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高温下海胆()的表达调控机制:miRNA-mRNA相互作用参与的新证据

Expression Regulation Mechanisms of Sea Urchin () Under the High Temperature: New Evidence for the miRNA-mRNA Interaction Involvement.

作者信息

Han Lingshu, Quan Zijiao, Wu Yanglei, Hao Pengfei, Wang Wenpei, Li Yuanxin, Zhang Xianglei, Liu Peng, Gao Chuang, Wang Heng, Wang Luo, Zhang Weijie, Yin Donghong, Chang Yaqing, Ding Jun

机构信息

Ningbo University, Ningbo, China.

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

出版信息

Front Genet. 2022 Jun 29;13:876308. doi: 10.3389/fgene.2022.876308. eCollection 2022.

Abstract

In the context of global warming and continuous high temperatures in the northern part of China during summer, the mortality rate of our main breeding species, reached 80% in 2020. How sea urchins respond to high temperatures is of great concern to academia and industry. In this study, we examined the antioxidant enzyme activities of different color tube-footed sea urchins under heat stress and compared their transcriptome and microRNA (miRNA) profiles using RNA-Seq. The results showed that the antioxidant enzyme activities of sea urchins were altered by thermal stress, and the changes in peroxidase activities of red tube-footed sea urchins were particularly significant. Investigations revealed that 1,079 differentially expressed genes (DEGs), 11 DE miRNAs, and 104 "DE miRNA-DEG" pairs in total were detected in sea urchins under high temperature stress. Several mRNA and miRNAs were significantly changed (e.g. , , miR-184-p5, miR-92a, miR-92c, and miR-124-p5), suggesting these genes and miRNAs exerted important functions in response to high temperature. At the transcriptional level, red tube-footed sea urchins were found to be more sensitive to high temperature and could respond to high temperature rapidly. DE miRNA-mRNA network showed that miR-92b-3p and PC-5p-7420 were the most corresponding miRNAs. Five mRNAs () may be potential markers of sea urchin response to high temperature. Possible interaction between miRNA-mRNA could be linked to protein folding in the endoplasmic reticulum, Phagosomes, and calcium transport. This study provides a theoretical basis for the molecular mechanism of sea urchin heat tolerance and information that will aid in the selection and breeding of sea urchins with high temperature tolerance.

摘要

在全球变暖以及中国北方夏季持续高温的背景下,我们主要养殖品种的死亡率在2020年达到了80%。海胆如何应对高温受到了学术界和产业界的高度关注。在本研究中,我们检测了不同颜色管足海胆在热应激下的抗氧化酶活性,并使用RNA测序比较了它们的转录组和微小RNA(miRNA)图谱。结果表明,热应激改变了海胆的抗氧化酶活性,红色管足海胆的过氧化物酶活性变化尤为显著。研究发现,在高温胁迫下的海胆中总共检测到1079个差异表达基因(DEG)、11个差异表达miRNA以及104对“差异表达miRNA-差异表达基因”。一些mRNA和miRNA发生了显著变化(例如, 、 、miR-184-p5、miR-92a、miR-92c和miR-124-p5),表明这些基因和miRNA在应对高温时发挥了重要作用。在转录水平上,发现红色管足海胆对高温更敏感,并且能够快速响应高温。差异表达miRNA-mRNA网络显示miR-92b-3p和PC-5p-7420是最对应的miRNA。五个mRNA( )可能是海胆对高温响应的潜在标志物。miRNA-mRNA之间可能的相互作用可能与内质网中的蛋白质折叠、吞噬体和钙运输有关。本研究为海胆耐热性的分子机制提供了理论基础,并为高温耐受性海胆的选育提供了有用信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8078/9277089/c9e8b19a56f1/fgene-13-876308-g001.jpg

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