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GmMYB176 和 GmbZIP5 的组合作用控制大豆(Glycine max)中的异黄酮生物合成。

A combinatorial action of GmMYB176 and GmbZIP5 controls isoflavonoid biosynthesis in soybean (Glycine max).

机构信息

London Research and Development Centre, Agriculture and Agri-Food Canada, London, ON, Canada.

Department of Biology, University of Western Ontario, London, ON, Canada.

出版信息

Commun Biol. 2021 Mar 19;4(1):356. doi: 10.1038/s42003-021-01889-6.

Abstract

GmMYB176 is an R1 MYB transcription factor that regulates multiple genes in the isoflavonoid biosynthetic pathway, thereby affecting their levels in soybean roots. While GmMYB176 is important for isoflavonoid synthesis, it is not sufficient for the function and requires additional cofactor(s). The aim of this study was to identify the GmMYB176 interactome for the regulation of isoflavonoid biosynthesis in soybean. Here, we demonstrate that a bZIP transcription factor GmbZIP5 co-immunoprecipitates with GmMYB176 and shows protein-protein interaction in planta. RNAi silencing of GmbZIP5 reduced the isoflavonoid level in soybean hairy roots. Furthermore, co-overexpression of GmMYB176 and GmbZIP5 enhanced the level of multiple isoflavonoid phytoallexins including glyceollin, isowighteone and a unique O-methylhydroxy isoflavone in soybean hairy roots. These findings could be utilized to develop biotechnological strategies to manipulate the metabolite levels either to enhance plant defense mechanisms or for human health benefits in soybean or other economically important crops.

摘要

GmMYB176 是 R1 MYB 转录因子,可调节异黄酮生物合成途径中的多个基因,从而影响大豆根中的这些基因的水平。虽然 GmMYB176 对异黄酮合成很重要,但它本身并不足以发挥功能,还需要额外的辅助因子。本研究旨在鉴定 GmMYB176 的互作蛋白,以调控大豆异黄酮的生物合成。在这里,我们证明 bZIP 转录因子 GmbZIP5 与 GmMYB176 共免疫沉淀,并在体内显示蛋白-蛋白相互作用。GmbZIP5 的 RNAi 沉默降低了大豆毛状根中的异黄酮水平。此外,GmMYB176 和 GmbZIP5 的共过表达增强了多种异黄酮植物抗毒素的水平,包括大豆毛状根中的glyceollin、isowighteone 和一种独特的 O-甲基羟基异黄酮。这些发现可用于开发生物技术策略来操纵代谢物水平,以增强植物防御机制或为大豆或其他经济上重要作物中的人类健康带来益处。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c4a5/7979867/331d4bb94b49/42003_2021_1889_Fig1_HTML.jpg

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