靠地分析大豆种子成分。

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摘要

Soybean somatic embryos have attracted attention both as a model of zygotic embryos and as explants for the generation of transgenic plants. beta-Conglycinin, which is composed of 3 subunits ( alpha, alpha' and beta) that are encoded by a multigene family, is a major seed component of soybean and accumulates in somatic embryos with their maturation. Somatic embryos were subjected to transformation with vectors encoding double-stranded RNA fragments of various sizes that correspond to the gene for the alpha' subunit of beta-conglycinin. These DNA fragments were put under the control of the promoter region of the gene for another major seed protein, the A2B1a subunit of glycinin. Transgenic somatic embryos were obtained within 2 months of transformation, and the resulting mature embryos manifested down-regulation of the alpha' subunit of beta-conglycinin in a manner dependent on the size of the RNAi vector insert. Accumulation of small interfering RNA and depletion of mRNA corresponding to the alpha' subunit were indicative of RNAi. Amounts of alpha and beta subunits of beta-conglycinin, which share high sequence similarity with the alpha' subunit, were also reduced in the mature somatic embryos. Moreover, the abundance of all beta-conglycinin subunits was greatly reduced in the seeds of regenerated transgenic plants. Results indicated that the application of RNAi to somatic embryos may be a feasible and rapid option for functional studies of soybean seed components.
机译:大豆体细胞胚作为合子胚的模型和作为转基因植物生成的外植体都已引起人们的关注。 β-伴大豆球蛋白由一个多基因家族编码的3个亚基(α,α'和β)组成,是大豆的主要种子成分,随着成熟而积累在体细胞胚中。用编码与β-伴大豆球蛋白的α'亚基的基因相对应的各种大小的双链RNA片段的载体对体细胞胚进行转化。将这些DNA片段置于另一个主要种子蛋白,大豆球蛋白A2B1a亚基的基因启动子区域的控制之下。在转化的2个月内获得了转基因体细胞胚,所得的成熟胚表现出β-伴大豆球蛋白的α'亚基下调的方式,取决于RNAi载体插入片段的大小。小干扰RNA的积累和对应于α'亚基的mRNA的消耗指示RNAi。在成熟的体细胞胚中,β-伴大豆球蛋白的α和β亚基的数量与α'亚基具有高度的序列相似性,它们的数量也减少了。而且,再生的转基因植物种子中所有β-伴大豆球蛋白亚基的丰度大大降低。结果表明,将RNAi应用于体细胞胚可能是进行大豆种子成分功能研究的可行且快速的选择。

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