性信号及其潜在形态的解耦促进了表型的快速多样化。

IF 3.4 1区 生物学 Q2 EVOLUTIONARY BIOLOGY Evolution Letters Pub Date : 2022-12-01 DOI:10.1002/evl3.302
James H Gallagher, David M Zonana, E Dale Broder, Brianna K Herner, Robin M Tinghitella
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引用次数: 3

摘要

想象新的表型是如何进化的是一个挑战,因为性状通常是由许多综合的表型成分构成的,任何一种形式的变化都可能破坏整个模块的功能。然而,新的表型确实出现了,适应性表型进化的研究表明,复杂的性状可以在保持现有的形式-功能关系或通过改变形式-功能关系的创新的同时分化。尽管性信号在生物多样性的产生中起着重要作用,但人们对这些替代途径如何促进性信号进化知之甚少。在夏威夷的太平洋田蟋蟀种群中,雄性蟋蟀的歌声既能吸引雌性蟋蟀,也能吸引一种致命的声音导向的寄生蝇。为了应对自然选择和性选择之间的冲突,雄性蟋蟀多次进化改变了翅膀的形态,导致性信号的丧失和戏剧性的改变。最近,我们和其他人观察到性信号变异和产生歌声的潜在形态结构的急剧增加。我们首次进行了形式(机翼形态)、功能(紧急信号)和接受者反应的综合分析,以表征新的变异,测试关于形式-功能关系的替代假设(形式-功能连续性vs形式-功能解耦),并研究新信号的潜在机制变化和适应度后果。我们确定了三种产生声音的雄性形态(其中一种以前没有描述过,被命名为“嘎嘎”),并发现形态和信号之间的关系已经重新连接(形式-功能解耦),通过形态结构的获得、损失和改变,快速而反复地,促进了存在于新表型空间中的信号的产生。通过整合不同层次的表型,我们发现了不同的形态,它们具有独特的解决方案,既能吸引配偶,又能避免致命的寄生。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Decoupling of sexual signals and their underlying morphology facilitates rapid phenotypic diversification.

How novel phenotypes evolve is challenging to imagine because traits are often underlain by numerous integrated phenotypic components, and changes to any one form can disrupt the function of the entire module. Yet novel phenotypes do emerge, and research on adaptive phenotypic evolution suggests that complex traits can diverge while either maintaining existing form-function relationships or through innovations that alter form-function relationships. How these alternate routes contribute to sexual signal evolution is poorly understood, despite the role of sexual signals in generating biodiversity. In Hawaiian populations of the Pacific field cricket, male song attracts both female crickets and a deadly acoustically orienting parasitoid fly. In response to this conflict between natural and sexual selection, male crickets have evolved altered wing morphologies multiple times, resulting in loss and dramatic alteration of sexual signals. More recently, we and others have observed a radical increase in sexual signal variation and the underlying morphological structures that produce song. We conducted the first combined analysis of form (wing morphology), function (emergent signal), and receiver responses to characterize novel variation, test alternative hypotheses about form-function relationships (Form-Function Continuity vs. Form-Function Decoupling), and investigate underlying mechanistic changes and fitness consequences of novel signals. We identified three sound-producing male morphs (one previously undescribed, named "rattling") and found that relationships between morphology and signals have been rewired (Form-Function Decoupling), rapidly and repeatedly, through the gain, loss, and alteration of morphological structures, facilitating the production of signals that exist in novel phenotypic space. By integrating across a hierarchy of phenotypes, we uncovered divergent morphs with unique solutions to the challenge of attracting mates while evading fatal parasitism.

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来源期刊
Evolution Letters
Evolution Letters EVOLUTIONARY BIOLOGY-
CiteScore
13.00
自引率
2.00%
发文量
35
审稿时长
10 weeks
期刊介绍: Evolution Letters publishes cutting-edge new research in all areas of Evolutionary Biology. Available exclusively online, and entirely open access, Evolution Letters consists of Letters - original pieces of research which form the bulk of papers - and Comments and Opinion - a forum for highlighting timely new research ideas for the evolutionary community.
期刊最新文献
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