Fowler-Finn Kasey D, Kilmer Joseph T, Hallett Allysa C, Rodríguez Rafael L
Behavioral and Molecular Ecology Group, Department of Biological Sciences, University of Wisconsin-Milwaukee Milwaukee, Wisconsin ; Department of Biology, Saint Louis University Saint Louis, Missouri.
Behavioral and Molecular Ecology Group, Department of Biological Sciences, University of Wisconsin-Milwaukee Milwaukee, Wisconsin.
Ecol Evol. 2015 Jul;5(14):2774-86. doi: 10.1002/ece3.1567. Epub 2015 Jun 19.
Fisherian selection is a within-population process that promotes signal-preference coevolution and speciation due to signal-preference genetic correlations. The importance of the contribution of Fisherian selection to speciation depends in part on the answer to two outstanding questions: What explains differences in the strength of signal-preference genetic correlations? And, how does the magnitude of within-species signal-preference covariation compare to species differences in signals and preferences? To address these questions, we tested for signal-preference genetic correlations in two members of the Enchenopa binotata complex, a clade of plant-feeding insects wherein speciation involves the colonization of novel host plants and signal-preference divergence. We used a full-sibling, split-family rearing experiment to estimate genetic correlations and to analyze the underlying patterns of variation in signals and preferences. Genetic correlations were weak or zero, but exploration of the underlying patterns of variation in signals and preferences revealed some full-sib families that varied by as much as 50% of the distance between similar species in the E. binotata complex. This result was stronger in the species that showed greater amounts of genetic variation in signals and preferences. We argue that some forms of weak signal-preference genetic correlation may have important evolutionary consequences.
费希尔式选择是一种种群内部过程,由于信号偏好的遗传相关性,它促进了信号偏好的协同进化和物种形成。费希尔式选择对物种形成贡献的重要性部分取决于两个悬而未决问题的答案:是什么解释了信号偏好遗传相关性强度的差异?以及,物种内部信号偏好协变的程度与信号和偏好的物种差异相比如何?为了解决这些问题,我们在双色恩蚜小蜂复合体的两个成员中测试了信号偏好的遗传相关性,双色恩蚜小蜂复合体是一类以植物为食的昆虫,其中物种形成涉及新宿主植物的定殖和信号偏好的分化。我们使用了全同胞、分家庭饲养实验来估计遗传相关性,并分析信号和偏好的潜在变异模式。遗传相关性较弱或为零,但对信号和偏好潜在变异模式的探索揭示了一些全同胞家庭,其差异高达双色恩蚜小蜂复合体中相似物种之间距离的50%。在信号和偏好表现出更大遗传变异量的物种中,这一结果更为明显。我们认为,某些形式的弱信号偏好遗传相关性可能具有重要的进化后果。