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Trait Evolution in Adaptive Radiations: Modeling and Measuring Interspecific Competition on Phylogenies

机译:适应辐射的特质演变:文学造型与衡量文学性培养

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摘要

The incorporation of ecological processes into models of trait evolution is important for understanding past drivers of evolutionary change. Species interactions have long been thought to be key drivers of trait evolution. However, models for comparative data that account for interactions between species are lacking. One of the challenges is that such models are intractable and difficult to express analytically. Here we present phylogenetic models of trait evolution that include interspecific competition among chosen species. Competition is modeled as a tendency of sympatric species to evolve toward difference from one another, producing trait overdispersion and high phylogenetic signal. The model predicts elevated trait variance across species and a slowdown in evolutionary rate both across the clade and within each branch. The model also predicts a reduction in correlation between otherwise correlated traits. We use an approximate Bayesian computation approach to estimate model parameters. We find reasonable power to detect competition in sufficiently large (20+ species) trees compared with Brownian trait evolution and with Ornstein-Uhlenbeck and early burst models. We apply the model to examine the evolution of bill morphology of Darwin’s finches and find evidence that competition affects the evolution of bill length.udud
机译:将生态过程纳入特质进化模型对于理解过去进化变化的驱动力很重要。长期以来,物种相互作用一直被认为是性状进化的关键驱动力。但是,缺乏解释物种之间相互作用的比较数据模型。挑战之一是此类模型难以处理且难以进行分析表达。在这里,我们介绍了性状进化的系统发育模型,包括所选物种之间的种间竞争。竞争被模型化为同胞物种趋向彼此差异,产生性状过度分散和高系统发生信号的趋势。该模型预测跨物种和跨分支的进化特性在物种之间的升高和进化速度的降低。该模型还预测了其他相关性状之间的相关性降低。我们使用近似贝叶斯计算方法来估计模型参数。我们发现,与布朗性状进化以及Ornstein-Uhlenbeck模型和早期爆发模型相比,在足够大(超过20种)树木中检测竞争的合理能力。我们应用该模型检查了达尔文雀科钞票形态的演变,并找到证据证明竞争会影响钞票长度的演变。 ud ud

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