Transcription factor OsSGL is a regulator of starch synthesis and grain quality in rice

胚乳 淀粉 直链淀粉 淀粉合成酶 染色质免疫沉淀 抑制因子 生物化学 蔗糖合成酶 生物 转录因子 粮食品质 转录调控 调节器 基因 细胞生物学 基因表达 发起人 转化酶 支链淀粉 农学
作者
Zhenming Liu,Shun Jiang,Lingli Jiang,Wanjing Li,Yuqin Tang,Wei He,Manling Wang,Junjie Xing,Yanchun Cui,Qinlu Lin,Feng Yu,Long Wang
出处
期刊:Journal of Experimental Botany [Oxford University Press]
卷期号:73 (11): 3417-3430 被引量:15
标识
DOI:10.1093/jxb/erac068
摘要

Starch biosynthesis during rice endosperm development is important for grain quality, as it influences grain size and physico-chemical properties, which together determine rice eating quality. Cereal starch biosynthetic pathways have been comprehensively investigated; however, their regulation, especially by transcriptional repressors remains largely unknown. Here, we identified a DUF1645 domain-containing protein, STRESS_tolerance and GRAIN_LENGTH (OsSGL), that participates in regulating rice starch biosynthesis. Overexpression of OsSGL reduced total starch and amylose content in the endosperm compared with the wild type. Chromatin immunoprecipitation sequencing and RNA-seq analyses indicated that OsSGL targets the transcriptional activity of several starch and sucrose metabolism genes. In addition, ChIP-qPCR, yeast one-hybrid, EMSA and dual-luciferase assays demonstrated that OsSGL directly inhibits the expression of SUCROSE SYNTHASE 1 (OsSUS1) in the endosperm. Furthermore, OsSUS1 interacts with OsSGL to release its transcriptional repression ability. Unexpectedly, our results also show that knock down and mutation of OsSGL disrupts the starch biosynthetic pathway, causing lower starch and amylose content. Therefore, our findings demonstrate that accurate control of OsSGL homeostasis is essential for starch synthesis and grain quality. In addition, we revealed the molecular mechanism of OsSGL in regulating starch biosynthesis-related genes, which are required for grain quality.
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