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转录组分析幼龄牙鲆鳃组织对低盐胁迫的响应。

Transcriptome profiling of the low-salinity stress responses in the gills of the juvenile Pseudopleuronectes yokohamae.

机构信息

Key Laboratory of Mariculture & Stock Enhancement in North China's Sea, Ministry of Agriculture, Dalian Ocean University, Dalian, 116023, China.

Guangdong Provincial Key Laboratory of Fishery Ecology and Environment, South China Sea Fisheries Research Institute, Chinese Academy of Fisheries Sciences, Guangzhou 510300, China.

出版信息

Comp Biochem Physiol Part D Genomics Proteomics. 2019 Dec;32:100612. doi: 10.1016/j.cbd.2019.100612. Epub 2019 Jul 26.

Abstract

Salinity is an important environmental factor that affects the life cycle of fish, including their growth, development and reproduction. The marbled flounder, Pseudopleuronectes yokohamae, is an important economic resource and serves as a good model to investigate osmoregulation, as it can adapt to a wide range of salinity levels. However, the lack of genomic resources for this species has hampered the understanding of the mechanisms underlying its salinity tolerance. In this study, RNA-Seq analysis was conducted to identify genes related to salinity adaptation and osmotic regulation in the gill tissue of marbled flounder exposed to different concentrations of environmental salinity (6 and 30 ppt). After de novo assembly, 19,265 genes were annotated by the Nr database. A comparison of expression between the two salinity groups revealed 673 differentially expressed genes, of which 180 were upregulated and 493 were downregulated in the low salinity group relative to the high salinity group. The related molecular biological processes were explored from several important perspectives, and potential functions were determined by enrichment analyses, including those of metabolites in ion transportation, energy metabolism and protein synthesis, and immune responses. This study is the first transcriptomic study conducted on marbled flounder, and it revealed many novel sequences for further biological analyses. In addition, the candidate genes identified in the gene expression analysis provided insights into responses to salinity change and molecular mechanisms underlying osmoregulation in the gills of marbled flounder.

摘要

盐度是影响鱼类生命周期的重要环境因素,包括其生长、发育和繁殖。牙鲆(Pseudopleuronectes yokohamae)是一种重要的经济资源,也是研究渗透调节的良好模型,因为它可以适应广泛的盐度水平。然而,该物种缺乏基因组资源,这阻碍了对其耐盐机制的理解。在这项研究中,对暴露于不同环境盐度(6 和 30 ppt)下的牙鲆鳃组织进行了 RNA-Seq 分析,以鉴定与盐度适应和渗透调节相关的基因。通过从头组装,Nr 数据库注释了 19,265 个基因。对两个盐度组之间的表达进行比较,发现 673 个差异表达基因,其中低盐组相对于高盐组有 180 个上调,493 个下调。通过富集分析从几个重要角度探讨了相关的分子生物学过程,并确定了潜在的功能,包括离子转运、能量代谢和蛋白质合成以及免疫反应中的代谢物。这是首次对牙鲆进行的转录组研究,揭示了许多新的序列,可用于进一步的生物学分析。此外,基因表达分析中鉴定的候选基因为牙鲆鳃中对盐度变化的反应和渗透调节的分子机制提供了新的见解。

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