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一个转录调控模块控制大豆中的脂质积累。

A transcriptional regulatory module controls lipid accumulation in soybean.

机构信息

State Key Lab of Plant Genomics, Institute of Genetics and Developmental Biology, INASEED, Chinese Academy of Sciences, Beijing, 100101, China.

College of Advanced Agricultural Sciences, University of Chinese Academy of Sciences, Beijing, 100049, China.

出版信息

New Phytol. 2021 Jul;231(2):661-678. doi: 10.1111/nph.17401. Epub 2021 May 25.

Abstract

Soybean (Glycine max) is one of the most important oilseed crops. However, the regulatory mechanism that governs the process of oil accumulation in soybean remains poorly understood. In this study, GmZF392, a tandem CCCH zinc finger (TZF) protein which was identified in our previous RNA-seq analysis of seed-preferred transcription factors, was found to function as a positive regulator of lipid production. GmZF392 promotes seed oil accumulation in both transgenic Arabidopsis and stable transgenic soybean plants by binding to a bipartite cis-element, containing TG- and TA-rich sequences, in promoter regions, activating the expression of genes in the lipid biosynthesis pathway. GmZF392 physically interacts with GmZF351, our previously identified transcriptional regulator of lipid biosynthesis, to synergistically promote downstream gene expression. Both GmZF392 and GmZF351 are further upregulated by GmNFYA, another transcription factor involved in lipid biosynthesis, directly (in the former case) and indirectly (in the latter case). Promoter sequence diversity analysis showed that the GmZF392 promoter may have been selected at the origin of the Glycine genus and further mildly selected during domestication from wild soybeans to cultivated soybeans. Our study reveals a regulatory module containing three transcription factors in the lipid biosynthesis pathway, and manipulation of the module may improve oil production in soybean and other oilseed crops.

摘要

大豆(Glycine max)是最重要的油料作物之一。然而,控制大豆油脂积累过程的调控机制仍知之甚少。在本研究中,我们在之前对种子偏好转录因子的 RNA-seq 分析中鉴定出一个串联 CCCH 锌指(TZF)蛋白 GmZF392,它被发现作为脂质生产的正调控因子。GmZF392 通过结合启动子区域中的二聚体顺式元件(包含 TG 和 TA 丰富序列),激活脂质生物合成途径中基因的表达,从而促进转基因拟南芥和稳定转化的大豆植物中的种子油积累。GmZF392 与我们之前鉴定的脂质生物合成转录调节剂 GmZF351 相互作用,协同促进下游基因表达。GmNFYA,另一个参与脂质生物合成的转录因子,直接(在前一种情况下)和间接(在后一种情况下)进一步上调 GmZF392 和 GmZF351。启动子序列多样性分析表明,GmZF392 启动子可能在大豆属起源时被选择,并在从野生大豆到栽培大豆的驯化过程中进一步受到温和选择。我们的研究揭示了脂质生物合成途径中的一个包含三个转录因子的调控模块,对该模块的操纵可能会提高大豆和其他油料作物的产油量。

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