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首页> 外文期刊>Heredity: An International Journal of Genetics >PHYLOGENETIC AUTOCORRELATION AND EVOLUTIONARY CONSTRAINTS IN WORKER BODY SIZE OF SOME NEOTROPICAL STINGLESS BEES (HYMENOPTERA, APIDAE)
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PHYLOGENETIC AUTOCORRELATION AND EVOLUTIONARY CONSTRAINTS IN WORKER BODY SIZE OF SOME NEOTROPICAL STINGLESS BEES (HYMENOPTERA, APIDAE)

机译:某些新品种无刺蜂(膜翅目,小DA科)体型的系统发育自相关和进化约束

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摘要

Developments in the analysis of comparative data in evolutionary biology suggest that it is possible to partition the total variance of some quantitative trait into a phylogenetic component, which contains that part of the variation attributed to common ancestry with other species, and a specific component, which results from independent evolution after cladogenesis. In this paper, we analysed the variation in worker body size across 16 neotropical species of stingless bees (Meliponinae), using phylogenetic autocorrelation models to evaluate evolutionary constraints in this complex trait. Body size was defined in a multivariate sense as the first principal component extracted from the covariance matrix of 10 log-transformed morphometric characters. The estimated phylogenetic autoregressive coefficient (p) was equal to 0.495 +/- 0.192, indicating that only 24.5 per cent of variability in worker body size can be attributed to inertial phylogenetic effects. This relatively low value of p in bees is to be expected, considering that this complex trait has traditionally been recognized as an expression of worker adaptation related to foraging activity and resource exploitation.
机译:进化生物学中比较数据分析的发展表明,可以将某些数量性状的总方差划分为系统发育成分,其中包含与其他物种共同的祖先和特定成分,成枝后独立进化的结果。在本文中,我们使用系统进化自相关模型评估了这一复杂性状的进化限制,我们分析了16种新热带无刺蜂(Meliponinae)工人体型的变化。从多变量意义上将体大小定义为从10个对数转换的形态计量特征的协方差矩阵中提取的第一个主要成分。估计的系统发育自回归系数(p)等于0.495 +/- 0.192,这表明,只有24.5%的工人体形变异可归因于惯性系统发育效应。蜜蜂的p值相对较低,这是可以预期的,因为传统上人们已经认识到这种复杂的特征是与觅食活动和资源开发有关的工人适应性的表现。

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