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Modularity, individuality, and evo-devo in butterfly wings

机译:蝴蝶翅膀的模块化,个性化和进化

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Modularity in animal development is thought to have facilitated morphological diversification, but independent change of those traits integrated within a module might be restricted. Correlations among traits describe potential developmental constraints on evolution. These have often been postulated to explain patterns of morphological variation and have been examined theoretically but seldom analyzed experimentally. Here, we use artificial selection to explore the modular organization of butterfly wing patterns and the extent to which their evolution is constrained by the genetic correlations among repeated pattern elements. We show that, in Bicyclus anynana butterflies, despite the evidence that all eyespots are developmentally coupled, the response to selection for increased size of one individual eyespot can proceed in a manner largely independent from selection imposed on another eyespot. We argue that among-eyespot correlations are unlikely to have constrained the evolutionary diversification of butterfly wing patterns but might be important when only limited time is available for adaptive evolution to occur. The ease with which we have been able to produce independent responses to artificial selection on different eyespots may be linked to a legacy of natural selection favoring individuality. Our results are discussed within the context of the evolution of modularity and individuality of serially repeated morphological traits.
机译:动物发育中的模块化被认为促进了形态的多样化,但是整合在模块中的那些性状的独立改变可能受到限制。性状之间的相关性描述了进化的潜在发展限制。这些通常被认为可以解释形态变化的模式,并且已经在理论上进行了研究,但很少通过实验进行分析。在这里,我们使用人工选择来探索蝴蝶翅膀图案的模块化组织,以及它们的进化受到重复图案元素之间的遗传相关性限制的程度。我们显示,在Bicyclus anynana蝴蝶中,尽管有证据表明所有眼点都是发育耦合的,但对于选择增加单个眼点大小的选择的响应可以在很大程度上独立于对另一个眼点进行选择的方式进行。我们认为,视点之间的相关性不太可能限制蝴蝶翅膀图案的进化多样化,但当只有有限的时间可用于适应性进化时,这一点可能很重要。我们已经能够轻松地在不同的视点上对人工选择产生独立的响应,这可能与有利于个性的自然选择的遗产有关。我们的结果是在模块化和连续重复的形态特征的个性化演变的背景下进行讨论的。

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