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Integrative Analysis of Transcriptomic and Methylomic Data in Photoperiod-Dependent Regulation of Cucumber Sex Expression

机译:黄瓜性别表达的光周期依赖性调控中的转录组和甲基化数据的综合分析

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摘要

The cucumber (Cucumis sativus) is characterized by its diversity and seasonal plasticity in sexual type. A long day length condition significantly decreased the cucumber female flower ratio by 17.7–52.9%, and the effect of photoperiod treatment is more significant under low temperature than under high temperature. Transcriptome analysis indicates that the photoperiod treatment preferentially significantly influenced flower development processes, particularly MADS-box genes in shoot apices. The long-day treatment resulted in predominantly transposable element (TE)- and gene-associated CHH-types of DNA methylation changes. Nevertheless, there was significant enrichment of CG- and CHG-types of DNA methylation changes nearing transcription start sites (TSSs)/transcription end sites (TESs) and gene bodies, respectively. Predominantly negative association between differentially methylated regions (DMRs) and differentially expressed genes (DEGs) were observed which implied epiregulation of DEGs. Two MADS-box genes that were significantly downregulated by long photoperiod showed significant hypermethylation in promoter regions that is essentially TE-rich. This study indicates MADS-box genes which are partially regulated by promoter methylation state may mediate photoperiod-dependent regulation of cucumber sex expression.
机译:黄瓜(Cucumis sativus)的特征在于其性类型的多样性和季节性可塑性。一天一整天的条件显着降低了黄瓜雌花率,降低了17.7-52.9%,并且在低温下光周期处理的效果比在高温下更为显着。转录组分析表明,光周期处理优先显着影响花的发育过程,尤其是芽尖中的MADS-box基因。长时间的治疗导致DNA甲基化变化的主要是转座因子(TE)和与基因相关的CHH类型。尽管如此,在靠近转录起始位点(TSSs)/转录终止位点(TESs)和基因体的附近,DNA甲基化变化的CG型和CHG型明显富集。观察到差异甲基化区域(DMRs)和差异表达基因(DEGs)之间主要负相关,这暗示DEGs的上调。长时间光周期显着下调的两个MADS-box基因在基本上富含TE的启动子区域显示出明显的甲基化过度。这项研究表明,部分受启动子甲基化状态调控的MADS-box基因可能介导了光周期依赖性的黄瓜性别表达调控。

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