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Introduction of the rice CYP714D1 gene into Populus inhibits expression of its homologous genes and promotes growth biomass production and xylem fibre length in transgenic trees

机译:将水稻CYP714D1基因导入胡杨可抑制其同源基因的表达并促进转基因树木的生长生物量产生和木质部纤维长度

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摘要

The rice (Oryza sativa) OsCYP714D1 gene (also known as EUI) encodes a cytochrome P450 monooxygenase which functions as a gibberellin (GA)-deactivating enzyme, catalysing 16α, 17-epoxidation of non-13-hydroxylated GAs. To understand whether it would also reduce the production of active GAs and depress the growth rate in transgenic trees, we constitutively expressed OsCYP714D1 in the aspen hybrid clone Populus alba×P. berolinensis. Unexpectedly, ectopic expression of OsCYP714D1 in aspen positively regulated the biosynthesis of GAs, including the active GA1 and GA4, leading to promotion of the growth rate and biomass production in transgenic plants. Transgenic lines which showed significant expression of the introduced OsCYP714D1 gene accumulated a higher GA level and produced more numerous and longer xylem fibres than did the wild-type plants. Quantitative real-time PCR indicated that transcription of most homologous PtCYP714 genes was suppressed in these transgenic lines. Therefore, the promoted GA and biomass production in transgenic trees constitutively expressing OsCYP714D1 is probably attributed to the down-regulated expression of the native PtCYP714 homologues involved in the GA biosynthesis pathway, although their precise functions are yet to be further elucidated.
机译:水稻的OsCYP714D1基因(也称为EUI)编码一种细胞色素P450单加氧酶,该酶起着赤霉素(GA)失活酶的作用,催化非13-羟基化GA的16α,17-环氧化。为了了解它是否还会减少活性GA的产生并抑制转基因树的生长速度,我们在白杨杂种克隆杨白杨中组成性表达了OsCYP714D1。柏林。出乎意料的是,OsCYP714D1在白杨中的异位表达正调控GAs的生物合成,包括活性GA1和GA4,从而促进了转基因植物的生长速率和生物量生产。与野生型植物相比,显示出已导入OsCYP714D1基因显着表达的转基因品系积累了更高的GA水平,并产生了更多且更长的木质部纤维。实时定量PCR表明,大多数同源PtCYP714基因的转录在这些转基因品系中被抑制。因此,组成型表达OsCYP714D1的转基因树中GA和生物量生产的促进可能归因于GA生物合成途径中的天然PtCYP714同系物的表达下调,尽管它们的确切功能尚待进一步阐明。

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