一个新的转录因子OsMYB73通过调控水稻胚乳储存物质积累介导的生长素生物合成信号通路来影响籽粒大小和垩白度

IF 10.1 1区 生物学 Q1 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Song Liu, Jiamin Wu, Amos Musyoki Mawia, Xiangjin Wei, Ruijie Cao, Guiai Jiao, Yawen Wu, Jian Zhang, Lihong Xie, Zhonghua Sheng, Shikai Hu, Sanfeng Li, Yusong Lv, Feifei Lu, Yujuan Chen, Sajid Fiaz, Javaria Tabassum, Zhimin Du, Fangyuan Gao, Guangjun Ren, Gaoneng Shao, Peisong Hu, Shaoqing Tang
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引用次数: 0

摘要

提高粮食产量和品质性状是永恒的育种目标。因此,发现更多与这两个重要农艺性状相关的遗传资源具有重要意义。植物MYB家族转录因子在多种生物过程中发挥着重要的调控作用。然而,关于MYB在水稻产量和品质中的遗传功能的研究很少报道。在这里,我们研究了在早期发育的果皮和胚乳中优先表达的核定位转录因子OsMYB73。我们对水稻OsMYB73进行了靶向诱变,突变体籽粒变长,具有明显的白腹白垩质胚乳外观表型。突变体在淀粉理化特性和脂质成分方面表现出不同程度的变化。转录组测序分析显示OsMYB73主要参与细胞壁发育和淀粉代谢。OsMYB73突变影响籽粒大小、淀粉脂质生物合成和生长素生物合成相关基因的表达。此外,OsMYB73的失活会引发次生代谢物的广泛变化。我们推测,水稻OsMYB73和OsNF‐YB1通过结合OsISA2、OsLTPL36和OsYUC11,协同发挥关键作用,同时作为转录激活因子调控籽粒灌浆和贮藏化合物积累,影响胚乳发育和籽粒白垩度。该研究为水稻产量和品质的遗传改良提供了重要的种质资源和理论依据。此外,我们还丰富了水稻MYB家族转录因子潜在的生物学功能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A novel transcription factor OsMYB73 affects grain size and chalkiness by regulating endosperm storage substances' accumulation‐mediated auxin biosynthesis signalling pathway in rice
SummaryEnhanced grain yield and quality traits are everlasting breeding goals. It is therefore of great significance to uncover more genetic resources associated with these two important agronomic traits. Plant MYB family transcription factors play important regulatory roles in diverse biological processes. However, studies on genetic functions of MYB in rice yield and quality are rarely to be reported. Here, we investigated a nucleus‐localized transcription factor OsMYB73 which is preferentially expressed in the early developing pericarp and endosperm. We generated targeted mutagenesis of OsMYB73 in rice, and the mutants had longer grains with obvious white‐belly chalky endosperm appearance phenotype. The mutants displayed various changes in starch physicochemical characteristics and lipid components. Transcriptome sequencing analysis showed that OsMYB73 was chiefly involved in cell wall development and starch metabolism. OsMYB73 mutation affects the expression of genes related to grain size, starch and lipid biosynthesis and auxin biosynthesis. Moreover, inactivation of OsMYB73 triggers broad changes in secondary metabolites. We speculate that rice OsMYB73 and OsNF‐YB1 play synergistic pivotal role in simultaneously as transcription activators to regulate grain filling and storage compounds accumulation to affect endosperm development and grain chalkiness through binding OsISA2, OsLTPL36 and OsYUC11. The study provides important germplasm resources and theoretical basis for genetic improvement of rice yield and quality. In addition, we enriches the potential biological functions of rice MYB family transcription factors.
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来源期刊
Plant Biotechnology Journal
Plant Biotechnology Journal 生物-生物工程与应用微生物
CiteScore
20.50
自引率
2.90%
发文量
201
审稿时长
1 months
期刊介绍: Plant Biotechnology Journal aspires to publish original research and insightful reviews of high impact, authored by prominent researchers in applied plant science. The journal places a special emphasis on molecular plant sciences and their practical applications through plant biotechnology. Our goal is to establish a platform for showcasing significant advances in the field, encompassing curiosity-driven studies with potential applications, strategic research in plant biotechnology, scientific analysis of crucial issues for the beneficial utilization of plant sciences, and assessments of the performance of plant biotechnology products in practical applications.
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