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三种硬骨鱼中mtDNA拷贝数的组织分布及一个线粒体DNA相关基因的表达模式

Tissue Distribution of mtDNA Copy Number And Expression Pattern of An mtDNA-Related Gene in Three Teleost Fish Species.

作者信息

Li B, Wang H, Jiang C, Zeng X, Zhang T, Liu S, Zhuang Z

机构信息

National Key Laboratory of Mariculture Biobreeding and Sustainable Goods, Yellow Sea Fisheries Research Institute, Chinese Academy of Fishery Sciences, Qingdao 266071, Shandong, China.

Laboratory for Marine Fisheries Science and Food Production Processes, Marine Life research center, Laoshan Laboratory, Qingdao 266237, Shandong, China.

出版信息

Integr Org Biol. 2023 Aug 7;5(1):obad029. doi: 10.1093/iob/obad029. eCollection 2023.

Abstract

Teleosts are the most speciose vertebrates and have diverse swimming performance. Based on swimming duration and speed, teleosts are broadly divided into sustained, prolonged, and burst swimming fish. Teleosts with different swimming performance have different energy requirements. In addition, energy requirement also varies among different tissues. As mitochondrial DNA (mtDNA) copy number is correlated with ATP production, we speculated that mtDNA copy number varies among fish with different swimming performance, as well as among different tissues. In other species, mtDNA copy number is regulated by (mitochondrial transcription factor A) through mtDNA compaction and mito-genome replication initiation. In order to clarify the tissue distribution of mtDNA copy number and expression pattern of in teleosts with disparate swimming performance, we selected representative fish with sustained swimming (), prolonged swimming (), and burst swimming (). We measured mtDNA copy number and gene expression in 10 tissues of these three fish. The results showed the mtDNA content pattern of various tissues was broadly consistent among three fish, and high-energy demanding tissues contain higher mtDNA copy number. Slow-twitch muscles with higher oxidative metabolism possess a greater content of mtDNA than fast-twitch muscles. In addition, relatively higher mtDNA content in fast-twitch muscle of compared to the other two fish could be an adaptation to their frequent burst swimming demands. And the higher mtDNA copy number in heart of could meet their oxygen transport demands of long-distance swimming. However, expression was not significantly correlated with mtDNA copy number in these teleosts, suggesting may be not the only factor regulating mtDNA content among various tissues. This study can lay a foundation for studying the role of mtDNA in the adaptive evolution of various swimming ability in teleost fish.

摘要

硬骨鱼是种类最为繁多的脊椎动物,具有多样的游泳能力。根据游泳持续时间和速度,硬骨鱼大致可分为持续游泳型、长时间游泳型和爆发式游泳型鱼类。具有不同游泳能力的硬骨鱼有不同的能量需求。此外,不同组织之间的能量需求也有所不同。由于线粒体DNA(mtDNA)拷贝数与ATP产生相关,我们推测mtDNA拷贝数在具有不同游泳能力的鱼类之间以及不同组织之间存在差异。在其他物种中,mtDNA拷贝数由(线粒体转录因子A)通过mtDNA压缩和线粒体基因组复制起始来调节。为了阐明mtDNA拷贝数的组织分布以及在具有不同游泳能力的硬骨鱼中(相关基因)的表达模式,我们选择了具有持续游泳能力(某鱼)、长时间游泳能力(某鱼)和爆发式游泳能力(某鱼)的代表性鱼类。我们测量了这三种鱼10个组织中的mtDNA拷贝数和(相关)基因表达。结果表明,三种鱼各组织的mtDNA含量模式大致一致,且高能量需求组织含有更高的mtDNA拷贝数。具有较高氧化代谢的慢肌比快肌拥有更多的mtDNA。此外,与其他两种鱼相比,(某鱼)快肌中相对较高的mtDNA含量可能是对其频繁爆发式游泳需求的一种适应。并且(某鱼)心脏中较高的mtDNA拷贝数可以满足其长距离游泳的氧气运输需求。然而,在这些硬骨鱼中,(相关基因)表达与mtDNA拷贝数没有显著相关性,这表明(该基因)可能不是调节各组织中mtDNA含量的唯一因素。本研究可为探讨mtDNA在硬骨鱼各种游泳能力适应性进化中的作用奠定基础。

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