Redpath Museum and Department of Biology, McGill University, Montreal, Quebec, Canada.
Current Address: Department of Biology, University of Ottawa, 30 Marie Curie, Ottawa, Ontario, K1N 6N5, Canada.
Evolution. 2019 Feb;73(2):401-411. doi: 10.1111/evo.13669. Epub 2019 Jan 7.
Phenotypic integration and modularity describe the strength and pattern of interdependencies between traits. Integration and modularity have been proposed to influence the trajectory of evolution, either acting as constraints or facilitators. Here, we examine trends in the integration and modularity of pectoral fin morphology in teleost fishes using geometric morphometrics. We compare the fin shapes of the highly diverse radiation of acanthomorph fishes to lower teleosts. Integration and modularity are measured using two-block partial least squares analysis and the covariance ratio coefficient between the radial bones and lepidotrichia of the pectoral fins. We show that the fins of acanthomorph fishes are more tightly integrated but also more morphologically diverse and faster evolving compared to nonacanthomorph fishes. The main pattern of shape covariation in nonacanthomorphs is concordant with the main trajectory of evolution between nonacanthomorphs and acanthomorphs. Our findings support a facilitating role for integration during the acanthomorph diversification. Potential functional consequences and developmental mechanisms of fin integration are discussed.
表型整合和模块性描述了性状之间相互依存的强度和模式。整合和模块性被认为会影响进化的轨迹,要么作为约束,要么作为促进因素。在这里,我们使用几何形态测量学来研究硬骨鱼类胸鳍形态的整合和模块性趋势。我们将高度多样化的棘鳍鱼类与低等硬骨鱼类的鳍形进行了比较。使用两部分偏最小二乘分析和胸鳍的辐射骨与鳞茎之间的协方差比系数来测量整合和模块性。我们表明,与非棘鳍鱼类相比,棘鳍鱼类的鳍更加紧密地整合,但形态上更加多样化,进化速度也更快。非棘鳍鱼类的主要形状协变模式与非棘鳍鱼类和棘鳍鱼类之间的主要进化轨迹一致。我们的发现支持在棘鳍鱼类多样化过程中整合具有促进作用。还讨论了鳍整合的潜在功能后果和发育机制。