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转录组分析揭示PC4通过调节心肌生物电活动参与海湾扇贝的耐热性。

Transcriptomic analysis reveals PC4's participation in thermotolerance of scallop Argopecten irradians irradians by regulating myocardial bioelectric activity.

作者信息

Chang Jiaxi, Liu Ancheng, Zhang Junhao, Chu Longfei, Hou Xiujiang, Huang Xiaoting, Xing Qiang, Bao Zhenmin

机构信息

MOE Key Laboratory of Marine Genetics and Breeding, College of Marine Life Sciences, Ocean University of China, 5 Yushan Road, Qingdao 266003, China.

MOE Key Laboratory of Marine Genetics and Breeding, College of Marine Life Sciences, Ocean University of China, 5 Yushan Road, Qingdao 266003, China; Laboratory for Marine Fisheries Science and Food Production Processes, Qingdao Marine Science and Technology Center, Qingdao 266237, China.

出版信息

Comp Biochem Physiol Part D Genomics Proteomics. 2024 Dec;52:101295. doi: 10.1016/j.cbd.2024.101295. Epub 2024 Jul 20.

Abstract

Rising ocean temperatures due to global warming pose a significant threat to the bay scallop aquaculture industry. Understanding the mechanisms of thermotolerance in bay scallops is crucial for developing thermotolerant breeds. Our prior research identified Arg0230340.1, part of the positive cofactor 4 (PC4) family, as a key gene associated with the thermotolerance index Arrhenius break temperature (ABT) in bay scallops. Further validation through RNA interference (RNAi) reinforced PC4's role in thermotolerance, offering a solid basis for investigating thermal response mechanisms in these scallops. In this study, we performed a comparative transcriptomic analysis on the temperature-sensitive hearts of bay scallops after siRNA-mediated RNAi targeting Arg0230340.1, to delve into the detailed molecular mechanism of PC4's participation in thermotolerance regulation. The analysis revealed that silencing Arg0230340.1 significantly reduced the expression of mitochondrial tRNA and rRNA, potentially affecting mitochondrial function and the heart's blood supply capacity. Conversely, the up-regulation of genes involved in energy metabolism, RNA polymerase II (RNAPII)-mediated basal transcription, and aminoacyl-tRNA synthesis pathways points to an intrinsic protective response, providing energy and substrates for damage repair and maintenance of essential functions under stress. GO and KEGG enrichment analyses indicated that the up-regulated genes were primarily associated with energy metabolism and spliceosome pathways, likely contributing to myocardial remodeling post-Arg0230340.1 knockdown. Down-regulated genes were enriched in ion channel pathways, particularly those for Na, K, and Ca channels, whose dysfunction could disrupt normal myocardial bioelectric activity. The impaired cardiac performance resulting from RNAi targeting Arg0230340.1 reduced the cardiac workload in scallop hearts, thus affecting myocardial oxygen consumption and thermotolerance. We propose a hypothetical mechanism where PC4 down-regulation impairs cardiac bioelectric activity, leading to decreased thermotolerance in bay scallops, providing theoretical guidance for breeding thermotolerant scallop varieties and developing strategies for sustainable aquaculture in the face of long-term environmental changes.

摘要

全球变暖导致海洋温度上升,对海湾扇贝养殖业构成重大威胁。了解海湾扇贝的耐热机制对于培育耐热品种至关重要。我们之前的研究确定,作为正辅因子4(PC4)家族一部分的Arg0230340.1是与海湾扇贝耐热指数阿累尼乌斯断裂温度(ABT)相关的关键基因。通过RNA干扰(RNAi)进一步验证,强化了PC4在耐热性中的作用,为研究这些扇贝的热反应机制提供了坚实基础。在本研究中,我们对靶向Arg0230340.1的siRNA介导的RNAi处理后的海湾扇贝温度敏感型心脏进行了比较转录组分析,以深入探究PC4参与耐热性调控的详细分子机制。分析表明,沉默Arg0230340.1显著降低了线粒体tRNA和rRNA的表达,可能影响线粒体功能和心脏的血液供应能力。相反,参与能量代谢、RNA聚合酶II(RNAPII)介导的基础转录以及氨酰-tRNA合成途径的基因上调,表明存在一种内在的保护反应,在应激状态下为损伤修复和维持基本功能提供能量和底物。GO和KEGG富集分析表明,上调基因主要与能量代谢和剪接体途径相关,可能在Arg0230340.1敲低后有助于心肌重塑。下调基因在离子通道途径中富集,特别是钠、钾和钙通道,其功能障碍可能破坏正常的心肌生物电活动。靶向Arg0230340.1的RNAi导致心脏性能受损,降低了扇贝心脏的心脏工作负荷,从而影响心肌耗氧量和耐热性。我们提出了一种假设机制,即PC4下调会损害心脏生物电活动,导致海湾扇贝耐热性降低,为培育耐热扇贝品种以及制定面对长期环境变化的可持续养殖策略提供理论指导。

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