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Changes in Oleic Acid Content of Transgenic Soybeans by Antisense RNA Mediated Posttranscriptional Gene Silencing

机译:反义RNA介导的转录后基因沉默对转基因大豆油酸含量的影响

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摘要

The Delta-12 oleate desaturase gene (FAD2-1), which converts oleic acid into linoleic acid, is the key enzyme determining the fatty acid composition of seed oil. In this study, we inhibited the expression of endogenous Delta-12 oleate desaturase GmFad2-1b gene by using antisense RNA in soybean Williams 82. By employing the soybean cotyledonary-node method, a part of the cDNA of soybean GmFad2-1b 801 bp was cloned for the construction of a pCAMBIA3300 vector under the soybean seed promoter BCSP. Leaf painting, LibertyLink strip, PCR, Southern blot, qRT-PCR, and fatty acid analysis were used to detect the insertion and expression of GmFad2-1b in the transgenic soybean lines. The results indicate that the metabolically engineered plants exhibited a significant increase in oleic acid (up to 51.71%) and a reduction in palmitic acid (to <3%) in their seed oil content. No structural differences were observed between the fatty acids of the transgenic and the nontransgenic oil extracts.
机译:Delta-12油酸去饱和酶基因(FAD2-1)将油酸转化为亚油酸,是决定种子油脂肪酸组成的关键酶。在这项研究中,我们通过使用反义RNA抑制大豆Williams 82中内源性Delta-12油酸去饱和酶GmFad2-1b基因的表达。通过使用大豆子叶节方法,大豆GmFad2-1b 801 bp的cDNA的一部分被克隆用于在大豆种子启动子BCSP下构建pCAMBIA3300载体。使用叶画,LibertyLink条,PCR,Southern印迹,qRT-PCR和脂肪酸分析来检测GmFad2-1b在转基因大豆品系中的插入和表达。结果表明,经过代谢改造的植物的种子油含量显示出油酸的显着增加(最高51.71%)和棕榈酸的减少(至<3%)。在转基因和非转基因油提取物中的脂肪酸之间未观察到结构差异。

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