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Body shape variation within the Southern Cavefish, Typhlichthys subterraneus (Percopsiformes: Amblyopsidae)

机译:南部穴位内的身体形状变异,Typhlichthys底部(Percopsiformes:Amblyopsidae)

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The Southern Cavefish, Typhlichthys subterraneus Girard 1859, is one of the most fascinating stygobionts of the Amblyopsidae because of its undescribed diversity. Previous molecular analysis suggests the presence of at least ten distinct lineages in the Southeastern United States. Morphological variation for this group has not been quantified previous to this study. We quantified differences in body shape within the Southern Cavefish utilizing landmark-based geometric morphometrics. We found significant allometry of body shape (Relative Warps) across all putative lineages. We then performed an allometric correction to develop a size-independent morphospace. Principal components analysis indicated that the major axes of size-independent shape explained variation in relative head length to predorsal length, as well as head size and shape in both lateral and dorsal views. We examined if morphological variation corresponded to putative genetic lineages and three geographic variables (aquifer, HUC subregion, and ecoregion). We found shape differences among groups within some variables, but generally, body shape variation was not well explained by these variables. Instead, the dramatic body shape diversity among individuals was explained by ontogeny. Poor agreement between morphology and lineages, as well as multiple geographic variables may be explained by convergent evolution of cave-adapted morphologies or cryptic morphology (i.e., no morphological characters to define diversity).
机译:南方捕捞者Typhlichthys Subtraneus Girard 1859是由于其未描述的多样性,令人忙碌的弱势群体之一。以前的分子分析表明美国在美国东南部至少存在十个不同的谱系。本研究之前尚未量化该组的形态变异。我们利用基于地标的几何形态学测量来量化南部穴位内体形的差异。我们发现所有推定谱系的身体形状(相对经线)的显着各种态度。然后,我们进行了一个典型的校正,以开发典型的形态学。主成分分析表明,独立的形状的主要轴线在横向和背视图中解释了相对头长度的相对头长度的变化,以及横向和背面视图的头部尺寸和形状。我们检查了形态学变化是否对应于推定的遗传谱系和三个地理变量(含水层,HUC次区域和Ecoregion)。我们在某些变量内发现组之间的形状差异,但通常,这些变量的身体形状变化并不良好解释。相反,血细胞解释了个体之间的戏剧性身体形状多样性。可以通过洞穴适应形态或隐秘形态的收敛演变来解释形态和衬里之间的差,以及多种地理变量(即,没有定义多样性的形态特征),可以解释。

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