CHH methylation of genes associated with fatty acid and jasmonate biosynthesis contributes to cold tolerance in autotetraploids of Poncirus trifoliata

生物 基因 表观遗传学 DNA甲基化 甲基化 转录组 茉莉酸甲酯 遗传学 基因表达 茉莉酸 三叶橙 拟南芥 植物 砧木 突变体
作者
Yue Wang,Lanlan Zuo,Tong‐Lu Wei,Yu Zhang,Yang Zhang,Ruhong Ming,Dahro Bachar,Wei Xiao,Madiha Khan,Chuanwu Chen,Qijun Fan,Chunlong Li,Jihong Liu
出处
期刊:Journal of Integrative Plant Biology [Wiley]
卷期号:64 (12): 2327-2343 被引量:33
标识
DOI:10.1111/jipb.13379
摘要

Polyploids have elevated stress tolerance, but the underlying mechanisms remain largely elusive. In this study, we showed that naturally occurring tetraploid plants of trifoliate orange (Poncirus trifoliata (L.) Raf.) exhibited enhanced cold tolerance relative to their diploid progenitors. Transcriptome analysis revealed that whole-genome duplication was associated with higher expression levels of a range of well-characterized cold stress-responsive genes. Global DNA methylation profiling demonstrated that the tetraploids underwent more extensive DNA demethylation in comparison with the diploids under cold stress. CHH methylation in the promoters was associated with up-regulation of related genes, whereas CG, CHG, and CHH methylation in the 3'-regions was relevant to gene down-regulation. Of note, genes involved in unsaturated fatty acids (UFAs) and jasmonate (JA) biosynthesis in the tetraploids displayed different CHH methylation in the gene flanking regions and were prominently up-regulated, consistent with greater accumulation of UFAs and JA when exposed to the cold stress. Collectively, our findings explored the difference in cold stress response between diploids and tetraploids at both transcriptional and epigenetic levels, and gained new insight into the molecular mechanisms underlying enhanced cold tolerance of the tetraploid. These results contribute to uncovering a novel regulatory role of DNA methylation in better cold tolerance of polyploids.
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