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多态现象和多态性:蓝鳍胡瓜鱼种群内和种群间可塑性和颜色变化的遗传变异。

Polyphenisms and polymorphisms: Genetic variation in plasticity and color variation within and among bluefin killifish populations.

机构信息

Department of Evolution, Ecology, and Behavior, University of Illinois, Champaign, Illinois, USA.

Department of Biology, University of the South, Sewanee, Tennessee, USA.

出版信息

Evolution. 2022 Jul;76(7):1590-1606. doi: 10.1111/evo.14511. Epub 2022 Jun 5.

Abstract

The presence of stable color polymorphisms within populations begs the question of how genetic variation is maintained. Consistent variation among populations in coloration, especially when correlated with environmental variation, raises questions about whether environmental conditions affect either the fulcrum of those balanced polymorphisms, the plastic expression of coloration, or both. Color patterns in male bluefin killifish provoke both types of questions. Red and yellow morphs are common in all populations. Blue males are more common in tannin-stained swamps relative to clear springs. Here, we combined crosses with a manipulation of light to explore how genetic variation and phenotypic plasticity shape these patterns. We found that the variation in coloration is attributable mainly to two axes of variation: (1) a red-yellow axis with yellow being dominant to red, and (2) a blue axis that can override red-yellow and is controlled by genetics, phenotypic plasticity, and genetic variation for phenotypic plasticity. The variation among populations in plasticity suggests it is adaptive in some populations but not others. The variation among sires in plasticity within the swamp population suggests balancing selection may be acting not only on the red-yellow polymorphism but also on plasticity for blue coloration.

摘要

群体中稳定的颜色多态性存在,这就提出了一个问题,即遗传变异是如何维持的。颜色在种群间的一致变化,尤其是与环境变化相关联时,就会产生疑问,即环境条件是否会影响到那些平衡的多态性的支点,或者影响颜色的可塑性表达,或者两者兼而有之。雄性蓝鳍金枪鱼的颜色图案引发了这两种问题。红色和黄色形态在所有种群中都很常见。与清澈的泉水相比,在富含单宁的沼泽中,蓝色雄鱼更为常见。在这里,我们结合了杂交实验和光照操纵,以探讨遗传变异和表型可塑性如何塑造这些模式。我们发现,颜色的变化主要归因于两个变化轴:(1)一个红色-黄色轴,其中黄色对红色具有优势,(2)一个蓝色轴,可以覆盖红色-黄色,并且由遗传、表型可塑性以及表型可塑性的遗传变异控制。可塑性在种群间的变化表明,它在某些种群中是适应性的,但在其他种群中则不是。在沼泽种群中,雄性个体间的可塑性变化表明,平衡选择不仅可能作用于红色-黄色多态性,还可能作用于蓝色颜色的可塑性。

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