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Histone H3K27 dimethylation landscapes contribute to genome stability and genetic recombination during wheat polyploidization

Plant J. 2020-11; 
Yanfeng Liu, Jingya Yuan, Guanghong Jia, Wenxue Ye, Z Jeffrey Chen, Qingxin Song
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Custom Vector Construction … Biotechnology; 07-473), H3K4me3 (Upstate Biotechnology; 04-475), H3K9me2 (Upstate Biotechnology; 07-441) and H4K12ac (Cell Signaling; D2W60) were used for the … modified at 5'-ends with FAM (6-carboxyfluorescein) by GenScript company (Nanjing). The … Get A Quote

摘要

Bread wheat (Triticum aestivum) is an allohexaploid that was formed via two allopolyploidization events. Growing evidence suggests histone modifications are involved in the response to 'genomic shock' and environmental adaptation during polyploid formation and evolution. However, the role of histone modifications, especially histone H3 lysine-27 dimethylation (H3K27me2), in genome evolution remains elusive. Here we analyzed H3K27me2 and H3K27me3 profiles in hexaploid wheat and its tetraploid and diploid relatives. Although H3K27me3 levels were relatively stable among wheat species with different ploidy levels, H3K27me2 intensities increased concurrent with increased ploidy levels, and H3K27me2 peaks were coloca... More

关键词

H3K27me2, evolution, polyploidy, valley, wheat