生物
适应(眼睛)
遗传算法
生态学
适应性辐射
多元化(营销策略)
适应性进化
进化生物学
生物多样性
有机体
种内竞争
过程(计算)
生态物种形成
进化生态学
选择(遗传算法)
生态位建设
功能(生物学)
生物进化
基因组学
经验证据
钥匙(锁)
认知科学
进化发育生物学
实证研究
自然选择
共同进化
作者
Rishi De-Kayne,Rowan Schley,Julia M I Barth,Luke C Campillo,Catalina Chaparro-Pedraza,Jahnavi Joshi,Walter Salzburger,Bert Van Bocxlaer,Darko D Cotoras,Carmelo Fruciano,Anthony J. Geneva,Rosemary G. Gillespie,Joseph Heras,Stephan Koblmüller,Blake Matthews,Renske E Onstein,Ole Seehausen,Pooja Singh,Erik Svensson,David Salazar‐Valenzuela
标识
DOI:10.1101/cshperspect.a041448
摘要
Understanding the processes that drive phenotypic diversification and underpin speciation is key to elucidating how biodiversity has evolved. Although these processes have been studied across a wide array of clades, adaptive radiations (ARs), which are systems with multiple closely related species and broad phenotypic diversity, have been particularly fruitful for teasing apart the factors that drive and constrain diversification. As such, ARs have become popular candidate study systems for determining the extent to which ecological features, including aspects of organisms and the environment, and inter- and intraspecific interactions, led to evolutionary diversification. Despite substantial past empirical and theoretical work, understanding mechanistically how ARs evolve remains a major challenge. Here, we highlight a number of understudied components of the environment and of lineages themselves, which may help further our understanding of speciation and AR. We also outline some substantial remaining challenges to achieving a detailed understanding of adaptation, speciation, and the role of ecology in these processes. These major challenges include identifying factors that have a causative impact in promoting or constraining ARs, gaining a more holistic understanding of features of organisms and their environment that interact resulting in adaptation and speciation, and understanding whether the role of these organismal and environmental features varies throughout the radiation process. We conclude by providing perspectives on how future investigations into the AR process can overcome these challenges, allowing us to glean mechanistic insights into adaptation and speciation.
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