首页> 外文期刊>Evolution: International Journal of Organic Evolution >Genetics, lighting environment, and heritable responses to lighting environment affect male color morph expression in bluefin killifish, Lucania goodei
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Genetics, lighting environment, and heritable responses to lighting environment affect male color morph expression in bluefin killifish, Lucania goodei

机译:遗传,光照环境以及对光照环境的遗传反应影响了蓝鳍金枪鱼(Lucania goodei)蓝鳍金枪鱼的雄性色变

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摘要

Determining the degree to which variation in traits is controlled by genetics and/or environment is fundamental to understanding adaptation. In this study, we examine the genetic and environmental influences on color pattern expression in male bluefin killifish, Lucania goodei. This is a compelling system because both male color patterns and vision physiology are correlated with basic properties of the environment. Across populations, males with blue anal fins are more abundant in waters with low transmission of UV and blue wavelengths. Here, we present results from two paternal half-sib breeding experiments (one in the laboratory, one in the greenhouse) in which offspring were raised under light treatments that mimicked natural variation in the spectral composition of light. In both experiments, we found that red-versus-yellow expression is controlled by an autosomal locus of large effect where yellow (Y) is dominant over red (y). There was little blue expression in the laboratory. In the greenhouse, we found higher expression of blue anal fin morphs when males were raised in tea-stained water (low transmission UV/ blue) than when raised in clear water (high transmission UV/blue). We also found genetic effects of sires and an interaction between sire and lighting environment (i.e. heritable plasticity). These results show that a relatively simple, environmentally dependent, epistatic interaction can produce a large amount of variation in male color patterns that presumably function in sexual selection.
机译:确定性状变异受遗传和/或环境控制的程度对于理解适应性至关重要。在这项研究中,我们检查了遗传和环境因素对雄蓝鳍金鱼(Lucania goodei)彩色图案表达的影响。这是一个引人注目的系统,因为男性的颜色模式和视觉生理都与环境的基本属性相关。在整个种群中,具有蓝色肛门鳍的雄性在紫外线和蓝色波长的透射率较低的水中更为丰富。在这里,我们介绍了两个父本半同胞繁殖实验的结果(一个在实验室,一个在温室),其中在模仿光的光谱组成的自然变化的光处理下培育了后代。在这两个实验中,我们发现红色对黄色的表达受常染色体显性位点控制,其中黄色(Y)高于红色(y)。实验室里几乎没有蓝色的表情。在温室中,我们发现雄性在茶水(低透过率的紫外线/蓝色)下饲养时,比在清水中(高透过率的紫外线/蓝色)下饲养时,蓝色肛门鳍形态的表达更高。我们还发现了父系的遗传效应以及父系与光照环境之间的相互作用(即可遗传的可塑性)。这些结果表明,相对简单的,依赖于环境的上位相互作用可以在男性颜色模式中产生大量变化,这些变化可能在性别选择中起作用。

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