Department of Ecology and Evolutionary Biology, Yale University, New Haven, CT 06511, USA.
BMC Evol Biol. 2010 Aug 3;10:239. doi: 10.1186/1471-2148-10-239.
The processes governing the origin and maintenance of mimetic phenotypes can only be understood in a phylogenetic framework. Phylogenetic estimates of evolutionary relationships can provide a context for analyses of character evolution; however, when phylogenetic estimates conflict, rigorous analyses of alternative evolutionary histories are necessary to determine the likelihood of a specific history giving rise to the observed pattern of diversity. The polyphenic butterfly Limenitis arthemis provides a case in point. This species is comprised of three lineages, two of which are mimetic and one of which is non-mimetic. Conflicting estimates of the relationships among these three lineages requires direct evaluation of the alternative hypotheses of mimicry evolution.
Using a coalescent framework, we found support for a sister-taxon relationship between the non-mimetic L. a. arthemis and the mimetic L. a. astyanax, congruent with the previous hypothesis that the non-mimetic form of L. a. arthemis was derived from a mimetic ancestor. We found no support for a mimetic clade (L. a. astyanax + L. a. arizonensis) despite analyzing numerous models of population structure.
These results provide the foundation for future studies of mimicry, which should integrate phylogenetic and developmental analyses of wing pattern formation. We propose future analyses of character evolution accommodate conflicting phylogenetic estimates by explicitly testing alternative evolutionary hypotheses.
只有在系统发育框架内,才能理解控制拟态表型起源和维持的过程。进化关系的系统发育估计可以为特征进化分析提供背景;然而,当系统发育估计存在冲突时,需要对替代进化历史进行严格分析,以确定特定历史产生观察到的多样性模式的可能性。多态蝴蝶 Limenitis arthemis 就是一个很好的例子。该物种由三个谱系组成,其中两个是拟态的,一个是非拟态的。这三个谱系之间关系的相互矛盾的估计需要直接评估拟态进化的替代假说。
使用合并框架,我们发现非拟态 Limenitis arthemis 和拟态 Limenitis a. astyanax 之间存在姊妹分类群关系,与先前的假设一致,即非拟态 Limenitis a. arthemis 是从拟态祖先衍生而来的。尽管分析了许多种群结构模型,但我们没有发现拟态类群(Limenitis a. astyanax + Limenitis a. arizonensis)的支持。
这些结果为未来的拟态研究提供了基础,未来的研究应该整合翅膀图案形成的系统发育和发育分析。我们建议未来的特征进化分析通过明确测试替代进化假说来适应相互矛盾的系统发育估计。