Integrated miRNA and mRNA analysis in gills of spotted sea bass reveals novel insights into the molecular regulatory mechanism of salinity acclimation

IF 3.9 1区 农林科学 Q1 FISHERIES
Lingyu Wang , Xiaoyan Zhang , Haishen Wen , Xin Qi , Donglei Sun , Xueqi Li , Jinku Li , Yuan Tian , Kaiqiang Zhang , Yun Li
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引用次数: 1

Abstract

As a prominent abiotic factor, salinity affects fish growth, development, reproduction, and physiological activities severely. In the present study, we performed histological observations and miRNA-mRNA integrated transcriptomic analysis in the gill of spotted sea bass (Lateolabrax maculatus) under different salinity conditions. Histological investigation showed that the morphological indices (filament thickness, lamella thickness, lamella height, distance between lamella, lamella basal length) and the number of red blood and mucous cells were significantly different between FW and SW gills. A total of 1022 differentially expressed genes (DEGs) and 42 differentially expressed miRNAs (DEmiRs) have been identified among different salinity groups, generating 224 predicted miRNA-mRNA pairs that potentially associated with salinity acclimation. Protein-Protein Interaction networks revealed that 5 (fbp1b, fbp2, gapdh, prkag2a and prkag3b) and 7 (zbtb16a, e2f5, brd4, brd3a, mef2ca, ncor1 and ezh2) hub genes may play important functions during FW and SW adaption, respectively. Notably, functional enrichment analysis suggested that DEGs and DEmiRs involved in glucose metabolism, signal transduction pathways, as well as hematopoiesis and vascular function maintaining associated molecules may be essential for osmoregulation in gills. Our findings will not only lay the basis for understanding the molecular mechanisms of salinity acclimation in euryhaline fishes, but also provide a list of molecular markers that can be used for improving fish salinity tolerance capabilities, and artificial breeding of salinity-tolerance strains for stenohaline species.

斑点鲈鱼鳃中miRNA和mRNA的综合分析揭示了对盐度驯化分子调控机制的新见解
盐度作为一种重要的非生物因素,严重影响鱼类的生长、发育、繁殖和生理活动。在本研究中,我们对斑点鲈鱼(Lateolabrax maculatus)在不同盐度条件下的鳃进行了组织学观察和miRNA mRNA整合转录组分析。组织学研究表明,FW鳃和SW鳃的形态指标(细丝厚度、片层厚度、片高度、片层间距、片层基底长度)以及红细胞和粘液细胞数量存在显著差异。在不同的盐度组中,共鉴定出1022个差异表达基因(DEGs)和42个差异表达miRNAs(DEmiRs),产生了224对可能与盐度驯化相关的预测miRNA-mRNA对。蛋白质-蛋白质相互作用网络显示,5个(fbp1b、fbp2、gapdh、prkag2a和prkag3b)和7个(zbtb16a、e2f5、brd4、brd3a、mef2ca、ncor1和ezh2)枢纽基因可能分别在FW和SW适应过程中发挥重要作用。值得注意的是,功能富集分析表明,参与葡萄糖代谢、信号转导途径以及造血和血管功能维持相关分子的DEG和DEmiR可能对鳃的渗透调节至关重要。我们的研究结果不仅为理解广盐鱼类盐度驯化的分子机制奠定了基础,而且还提供了一系列分子标记,可用于提高鱼类的耐盐能力,以及为狭盐物种人工培育耐盐菌株。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Aquaculture
Aquaculture 农林科学-海洋与淡水生物学
CiteScore
8.60
自引率
17.80%
发文量
1246
审稿时长
56 days
期刊介绍: Aquaculture is an international journal for the exploration, improvement and management of all freshwater and marine food resources. It publishes novel and innovative research of world-wide interest on farming of aquatic organisms, which includes finfish, mollusks, crustaceans and aquatic plants for human consumption. Research on ornamentals is not a focus of the Journal. Aquaculture only publishes papers with a clear relevance to improving aquaculture practices or a potential application.
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