College of Animal Science and Technology, Northwest A&F University, 22 Xinong Road, Yangling, 712100, Shaanxi, China.
Fish Physiol Biochem. 2022 Aug;48(4):869-881. doi: 10.1007/s10695-022-01088-y. Epub 2022 Jun 2.
Mitochondria are critical to cellular activity that implicated in expansive networks to maintain organismal homeostasis under external stimuli of nutrient variability, a common and severe stress to fish performance during the intensive culture conditions. In the present study, zebrafish embryonic fibroblast cells were used to investigate the fish mitochondrial changes upon serum deprivation. Results showed that mitochondrial content and membrane potential were significantly reduced with increased intracellular ROS level in the serum deprivation treated fish cells. And the impaired mitochondria were characterized by rough and fracted outer membrane, and more fused mitochondria were frequently observed with the upregulated mRNA expressions of mitochondrial fusion genes (mfn1b, mfn2, and opa1). Besides, the mitochondrial DNA (mtDNA) copy numbers of mtatp6, mtcox1, mtcytb, mtnd4, and mtnd6 were overall showing the highly significant reduction, together with the mRNA expressions of these genes significantly increased, exhibiting the compensatory effects in mitochondria. Furthermore, the methyl-cytosine of whole mtDNA was compared and the methyl-reads numbers were distinctly increased in the treatment group, reflecting the instability of fish mtDNA with mitochondrial dysfunction under nutrient fluctuations. Collectively, current findings could facilitate the integrated research between fish mitochondrial response and external variables that indicates the potentially profound and durative deficits in fish health during the aquaculture processes.
线粒体对于细胞活动至关重要,与维持生物体内稳态的广泛网络有关,在集约化养殖条件下,营养变化等外部刺激是鱼类性能的常见且严重的应激源。本研究采用斑马鱼胚胎成纤维细胞来研究血清剥夺后鱼类线粒体的变化。结果表明,血清剥夺处理的鱼细胞中,线粒体含量和膜电位显著降低,细胞内 ROS 水平升高。受损的线粒体表现为外膜粗糙和断裂,并且经常观察到更多融合的线粒体,同时线粒体融合基因(mfn1b、mfn2 和 opa1)的 mRNA 表达上调。此外,mtatp6、mtcox1、mtcytb、mtnd4 和 mtnd6 的 mtDNA 拷贝数总体上呈显著降低趋势,这些基因的 mRNA 表达显著增加,表现出线粒体的代偿效应。此外,比较了整个 mtDNA 的甲基胞嘧啶,发现处理组中的甲基读取数明显增加,反映了鱼类 mtDNA 在营养波动下线粒体功能障碍时的不稳定性。总之,目前的研究结果可以促进鱼类线粒体反应与外部变量之间的综合研究,表明在水产养殖过程中鱼类健康可能会出现深远且持久的缺陷。