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Diet-Morphology Correlations in the Radiation of South American Geophagine Cichlids (Perciformes: Cichlidae: Cichlinae)

机译:南美土生丽鱼科丽鱼科植物的辐射与饮食形态的相关性(蠕形虫:丽鱼科:丽鱼科)

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摘要

Genera within the South American cichlid tribe Geophagini display specialized feeding and reproductive strategies, with some taxa specialized for both substrate-sifting and mouth brooding. Several lineages within the clade also possess an epibranchial lobe (EBL), a unique pharyngeal structure that has been proposed to have a function in feeding and/or mouth brooding. A recently published genus-level phylogeny of Neotropical cichlids was used as the evolutionary framework for investigating the evolution of morphological features presumably correlated with diet and mouth brooding in the tribe Geophagini. We tested for possible associations between the geophagine epibranchial lobe and benthic feeding and mouth brooding. We also addressed whether the EBL may be associated with unique patterns of diversification in certain geophagine clades. Tests of binary character correlations revealed the EBL was significantly associated with mouth brooding. We also tested for a relationship between diet and morphology. We analyzed stomach contents and morphometric variation among 21 species, with data for two additional species obtained from the literature. Principal Components Analysis revealed axes of morphological variation significantly correlated with piscivory and benthivory, and both morphology and diet were significantly associated with phylogeny. These results suggest that the EBL could be an adaptation for either feeding or mouth brooding. The EBL, however, was not associated with species richness or accelerated rates of phyletic diversification.
机译:南美丽鱼科鱼类Geophagini中的属显示出专门的喂养和生殖策略,其中一些分类单元专门用于底物筛选和口育。进化枝中的几个谱系还具有支气管上叶(EBL),这是一种独特的咽结构,已被提出具有进食和/或口育的功能。最近发表的新热带丽鱼科植物的属水平系统发育被用作进化框架,用于研究可能与饮食和口育有关的地缘动物群的形态特征的演变。我们测试了地球吞噬者支气管上叶与底栖喂养和口育育之间的可能联系。我们还讨论了EBL是否可能与某些Geophagine进化枝中独特的多样化模式有关。二进制字符相关性的测试表明,EBL与嘴部孵化显着相关。我们还测试了饮食与形态之间的关系。我们分析了21种物种的胃内容物和形态变化,并从文献中获得了另外两种物种的数据。主成分分析显示,形态变异的轴与食肉动物和底栖动物显着相关,形态和饮食与系统发育显着相关。这些结果表明,EBL可能适合进食或育雏。然而,EBL与物种丰富度或系统多样化的加快速度无关。

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