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首页> 外文期刊>International Journal of Genomics >Transcriptome and Expression Profiling Analysis of Recalcitrant Tea (Camellia sinensis L.) Seeds Sensitive to Dehydration
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Transcriptome and Expression Profiling Analysis of Recalcitrant Tea (Camellia sinensis L.) Seeds Sensitive to Dehydration

机译:转录组和表达分析荷荷兰氏茶(Cahellia Sinensis L.)种子对脱水敏感

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摘要

The tea plant (Camellia sinensis (L.) O. Kuntze) is an economically important woody perennial nonalcoholic health beverage crop. Tea seeds are categorized as recalcitrant and are sensitive to dehydration treatment. However, the molecular basis of thisphenomenon has not been investigated. Thus, we analyzed the genome-wide expression profiles of three dehydration stages using RNA-Seq and digital gene expression (DGE) technologies. We performed de novo assembly and obtained a total of 91,925 nonredundant unigenes, of which 58,472 were extensively annotated. By a hierarchical clustering of differentially expressed genes (DEGs), we found that 8929 DEGs were downregulated and 5875 DEGs were upregulated during dehydration treatment. A series of genes related to ABA biosynthesis and signal transduction, transcription factor, antioxidant enzyme, LEA protein, and proline metabolism that have been reported to function in dehydration process were found to be downregulated. Additionally, the expression profiles of 12 selected genes related to tea seed dehydration treatment were confirmed by qRT-PCR analysis. To our knowledge, this is the first genome-wide study elucidating the possible molecular mechanisms of sensitivity of recalcitrant tea seeds to dehydration. The results obtained in this study contribute to the preservation of tea seeds as genetic resources and can also be used to explore the mechanism of dehydration sensitivity of other recalcitrant seeds.
机译:茶厂(山茶花Sinensis(L.)O. Kuntze)是一家经济上重要的木质常年非酒精健康饮料作物。茶种子被分类为醋酸纯净,对脱水处理敏感。然而,尚未研究该单体细胞的分子基础。因此,我们使用RNA-SEQ和数字基因表达(DGE)技术分析了三个脱水阶段的基因组表达谱。我们执行了De Novo组件,并获得了总共91,925个非冗余的unigenes,其中58,472个广泛注释。通过差异表达基因(DEGS)的分层聚类,我们发现在脱水处理期间下调8929℃,并且在脱水处理期间上调5875次。发现,一系列与ABA生物合成和信号转导,转录因子,抗氧化酶,LEA蛋白以及据称在脱水过程中起作用的脯氨酸代谢相关的基因。另外,通过QRT-PCR分析证实了与茶种子脱水处理有关的12种所选基因的表达谱。据我们所知,这是第一个基因组研究,阐明了醋酸茶种子脱水的敏感性的可能分子机制。本研究中获得的结果有助于保存茶种子作为遗传资源,也可用于探索其他醋酸种子的脱水敏感性的机制。

著录项

  • 来源
    《International Journal of Genomics》 |2018年第1期|共11页
  • 作者单位

    State Key Laboratory of Tea Plant Biology and Utilization Anhui Agricultural University Hefei Anhui 230036 China;

    State Key Laboratory of Tea Plant Biology and Utilization Anhui Agricultural University Hefei Anhui 230036 China;

    Pruit and Tea Research Institute Hubei Academy of Agricultural Sciences Wuhan Hubei 430064 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子生物学;
  • 关键词

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