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首页> 外文期刊>Proceedings of the Royal Society of London. Biological sciences >Reactive oxygen species as universal constraints in life-history evolution.
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Reactive oxygen species as universal constraints in life-history evolution.

机译:活性氧是生命历史进化中的普遍制约因素。

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Evolutionary theory is firmly grounded on the existence of trade-offs between life-history traits, and recent interest has centred on the physiological mechanisms underlying such trade-offs. Several branches of evolutionary biology, particularly those focusing on ageing, immunological and sexual selection theory, have implicated reactive oxygen species (ROS) as profound evolutionary players. ROS are a highly reactive group of oxygen-containing molecules, generated as common by-products of vital oxidative enzyme complexes. Both animals and plants appear to intentionally harness ROS for use as molecular messengers to fulfil a wide range of essential biological processes. However, at high levels, ROS are known to exert very damaging effects through oxidative stress. For these reasons, ROS have been suggested to be important mediators of the cost of reproduction, and of trade-offs between metabolic rate and lifespan, and between immunity, sexual ornamentation and sperm quality. In this review, we integrate the above suggestions into one life-history framework, and review the evidence in support of the contention that ROS production will constitute a primary and universal constraint in life-history evolution.
机译:进化论牢固地立足于生活史特征之间的权衡,而最近的兴趣集中在这种权衡的生理机制上。进化生物学的几个分支,特别是那些关注衰老,免疫学和性选择理论的分支,都暗示了活性氧(ROS)是重要的进化参与者。 ROS是含氧分子的高反应性基团,是重要的氧化酶复合物的常见副产物。动植物似乎都故意将ROS用作分子信使,以实现广泛的基本生物学过程。然而,在高水平下,已知ROS通过氧化应激发挥非常有害的作用。由于这些原因,已经提出ROS是繁殖成本以及代谢率和寿命之间,以及免疫力,性装饰和精子质量之间的折衷的重要调节剂。在这篇综述中,我们将上述建议整合到一个生命史框架中,并回顾了支持ROS产生将构成生命史进化的主要和普遍性约束的证据。

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