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首页> 外文期刊>The Journal of Experimental Biology >Seasonality of energetic functioning and production of reactive oxygen species by lugworm (Arenicola marina) mitochondria exposed to acute temperature changes
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Seasonality of energetic functioning and production of reactive oxygen species by lugworm (Arenicola marina) mitochondria exposed to acute temperature changes

机译:暴露于急性温度变化的夜蛾(线虫)线粒体的能量功能季节性变化和活性氧的产生

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摘要

The influence of seasonal and acute temperature changes on mitochondrial functions were studied in isolated mitochondria of the eurythermal lugworm Arenicola marina (Polychaeta), with special emphasis on the interdependence of membrane potential and radical production. Acclimatisation of lugworms to prespawning/summer conditions is associated with rising mitochondrial substrate oxidation rates, higher proton leakage rates, elevated membrane potentials, and increased production of reactive oxygen species (ROS) in isolated mitochondria, compared with mitochondria from winter animals. However, a high ROS production was compensated for by higher activities of the antioxidant enzymes catalase and superoxide dismutase, as well as lower mitochondrial densities in summer compared with winter animals. In summer animals, a higher sensitivity of the proton leakage rate to changes of membrane potential will confer better flexibility for metabolic regulation (mild uncoupling) in response to temperature change. These seasonal alterations in mitochondrial functions suggest modifications of energy metabolism in eurythermal and euryoxic organisms on intertidal mudflats during summer. In winter, low and less changeable temperatures in intertidal sedimentary environments permit higher respiratory efficiency at low aerobic metabolic rates and lower membrane potentials in A. marina mitochondria.
机译:研究了季节性和急性温度变化对线粒体夜蛾Arenicola marina(Polychaeta)的孤立线粒体中线粒体功能的影响,特别强调了膜电位和自由基产生的相互依赖性。与冬季动物的线粒体相比,线虫适应于产卵前/夏季条件与线粒体底物氧化速率的上升,质子泄漏率的提高,膜电位的升高以及离体线粒体中活性氧物种(ROS)的产生增加有关。然而,与冬季动物相比,夏季抗氧化剂酶过氧化氢酶和超氧化物歧化酶的较高活性以及较低的线粒体密度补偿了较高的ROS产生。在夏季动物中,质子泄漏速率对膜电位变化的更高敏感性将赋予响应温度变化的代谢调节(温和解偶联)更好的灵活性。线粒体功能的这些季节性变化表明,在夏季潮间带滩涂中,线粒体和线粒体生物体的能量代谢发生了变化。在冬季,潮间带沉积环境中较低且变化较小的温度允许在较低的有氧代谢速率下提高呼吸效率,并在滨海线粒体中降低膜电位。

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