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有毒环境的殖民化驱动着胎生鱼类(胎生鱂科)可预测的生活史进化。

Colonisation of toxic environments drives predictable life-history evolution in livebearing fishes (Poeciliidae).

机构信息

Department of Biological Sciences & W. M. Keck Center for Behavioral Biology, North Carolina State University, 127 David Clark Labs, Raleigh, NC, 27695-7617, USA; Department of Animal and Plant Sciences, University of Sheffield, Sheffield, S10 2TN, UK.

出版信息

Ecol Lett. 2014 Jan;17(1):65-71. doi: 10.1111/ele.12209. Epub 2013 Nov 4.

Abstract

New World livebearing fishes (family Poeciliidae) have repeatedly colonised toxic, hydrogen sulphide-rich waters across their natural distribution. Physiological considerations and life-history theory predict that these adverse conditions should favour the evolution of larger offspring. Here, we examined nine poeciliid species that independently colonised toxic environments, and show that these fishes have indeed repeatedly evolved much larger offspring size at birth in sulphidic waters, thus uncovering a widespread pattern of predictable evolution. However, a second pattern, only indirectly predicted by theory, proved additionally common: a reduction in the number of offspring carried per clutch (i.e. lower fecundity). Our analyses reveal that this secondary pattern represents a mere consequence of a classic life-history trade-off combined with strong selection on offspring size alone. With such strong natural selection in extreme environments, extremophile organisms may commonly exhibit multivariate phenotypic shifts even though not all diverging traits necessarily represent adaptations to the extreme conditions.

摘要

新世界胎生鱼类(胎生鱂科)在其自然分布范围内多次殖民到毒性大、富含硫化氢的水域。生理学考虑和生活史理论预测,这些不利条件应该有利于更大后代的进化。在这里,我们研究了 9 种独立殖民到毒性环境的胎生鱂科鱼类,结果表明,这些鱼类在硫化水域确实反复进化出了更大的出生后代体型,从而揭示了一种广泛存在的可预测进化模式。然而,理论间接预测的第二个模式同样常见:每窝携带的后代数量减少(即较低的繁殖力)。我们的分析表明,这种次要模式仅仅是经典生活史权衡的结果,加上对后代体型的强烈选择。在如此强烈的自然选择下,极端环境中的极端生物即使不是所有趋异特征都代表对极端条件的适应,也可能经常表现出多变量的表型变化。

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