Key Laboratory of Freshwater Fish Reproduction and Development, Ministry of Education, School of Life Science, Southwest University, Chongqing 400715, China.
Fish Physiol Biochem. 2013 Jun;39(3):513-21. doi: 10.1007/s10695-012-9716-z. Epub 2012 Sep 21.
The effects of body size on the mitochondrial respiration rate were assessed in the heart, brain, gill, liver, and red muscle of largemouth bronze gudgeon, Coreius guichenoti, from the Yangtze River. Body mass had a significant influence on the state 3 oxygen consumption rate of the mitochondria from the heart, gill, and red muscle. The relationships between body mass (M, g) and state 3 oxygen consumption rate (V(state 3), nmol O min(-1) mg(-1)) of the mitochondria were represented by the following: V(state 3) = 3.56M(0.71) for heart, V(state 3) = 4.64M(0.50) for red muscle, and V(state 3) = 473.73M(-0.82) for gill. There was a significant difference in V(state 3), V(state 4), and respiratory control ratio among organs and all were highest in the heart. Our results suggest that the relationship between mitochondrial respiratory rate and body size varies among organs. The high mitochondrial respiratory rate in the heart of the largemouth gudgeon suggests that it has the highest oxidative capacity.
采用耗氧速率测定法研究了长江铜鱼(Coreius guichenoti)心脏、脑、鳃、肝脏和红肌中线粒体呼吸速率对鱼体大小的依赖关系。鱼体质量对心脏、鳃和红肌中线粒体的 III 态耗氧速率有显著影响。线粒体 III 态耗氧速率(V(state 3),nmol O min(-1) mg(-1))与鱼体质量(M,g)之间的关系可以用以下公式表示:心脏:V(state 3) = 3.56M(0.71);红肌:V(state 3) = 4.64M(0.50);鳃:V(state 3) = 473.73M(-0.82)。不同组织器官间 III 态、IV 态耗氧速率和呼吸控制率存在显著差异,其中心脏中这些指标均最高。结果表明,线粒体呼吸速率与鱼体大小的关系因组织器官而异。铜鱼心脏中线粒体呼吸速率较高,表明其具有较高的氧化能力。