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转录组分析揭示了海洋米草(Zostera marina L.)对 NaCl 胁迫的分子适应机制

Transcriptomic analysis reveals the molecular adaptation to NaCl stress in Zostera marina L.

机构信息

Marine College, Shandong University, Weihai 264200, China.

Marine College, Shandong University, Weihai 264200, China.

出版信息

Plant Physiol Biochem. 2018 Sep;130:61-68. doi: 10.1016/j.plaphy.2018.06.022. Epub 2018 Jun 19.

Abstract

The seagrass Zostera marina L. shows optimal growth in marine water and reduced growth under low salinity conditions. However, little is known about the molecular mechanisms underlying its adaptation to high salinity in Z. marina. In this study, transcriptomic analyses were performed using RNA-seq of the following two groups with different NaCl content: the CK group (seagrasses grown in the absence of NaCl) and the NaCl group (seagrasses grown in the presence of 400 mM NaCl for 6 h). Approximately 316 million high-quality reads were generated, and 87.9% of the data were mapped to the reference genome. Moreover, differentially expressed genes between the CK and NaCl groups were identified. According to a functional analysis, the up-regulated genes after the NaCl treatment were significantly enriched in nitrogen metabolism, calcium signalling and DNA replication while the down-regulated genes were significantly enriched in photosynthesis. A comparative transcriptomic analysis detected many differentially expressed genes and pathways required for adaptation to NaCl stress, providing a foundation for future studies investigating the molecular mechanisms of salt adaptation in Z. marina. We discuss how molecular changes in these processes may have contributed to the NaCl adaptation.

摘要

海草 Zostera marina L. 在海水中生长最佳,在低盐条件下生长减缓。然而,人们对其适应高盐环境的分子机制知之甚少。在这项研究中,我们通过对以下两组具有不同 NaCl 含量的 RNA-seq 进行转录组分析:CK 组(未添加 NaCl 的海草生长组)和 NaCl 组(添加 400mM NaCl 生长 6 小时的海草生长组)。大约生成了 3.16 亿条高质量的读段,其中 87.9%的数据被映射到参考基因组上。此外,我们还鉴定了 CK 组和 NaCl 组之间的差异表达基因。根据功能分析,NaCl 处理后上调的基因在氮代谢、钙信号和 DNA 复制中显著富集,而下调的基因在光合作用中显著富集。比较转录组分析检测到了许多适应 NaCl 胁迫所需的差异表达基因和途径,为未来研究 Z. marina 盐适应的分子机制提供了基础。我们讨论了这些过程中的分子变化如何有助于 NaCl 的适应。

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