NF-YC12 is a key multi-functional regulator of accumulation of seed storage substances in rice

胚乳 糊粉 转录因子 淀粉合成酶 生物 淀粉 基因 贮藏蛋白 生物化学 细胞生物学 转录调控 突变体 发起人 基因表达 直链淀粉 支链淀粉
作者
Yufei Xiong,Ye Ren,Wang Li,Fengsheng Wu,Wenjie Yang,Xiaolong Huang,Jialing Yao
出处
期刊:Journal of Experimental Botany [Oxford University Press]
卷期号:70 (15): 3765-3780 被引量:91
标识
DOI:10.1093/jxb/erz168
摘要

Starch and storage proteins, the primary storage substances of cereal endosperm, are a major source of food for humans. However, the transcriptional regulatory networks of the synthesis and accumulation of storage substances remain largely unknown. Here, we identified a rice endosperm-specific gene, NF-YC12, that encodes a putative nuclear factor-Y transcription factor subunit C. NF-YC12 is expressed in the aleurone layer and starchy endosperm during grain development. Knockout of NF-YC12 significantly decreased grain weight as well as altering starch and protein accumulation and starch granule formation. RNA-sequencing analysis revealed that in the nf-yc12 mutant genes related to starch biosynthesis and the metabolism of energy reserves were enriched in the down-regulated category. In addition, starch and protein contents in seeds differed between NF-YC12-overexpression lines and the wild-type. NF-YC12 was found to interact with NF-YB1. ChIP-qPCR and yeast one-hybrid assays showed that NF-YC12 regulated the rice sucrose transporter OsSUT1 in coordination with NF-YB1 in the aleurone layer. In addition, NF-YC12 was directly bound to the promoters of FLO6 (FLOURY ENDOSPERM6) and OsGS1;3 (glutamine synthetase1) in developing endosperm. This study demonstrates a transcriptional regulatory network involving NF-YC12, which coordinates multiple pathways to regulate endosperm development and the accumulation of storage substances in rice seeds.

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