The MADS-box transcription factor GmFULc promotes GmZTL4 gene transcription to modulate maturity in soybean

IF 9.3 1区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Journal of Integrative Plant Biology Pub Date : 2024-06-13 DOI:10.1111/jipb.13682
Jingzhe Sun, Yucheng Liu, Yuhong Zheng, Yongguo Xue, Yuhuan Fan, Xiaofei Ma, Yujia Ji, Gaoyuan Liu, Xiaoming Zhang, Yang Li, Shuming Wang, Zhixi Tian, Lin Zhao
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Abstract

Flowering time and maturity are crucial agronomic traits that affect the regional adaptability of soybean plants. The development of soybean cultivars with early maturity adapted to longer days and colder climates of high latitudes is very important for ensuring normal ripening before frost begins. FUL belongs to the MADS-box transcription factor family and has several duplicated members in soybeans. In this study, we observed that overexpression of GmFULc in the Dongnong 50 cultivar promoted soybean maturity, while GmFULc knockout mutants exhibited late maturity. Chromatin immunoprecipitation sequencing (ChIP-seq) and RNA sequencing (RNA-seq) revealed that GmFULc could bind to the CArG, bHLH and homeobox motifs. Further investigation revealed that GmFULc could directly bind to the CArG motif in the promoters of the GmZTL3 and GmZTL4 genes. Overexpression of GmZTL4 promoted soybean maturity, whereas the ztl4 mutants exhibited delayed maturity. Moreover, we found that the cis element box 4 motif of the GmZTL4 promoter, a motif of light response elements, played an important role in controlling the growth period. Deletion of this motif shortened the growth period by increasing the expression levels of GmZTL4. Functional investigations revealed that short-day treatment promoted the binding of GmFULc to the promoter of GmZTL4 and inhibited the expression of E1 and E1Lb, ultimately resulting in the promotion of flowering and early maturation. Taken together, these findings suggest a novel photoperiod regulatory pathway in which GmFULc directly activates GmZTL4 to promote earlier maturity in soybean.

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MADS-box 转录因子 GmFULc 促进 GmZTL4 基因转录,从而调节大豆的成熟度。
开花时间和成熟度是影响大豆植物地区适应性的关键农艺性状。培育适应高纬度地区较长日照和寒冷气候的早熟大豆品种,对于确保大豆在霜冻来临前正常成熟非常重要。FUL 属于 MADS-box 转录因子家族,在大豆中有多个重复成员。在本研究中,我们观察到在东农 50 栽培品种中过表达 GmFULc 能促进大豆成熟,而 GmFULc 基因敲除突变体则表现为晚熟。染色质免疫共沉淀测序(ChIP-seq)和 RNA 测序(RNA-seq)发现,GmFULc 可与 CArG、bHLH 和 homeobox 基序结合。进一步研究发现,GmFULc可直接与GmZTL3和GmZTL4基因启动子中的CArG基序结合。GmZTL4的过表达促进了大豆的成熟,而ztl4突变体则表现出延迟成熟。此外,我们还发现 GmZTL4 启动子的顺式元件盒 4(光反应元件的一个基序)在控制生长期方面起着重要作用。删除该基序可提高 GmZTL4 的表达水平,从而缩短生长期。功能研究发现,短日照处理促进了 GmFULc 与 GmZTL4 启动子的结合,抑制了 E1 和 E1Lb 的表达,最终导致促进开花和早熟。综上所述,这些研究结果表明了一种新的光周期调控途径,在该途径中,GmFULc 直接激活 GmZTL4,从而促进大豆的提早成熟。
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来源期刊
Journal of Integrative Plant Biology
Journal of Integrative Plant Biology 生物-生化与分子生物学
CiteScore
18.00
自引率
5.30%
发文量
220
审稿时长
3 months
期刊介绍: Journal of Integrative Plant Biology is a leading academic journal reporting on the latest discoveries in plant biology.Enjoy the latest news and developments in the field, understand new and improved methods and research tools, and explore basic biological questions through reproducible experimental design, using genetic, biochemical, cell and molecular biological methods, and statistical analyses.
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