DNA甲基化
生物
基因
甲基化
拟南芥
选择性拼接
遗传学
调节器
表观遗传学
基因表达
RNA剪接
差异甲基化区
异位表达
基因表达调控
细胞生物学
信使核糖核酸
核糖核酸
突变体
作者
Hanhan Xie,Wenya Yin,Yedan Zheng,Yanshan Zhang,Hongming Qin,Zhiqiang Huang,Minglei Zhao,Jianguo Li
摘要
Abstract The gene regulatory networks that govern seed development are complex, yet very little is known about the genes and processes that are controlled by DNA methylation. Here, we performed single-base resolution DNA methylome analysis and found that CHH methylation increased significantly throughout seed development in litchi. Based on the association analysis of differentially methylated regions and weighted gene co-expression network analysis (WGCNA), 46 genes were identified as essential DNA methylation-regulated candidate genes involved in litchi seed development, including LcSR45, a homolog of the serine/arginine-rich (SR) splicing regulator SR45. LcSR45 is predominately expressed in the funicle, embryo, and seed integument, and displayed increased CHH methylation in the promoter during seed development. Notably, silencing of LcSR45 in a seed-aborted litchi cultivar significantly improved normal seed development, whereas the ectopic expression of LcSR45 in Arabidopsis caused seed abortion. Furthermore, LcSR45-dependent alternative splicing events were found to regulate genes involved in seed development. Together, our findings demonstrate that LcSR45 is hypermethylated, and plays a detrimental role in litchi seed development, indicating a global increase in DNA methylation at this stage.
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