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整合RNA测序和小RNA测序分析鉴定茶树中响应低温和冻害的关键分子及途径

Integrated RNA-Seq and sRNA-Seq Analysis Identifies Chilling and Freezing Responsive Key Molecular Players and Pathways in Tea Plant (Camellia sinensis).

作者信息

Zheng Chao, Zhao Lei, Wang Yu, Shen Jiazhi, Zhang Yinfei, Jia Sisi, Li Yusheng, Ding Zhaotang

机构信息

Tea Research Institute, Qingdao Agricultural University, Qingdao, Shandong, China; Key Laboratory of Genetic Improvement and Breeding for Horticultural Plants, Qingdao, Shandong, China.

Fruit and Tea Technology Extension Station, Jinan, Shandong, China.

出版信息

PLoS One. 2015 Apr 22;10(4):e0125031. doi: 10.1371/journal.pone.0125031. eCollection 2015.

Abstract

Tea [Camellia sinensis (L) O. Kuntze, Theaceae] is one of the most popular non-alcoholic beverages worldwide. Cold stress is one of the most severe abiotic stresses that limit tea plants' growth, survival and geographical distribution. However, the genetic regulatory network and signaling pathways involved in cold stress responses in tea plants remain unearthed. Using RNA-Seq, DGE and sRNA-Seq technologies, we performed an integrative analysis of miRNA and mRNA expression profiling and their regulatory network of tea plants under chilling (4℃) and freezing (-5℃) stress. Differentially expressed (DE) miRNA and mRNA profiles were obtained based on fold change analysis, miRNAs and target mRNAs were found to show both coherent and incoherent relationships in the regulatory network. Furthermore, we compared several key pathways (e.g., 'Photosynthesis'), GO terms (e.g., 'response to karrikin') and transcriptional factors (TFs, e.g., DREB1b/CBF1) which were identified as involved in the early chilling and/or freezing response of tea plants. Intriguingly, we found that karrikins, a new group of plant growth regulators, and β-primeverosidase (BPR), a key enzyme functionally relevant with the formation of tea aroma might play an important role in both early chilling and freezing response of tea plants. Quantitative reverse transcriptase-polymerase chain reaction (qRT-PCR) analysis further confirmed the results from RNA-Seq and sRNA-Seq analysis. This is the first study to simultaneously profile the expression patterns of both miRNAs and mRNAs on a genome-wide scale to elucidate the molecular mechanisms of early responses of tea plants to cold stress. In addition to gaining a deeper insight into the cold resistant characteristics of tea plants, we provide a good case study to analyse mRNA/miRNA expression and profiling of non-model plant species using next-generation sequencing technology.

摘要

茶[茶树(Camellia sinensis (L) O. Kuntze,山茶科)]是全球最受欢迎的非酒精饮料之一。低温胁迫是限制茶树生长、存活及地理分布的最严重非生物胁迫之一。然而,茶树中参与低温胁迫响应的遗传调控网络和信号通路仍未被发掘。利用RNA测序、数字基因表达谱和小RNA测序技术,我们对茶树在低温(4℃)和冷冻(-5℃)胁迫下的miRNA和mRNA表达谱及其调控网络进行了综合分析。基于倍数变化分析获得了差异表达(DE)的miRNA和mRNA谱,发现miRNA和靶mRNA在调控网络中呈现出一致和不一致的关系。此外,我们比较了几个关键途径(如“光合作用”)、基因本体论术语(如“对卡里金的响应”)和转录因子(如DREB1b/CBF1),这些被确定参与茶树的早期低温和/或冷冻响应。有趣的是,我们发现卡里金(一组新的植物生长调节剂)和β-樱草糖苷酶(BPR,一种与茶叶香气形成功能相关的关键酶)可能在茶树的早期低温和冷冻响应中发挥重要作用。定量逆转录聚合酶链反应(qRT-PCR)分析进一步证实了RNA测序和小RNA测序分析的结果。这是第一项在全基因组范围内同时分析miRNA和mRNA表达模式以阐明茶树对低温胁迫早期响应分子机制的研究。除了更深入地了解茶树的抗寒特性外,我们还提供了一个很好的案例研究,以利用下一代测序技术分析非模式植物物种的mRNA/miRNA表达和谱图。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a495/4406609/98bb3c45e0b2/pone.0125031.g001.jpg

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