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Artificial miRNA-mediated down-regulation of two monolignoid biosynthetic genes (C3H and F5H) cause reduction in lignin content in jute

机译:人工miRNA介导的两个单配体生物合成基因(C3H和F5H)的下调导致黄麻中木质素含量降低

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摘要

Artificial microRNAs (amiRNA) provide a new feature in the gene silencing era. Concomitantly, reducing the amount of lignin in fiber-yielding plants such as jute holds significant commercial and environmental potential, since this amount is inversely proportional to the quality of the fiber. The present study aimed at reducing the lignin content in jute, by introducing amiRNA based vectors for down-regulation of two monolignoid biosynthetic genes of jute, coumarate 3-hydroxylase (C3H) and ferulate 5-hydroxylase (F5H). The transgenic lines of F5H-amiRNA and C3H-amiRNA showed a reduced level of gene expression, which resulted in about 25 % reduction in acid insoluble lignin content for whole stem and 12-15 % reduction in fiber lignin as compared to the non-transgenic plants. The results indicate successful F5H-amiRNA and C3H-amiRNA transgenesis for lignin reduction in jute. This is likely to have far-reaching commercial implications and economic acceleration for jute producing countries.
机译:人工microRNA(amiRNA)在基因沉默时代提供了新功能。相应地,减少诸如黄麻之类的生产纤维的植物中木质素的含量具有重要的商业和环境潜力,因为该数量与纤维的质量成反比。本研究旨在通过引入基于amiRNA的载体来下调黄麻的两个单木质生物合成基因,香豆酸盐3-羟化酶(C3H)和阿魏酸5-羟化酶(F5H),从而降低黄麻中的木质素含量。与非转基因相比,F5H-amiRNA和C3H-amiRNA的转基因品系显示出降低的基因表达水平,这导致整个茎的酸不溶性木质素含量降低约25%,纤维木质素降低12-15%植物。结果表明成功的F5H-amiRNA和C3H-amiRNA转基因可降低黄麻中的木质素。对于黄麻生产国来说,这可能具有深远的商业意义和经济增长。

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