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Parallel evolution of senescence in annual fishes in response to extrinsic mortality

机译:外源性死亡率对一年生鱼类衰老的平行影响

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摘要

BackgroundEarly evolutionary theories of aging predict that populations which experience low extrinsic mortality evolve a retarded onset of senescence. Experimental support for this theory in vertebrates is scarce, in part for the difficulty of quantifying extrinsic mortality and its condition- and density-dependent components that –when considered- can lead to predictions markedly different to those of the “classical” theories. Here, we study annual fish of the genus Nothobranchius whose maximum lifespan is dictated by the duration of the water bodies they inhabit. Different populations of annual fish do not experience different strengths of extrinsic mortality throughout their life span, but are subject to differential timing (and predictability) of a sudden habitat cessation. In this respect, our study allows testing how aging evolves in natural environments when populations vary in the prospect of survival, but condition-dependent survival has a limited effect. We use 10 Nothobranchius populations from seasonal pools that differ in their duration to test how this parameter affects longevity and aging in two independent clades of these annual fishes.
机译:背景技术早期的衰老进化理论预测,外在死亡率较低的人群会出现衰老的延迟。在脊椎动物中对该理论的实验支持很少,部分原因是难以量化外部死亡率及其依赖于条件和密度的成分,这些成分在考虑时可能导致与“经典”理论明显不同的预测。在这里,我们研究了Nothobranchius属的一年生鱼类,其最大寿命由它们栖息的水体的持续时间决定。一年生鱼类的不同种群在其整个生命周期中没有经历过不同的外部死亡强度,但是会受到栖息地突然停止的不同时间(和可预测性)的影响。在这方面,我们的研究允许测试当人口生存前景发生变化时自然环境中衰老如何演变,但条件依赖生存的作用有限。我们使用来自季节性池的10个Nothobranchius种群,这些种群的持续时间各不相同,以测试此参数如何影响这些年生鱼的两个独立进化枝中的寿命和衰老。

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