College of Horticulture , Northwest A&F University , Yangling 712100 , Shaanxi , China.
Innovation Experimental College , Northwest A&F University , Yangling 712100 , Shaanxi , China.
J Agric Food Chem. 2019 May 8;67(18):5250-5264. doi: 10.1021/acs.jafc.9b00871. Epub 2019 Apr 30.
Cytosine DNA methylation plays an important role in plants: it can mediate gene expression to affect plant growth and development. However, little is known about the potential involvement of cytosine DNA methylation in apple trees as well as in response to alternate bearing. Here, we performed whole-genome bisulfate sequencing to investigate genomic CG, CHG, and CHH methylation patterns, together with their global mRNA accumulation and small RNA expression in "Fuji" apple trees. Results showed that "Fuji" apple trees have a higher CHH methylation than Arabidopsis. Moreover, genomic methylation analysis revealed that CG and CHG methylation were robustly maintained at the early stage of flower induction. Additionally, differentially methylated regions (DMRs), including hypermethylated and hypomethylated DMRs, were also characterized in alternate bearing (AB) apple trees. Intriguingly, the DMRs were enriched in hormones, redox state, and starch and sucrose metabolism, which affected flowering. Further global gene expression evaluation based on methylome analysis revealed a negative correlation between gene body methylation and gene expression. Subsequent small RNA analyses showed that 24-nucleotide small interfering RNAs were activated and maintained in non-CG methylated apple trees. Our whole-genome DNA methylation analysis and RNA and small RNA expression profile construction provide valuable information for future studies.
胞嘧啶 DNA 甲基化在植物中起着重要作用:它可以介导基因表达,影响植物的生长和发育。然而,关于胞嘧啶 DNA 甲基化在苹果树上的潜在作用以及对交替结实的反应知之甚少。在这里,我们进行了全基因组亚硫酸氢盐测序,以研究 CG、CHG 和 CHH 甲基化模式,以及它们在“富士”苹果树上的全局 mRNA 积累和小 RNA 表达。结果表明,“富士”苹果树的 CHH 甲基化程度高于拟南芥。此外,基因组甲基化分析表明,CG 和 CHG 甲基化在花诱导的早期阶段得到了强有力的维持。此外,在交替结实(AB)苹果树上也对差异甲基化区域(DMR)进行了表征,包括超甲基化和低甲基化 DMR。有趣的是,DMRs 在激素、氧化还原状态以及淀粉和蔗糖代谢中富集,影响开花。进一步基于甲基组分析的全局基因表达评估表明,基因体甲基化与基因表达呈负相关。随后的小 RNA 分析表明,24 核苷酸小干扰 RNA 在非 CG 甲基化的苹果树上被激活并维持。我们的全基因组 DNA 甲基化分析和 RNA 和小 RNA 表达谱构建为未来的研究提供了有价值的信息。