生物
H3K4me3
分生组织
重编程
遗传学
表观遗传学
基因
多组蛋白
脱甲基酶
基因敲除
细胞生物学
表观基因组
基因表达
DNA甲基化
发起人
抑制因子
作者
Xiaoyun Liu,Shaoli Zhou,Wentao Wang,Yiran Ye,Yu Zhao,Qiutao Xu,Chao Zhou,Feng Tan,Saifeng Cheng,Dao‐Xiu Zhou
出处
期刊:The Plant Cell
[Oxford University Press]
日期:2015-05-01
卷期号:27 (5): 1428-1444
被引量:85
摘要
Rice inflorescence meristem (IM) activity is essential for panicle development and grain production. How chromatin and epigenetic mechanisms regulate IM activity remains unclear. Genome-wide analysis revealed that in addition to genes involved in the vegetative to reproductive transition, many metabolic and protein synthetic genes were activated in IM compared with shoot apical meristem and that a change in the H3K27me3/H3K4me3 ratio was an important factor for the differential expression of many genes. Thousands of genes gained or lost H3K27me3 in IM, and downregulation of the H3K27 methyltransferase gene SET DOMAIN GROUP 711 (SDG711) or mutation of the H3K4 demethylase gene JMJ703 eliminated the increase of H3K27me3 in many genes. SDG711-mediated H3K27me3 repressed several important genes involved in IM activity and many genes that are silent in the IM but activated during floral organogenesis or other developmental stages. SDG711 overexpression augmented IM activity and increased panicle size; suppression of SDG711 by RNA interference had the opposite effect. Double knockdown/knockout of SDG711 and JMJ703 further reduced panicle size. These results suggest that SDG711 and JMJ703 have agonistic functions in reprogramming the H3K27me3/H3K4me3 ratio and modulating gene expression in the IM.
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