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Hybridization increases mitochondrial production of reactive oxygen species in sunfish

机译:杂交增加了太阳鱼中活性氧的线粒体生产

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Mitochondrial dysfunction and oxidative stress have been suggested to be possible mechanisms underlying hybrid breakdown, as a result of mito-nuclear incompatibilities in respiratory complexes of the electron transport system. However, it remains unclear whether hybridization increases the production of reactive oxygen species (ROS) by mitochondria. We used high-resolution respirometry and fluorometry on isolated liver mitochondria to examine mitochondrial physiology and ROS emission in naturally occurring hybrids of pumpkinseed (Lepomis gibbosus) and bluegill (L. macrochirus). ROS emission was greater in hybrids than in both parent species when respiration was supported by complex I (but not complex II) substrates, and was associated with increases in lipid peroxidation. However, respiratory capacities for oxidative phosphorylation, phosphorylation efficiency, and O_2 kinetics in hybrids were intermediate between those in parental species. Flux control ratios of capacities for electron transport (measured in uncoupled mitochondria) relative to oxidative phosphorylation suggested that the limiting influence of the phosphorylation system is reduced in hybrids. This likely helped offset impairments in electron transport capacity and complex III activity, but contributed to augmenting ROS production. Therefore, hybridization can increase mitochondrial ROS production, in support of previous suggestions that mitochondrial dysfunction can induce oxidative stress and thus contribute to hybrid breakdown.
机译:已经提出了线粒体功能障碍和氧化应激是可以在电子传输系统的呼吸复合物中的核核不相容性的结果的可能机制。然而,仍然不清楚杂交是否增加了线粒体的活性氧物种(ROS)的产生。我们在分离的肝线粒体上使用了高分辨率呼​​吸和荧光测定法,以检查南瓜(Lepomis Gibosus)和蓝鳃(L. Macrochirus)天然存在的杂交种的线粒体生理学和ROS排放。当呼吸支持的呼吸负载(但非复合II)底物时,杂交中的杂交种比母体物种更大,并且与脂质过氧化的增加有关。然而,氧化磷酸化,磷酸化效率和杂种中O_2动力学的呼吸能力是亲本物种中的中间体。相对于氧化磷酸化的电子传输(在未耦合线粒体中测量)的通量控制比例表明,磷酸化系统的限制影响在杂交种中降低。这可能有助于电子传输能力和复杂的III活动中的抵消障碍,但有助于增强ROS生产。因此,杂交可以增加线粒体ROS生产,以支持对线粒体功能障碍可以诱导氧化应激并因此有助于杂交击穿的建议。

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