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铜促进牡蛎幼虫生长和附着:来自 RNA-seq 的分子见解。

Copper promoting oyster larval growth and settlement: Molecular insights from RNA-seq.

机构信息

Division of Life Science and Hong Kong Branch of the Southern Marine Science and Engineering Guangdong Laboratory (Guangzhou), The Hong Kong University of Science and Technology, Kowloon, Hong Kong, China; School of Energy and Environment and State Key Laboratory of Marine Pollution, City University of Hong Kong, Kowloon, Hong Kong, China.

Division of Life Science and Hong Kong Branch of the Southern Marine Science and Engineering Guangdong Laboratory (Guangzhou), The Hong Kong University of Science and Technology, Kowloon, Hong Kong, China.

出版信息

Sci Total Environ. 2021 Aug 25;784:147159. doi: 10.1016/j.scitotenv.2021.147159. Epub 2021 Apr 17.

Abstract

As a cofactor of key enzymes, Cu is required in living organisms, although Cu levels in the natural environment are typically low. In this study, the promotion of growth and settlement on the larvae of oyster Crassostrea angulata was observed at an environmentally relevant concentration (10 μg/L Cu). Interestingly, Cu accumulation in the soft tissue of oyster larvae increased during the larval development and exhibited a sharp increase at the late pelagic stage. With the help of RNA-seq, we constructed a high-quality transcriptional database of the oyster C. angulata larvae (24,257 genes with an average length of 1594 bp) via de novo assembly, which provided the basic molecular changes during the larval development. Network analysis of five early developmental stages and differential expression under Cu exposure were integrated to examine the roles of Cu in oyster larvae. Our molecular analysis demonstrated that both ion channels and organic transporters contributed to Cu internalization from the external environment, including zinc transporters and amino acid transporters. The followed distribution of Cu across cells was achieved by ATP7A, the circulatory system, and the Cu transporters (CTRs). Cu exposure enhanced the ribosome and the calcium binding proteins with a higher rate of translation and shell formation, giving rise to faster growth of oyster larvae. Furthermore, Cu facilitated the settling process by upregulating the chitin binding genes and then promoting the formation of the proteinaceous matrix between larvae and substrate. Our study presents the molecular basis for Cu promotion (i.e., hormesis) effects on oyster larval growth and settlement.

摘要

作为关键酶的辅因子,铜在生物体中是必需的,尽管自然环境中的铜水平通常较低。在这项研究中,在环境相关浓度(10μg/L Cu)下观察到牡蛎幼虫的生长和附着得到促进。有趣的是,牡蛎幼虫软组织中的铜积累在幼虫发育过程中增加,并在后期浮游阶段急剧增加。借助 RNA-seq,我们通过从头组装构建了高质量的牡蛎 C. angulata 幼虫转录组数据库(24257 个基因,平均长度为 1594bp),为幼虫发育过程中的基本分子变化提供了基础。将五个早期发育阶段的网络分析和 Cu 暴露下的差异表达进行整合,以研究 Cu 在牡蛎幼虫中的作用。我们的分子分析表明,离子通道和有机转运蛋白都有助于 Cu 从外部环境中内化,包括锌转运蛋白和氨基酸转运蛋白。Cu 通过 ATP7A、循环系统和 Cu 转运蛋白(CTRs)在细胞内的分布。Cu 暴露通过提高核糖体和钙结合蛋白的翻译和壳形成速度,从而促进牡蛎幼虫更快地生长。此外,Cu 通过上调几丁质结合基因促进附着过程,从而促进幼虫和基质之间的蛋白质基质的形成。我们的研究为 Cu 促进(即,兴奋效应)对牡蛎幼虫生长和附着的分子基础提供了依据。

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