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Comprehensive Transcriptome Analyses Reveal Differential Gene Expression Profiles of Camellia sinensis Axillary Buds at Para- Endo- Ecodormancy and Bud Flush Stages

机译:全面的转录组分析揭示了茶花腋生芽在准内生生态休眠和芽冲洗阶段的差异基因表达谱

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摘要

Winter dormancy is an important biological feature for tea plant to survive cold winters, and it also affects the economic output of tea plant, one of the few woody plants in the world whose leaves are harvested and one of the few non-conifer evergreen species with characterized dormancies. To discover the bud dormancy regulation mechanism of tea plant in winter, we analyzed the global gene expression profiles of axillary buds at the paradormancy, endodormancy, ecodormancy, and bud flush stages by RNA-Seq analysis. In total, 16,125 differentially expressed genes (DEGs) were identified among the different measured conditions. Gene set enrichment analysis was performed on the DEGs identified from each dormancy transition. Enriched gene ontology terms, gene sets and transcription factors were mainly associated with epigenetic mechanisms, phytohormone signaling pathways, and callose-related cellular communication regulation. Furthermore, differentially expressed transcription factors as well as chromatin- and phytohormone-associated genes were identified. GI-, CAL-, SVP-, PHYB-, SFR6-, LHY-, ZTL-, PIF4/6-, ABI4-, EIN3-, ETR1-, CCA1-, PIN3-, CDK-, and CO-related gene sets were enriched. Based on sequence homology analysis, we summarized the key genes with significant expression differences in poplar and tea plant. The major molecular pathways involved in tea plant dormancy regulation are consistent with those of poplar to a certain extent; however, the gene expression patterns varied. This study provides the global transcriptome profiles of overwintering buds at different dormancy stages and is meaningful for improving the understanding of bud dormancy in tea plant.
机译:冬季休眠是茶树在寒冷的冬天中生存的重要生物学特征,它还影响茶树的经济产出。茶树是世界上少数几种有叶片采伐的木本植物之一,也是少数几种非针叶常绿乔木植物之一。特征的休眠。为了发现冬季茶树的芽休眠调节机制,我们通过RNA-Seq分析分析了腋芽在超休眠,内嗅,生态休眠和芽冲洗阶段的全球基因表达谱。在不同的测量条件下,总共鉴定出16,125个差异表达基因(DEG)。对从每个休眠转变中鉴定出的DEG进行基因集富集分析。丰富的基因本体术语,基因集和转录因子主要与表观遗传机制,植物激素信号传导途径以及call相关的细胞通讯调控有关。此外,鉴定出差异表达的转录因子以及染色质和植物激素相关基因。 GI-,CAL-,SVP-,PHYB-,SFR6-,LHY-,ZTL-,PIF4 / 6-,ABI4-,EIN3-,ETR1-,CCA1-,PIN3-,CDK-和CO相关基因集被丰富了。基于序列同源性分析,我们总结了在杨树和茶树中表达差异显着的关键基因。茶树休眠调控的主要分子途径在一定程度上与杨树的一致。然而,基因表达模式各不相同。这项研究提供了在不同休眠阶段的越冬芽的全球转录组概况,对于增进对茶树芽休眠的理解具有重要意义。

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