紫贻贝热硬化过程中耐热相关生物学过程及通路的转录组分析
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作者单位:

1.国家海洋设施养殖工程技术研究中心, 浙江 舟山 316022 ;2.浙江海洋大学海洋科学与技术学院, 浙江 舟山 316022

作者简介:

张万亮(1999-),男,硕士研究生,研究方向为海洋生物学.E-mail:2104501825@qq.com

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中图分类号:

S917

基金项目:

国家自然科学基金面上项目(42076119); 浙江省“三农九方”科技协作计划“揭榜挂帅”项目(2023SNJF065)


Transcriptome analysis of heat tolerance-related biological processes and pathways during heat-hardening in Mytilus galloprovincialis
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Affiliation:

1.National Engineering Research Center for Marine Aquaculture, Zhoushan 316022 , China ;2.College of Marine Science and Technology, Zhejiang Ocean University, Zhoushan 316022 , China

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    摘要:

    紫贻贝(Mytilus galloprovincialis)的热硬化是为了应对春季连续低潮期的极端低潮而进行的提升热耐受性的一种生存策略。为揭示紫贻贝在热硬化下的热耐受性提升机制, 基于转录组测序技术对热硬化组(H)和对照组(N)处理后的贻贝鳃组织进行测序分析。结果显示, 相对于对照组, 热硬化组有 651 个差异表达基因, 其中有 159 个显著上调, 492 个显著下调。GO 分析结果显示, 差异表达基因显著富集于代谢过程、物质运输、信号转导等生物学过程。进一步对 GO 分析中的显著富集条目基因集进行基因集富集分析发现, 细胞大分子代谢过程、核酸代谢过程、含核碱化合物代谢过程等与大分子代谢、物质代谢、能量代谢相关的生物学过程均表现上调。KEGG 分析发现, 差异表达基因显著富集于 Rap1、细胞凋亡–多物种、MAPK 等与代谢调节相关的信号通路。以上研究表明, 热硬化紫贻贝可能通过激活多种大分子代谢过程以增强组织的功能发挥能力, 同时加强鳃组织主动清除损伤细胞的能力, 为应对高温胁迫做出早期生理调节和适应性反应, 使其功能得到更好地发挥。 本研究挖掘了与紫贻贝热硬化相关的生物学过程及代谢通路, 为研究紫贻贝热硬化形成的分子机制提供了研究基础。

    Abstract:

    Heat hardening in Mytilus galloprovincialis is a survival strategy for enhancing thermal tolerance in response to extreme low tides during consecutive low-tide periods in spring. Transcriptome sequencing was used to analyze the gill tissues of mussels in the heat-hardening (H) and control (N) groups to uncover the mechanisms of thermal tolerance enhancement under heat hardening. The results showed that, compared to the control group, the heat-hardening group had 651 differentially expressed genes, including 159 significantly upregulated and 492 significantly downregulated genes. Gene ontology (GO) analysis revealed significant enrichment of differentially expressed genes in biological processes such as metabolism, substance transport, and signal transduction. Gene set enrichment analysis (GSEA) of significantly enriched items in the GO analysis revealed the upregulation of biological processes related to macromolecule metabolism, nucleic acid metabolism, and metabolism of compounds containing nuclear bases, which are associated with macromolecule metabolism, substance metabolism, and energy metabolism. Kyoto encyclopedia of genes and genomes (KEGG) analysis revealed that differentially expressed genes were significantly enriched in signaling pathways related to metabolic regulation, such as Rap1, apoptosis-multiple species, and MAPK. These findings indicate that thermal hardening in Mytilus galloprovincialis may enhance tissue functional capacity by activating various macromolecular metabolic processes while also strengthening the ability of gill tissues to actively remove damaged cells, thus enabling early physiological regulation and adaptive responses to subsequent high-temperature stress, leading to better functional performance. This study explored the biological processes and metabolic pathways associated with thermal hardening in Mytilus galloprovincialis, providing a foundation for investigating the molecular mechanisms underlying heat-hardening in this species.

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引用本文

张万亮,董震宇,王昊,魏炳琦,林华建,王伟峰,郭宝英.紫贻贝热硬化过程中耐热相关生物学过程及通路的转录组分析[J].中国水产科学,2024,31(12):1422-1431
ZHANG Wanliang, DONG Zhenyu, WANG Hao, WEI Bingqi, LIN Huajian, WANG Weifeng, GUO Baoying. Transcriptome analysis of heat tolerance-related biological processes and pathways during heat-hardening in Mytilus galloprovincialis[J]. Journal of Fishery Sciences of China,2024,31(12):1422-1431

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  • 收稿日期:2024-04-20
  • 最后修改日期:2024-07-17
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  • 在线发布日期: 2025-02-11
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