Mitochondrial Fission Is Involved in Heat Resistance in Zebrafish.

Zebrafish Pub Date : 2024-10-01 Epub Date: 2024-07-15 DOI:10.1089/zeb.2024.0128
Yousheng Mao, KwangHeum Hong, Li Li, In-Koo Nam, Seok-Hyung Kim, Seong-Kyu Choe
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Abstract

Global warming and extreme weather events pose a significant threat to global biodiversity, with rising water temperatures exerting a profound influence on fish conservation and fishery development. In this study, we used zebrafish as a model organism to explore the impact of a heat acclimation period on their survival rates. The results demonstrated that a 2-month heat acclimation period almost completely mitigated heat stress-induced mortality in zebrafish. Subsequent analysis of the surviving zebrafish revealed a predominance of hepatic mitochondria in a fission state. Remarkably, a short-term fasting regimen, which induced hepatic mitochondrial fission, mirrored the outcomes of the protective effect of heat acclimation and augmented animal survival under heat stress. Conversely, treatment with a mitochondrial fission inhibitor within the fasting group attenuated the elevated survival rate. Furthermore, zebrafish embryos subjected to brief heat acclimation also exhibited increased heat resistance, a trait diminished by a chemical intervention inhibiting mitochondrial fission. This suggests a shared mechanism for heat resistance between embryos and adult zebrafish. These findings underscore the potential use of inducing mitochondrial fission to enhance heat resistance in zebrafish, offering promise for fish biodiversity conservation in the face of global warming.

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线粒体分裂与斑马鱼的耐热性有关
全球变暖和极端天气事件对全球生物多样性构成重大威胁,水温上升对鱼类保护和渔业发展产生深远影响。在这项研究中,我们以斑马鱼为模式生物,探讨了热适应期对其存活率的影响。结果表明,2 个月的热适应期几乎完全缓解了热应激引起的斑马鱼死亡。随后对存活斑马鱼的分析表明,肝线粒体主要处于裂变状态。值得注意的是,诱导肝线粒体裂变的短期禁食方案反映了热适应的保护作用,并提高了动物在热应激下的存活率。相反,在禁食组中使用线粒体裂变抑制剂会降低存活率。此外,接受短暂热驯化的斑马鱼胚胎也表现出更强的耐热性,而抑制线粒体裂变的化学干预措施会削弱这种特性。这表明胚胎和成年斑马鱼之间存在共同的耐热机制。这些发现强调了诱导线粒体裂变以增强斑马鱼耐热性的潜在用途,为在全球变暖的情况下保护鱼类生物多样性带来了希望。
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