Burress Edward D, Tan Milton
Department of Biological Sciences and Auburn University Museum of Natural History, Auburn University, Auburn, Alabama.
Division of Infectious Diseases, School of Medicine, Emory University, Atlanta, Georgia.
Evolution. 2017 Nov;71(11):2650-2660. doi: 10.1111/evo.13362. Epub 2017 Oct 4.
The uneven distribution of diversity is a conspicuous phenomenon across the tree of life. Ecological opportunity is a prominent catalyst of adaptive radiation and therefore may alter patterns of diversification. We evaluated the distribution of shifts in diversification rates across the cichlid phylogeny and the distribution of major clades across phylogenetic space. We also tested if ecological opportunity influenced these patterns. Colonization-associated ecological opportunity altered the tempo and mode of diversification during the adaptive radiation of cichlid fishes. Clades that arose following colonization events diversified faster than other clades. Speciation rate shifts were nonrandomly distributed across the phylogeny such that they were disproportionally concentrated around nodes that corresponded with colonization events (i.e., of continents, river basins, or lakes). Young clades tend to expand faster than older clades; however, colonization-associated ecological opportunity accentuated this pattern. There was an interaction between clade age and ecological opportunity that explained the trajectory of clades through phylogenetic space over time. Our results indicate that ecological opportunities afforded by continental and ecosystem-scale colonization events explain the dramatic speciation rate heterogeneity and phylogenetic imbalance that arose during the evolutionary history of cichlid fishes.
多样性的不均衡分布是整个生命之树上一个显著的现象。生态机遇是适应性辐射的一个突出催化剂,因此可能会改变多样化的模式。我们评估了丽鱼科系统发育中多样化速率变化的分布以及主要类群在系统发育空间中的分布。我们还测试了生态机遇是否影响了这些模式。与定殖相关的生态机遇改变了丽鱼科鱼类适应性辐射期间多样化的节奏和模式。定殖事件后出现的类群比其他类群多样化得更快。物种形成速率的变化在系统发育中呈非随机分布,以至于它们不成比例地集中在与定殖事件(即大陆、流域或湖泊的定殖事件)相对应的节点周围。年轻类群往往比古老类群扩张得更快;然而,与定殖相关的生态机遇加剧了这种模式。类群年龄和生态机遇之间存在相互作用,这解释了类群随时间在系统发育空间中的轨迹。我们的结果表明,大陆和生态系统尺度的定殖事件所提供的生态机遇解释了丽鱼科鱼类进化历史中出现的显著的物种形成速率异质性和系统发育不平衡。