School of Biological Sciences, University of East Anglia, Norwich, NR4 7TJ, United Kingdom.
Evolution. 2013 Jan;67(1):295-302. doi: 10.1111/j.1558-5646.2012.01754.x. Epub 2012 Aug 27.
In the seaweed fly, Coelopa frigida, a large chromosomal inversion system is affected by sexual selection and viability selection. However, our understanding of the interaction between these two selective forces is currently limited as research has focused upon a limited range of environments. We allowed C. frigida larvae to develop in two different algae, Fucus and Laminaria, and then measured viability and body size for each inversion genotype. Significant male-specific genotype-by-environment interactions influenced viability and body size. For males developing in Laminaria, the direction of viability selection acts similarly on the inversion system as the direction of sexual selection. In contrast, for males developing in Fucus, viability selection opposes sexual selection. These results demonstrate that through considering viability selection in different environments, the costs and benefits associated with sexual selection can be found to vary.
在海藻蝇中,冷温性海藻蝇受到性选择和生存力选择的影响,存在一个大型染色体倒位系统。然而,由于研究主要集中在有限的环境范围内,我们目前对这两种选择力量之间的相互作用的理解还很有限。我们让冷温性海藻蝇的幼虫在两种不同的藻类中发育,即马尾藻和海带,然后测量每个倒位基因型的生存力和体型。显著的雄性特异性基因型-环境相互作用影响了生存力和体型。对于在海带中发育的雄性,生存力选择对倒位系统的作用与性选择的方向相似。相比之下,对于在马尾藻中发育的雄性,生存力选择与性选择相反。这些结果表明,通过在不同环境中考虑生存力选择,可以发现与性选择相关的成本和收益会有所不同。