天蛾属(慈蝇科)种间系统发育差异及分类一致性缺失。

Olavo Pinhatti Colatreli, Natasha Verdasca Meliciano, Daniel Toffoli, Izeni Pires Farias, Tomas Hrbek
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引用次数: 17

摘要

新热带慈鲷属Astronotus目前包括两个有效种:A. ocellatus Agassiz, 1831年和A. crassipinnis Heckel, 1840年。诊断是基于颜色模式和计数。然而,身体颜色图案在不同地区之间是高度可变的,分生计数显示在不同颜色图案的种群之间有相当大的重叠。它们不能代表诊断物种的真正的突触形态。据称,唯一真正的诊断特征是在背鳍的底部有或没有一个或多个鱼眼,分别诊断A. ocellatus和A. crassipinnis。利用线粒体COI基因的5'部分和EPIC核标记,对亚马逊流域10个地区的个体样本进行了背眼作为诊断特征的有效性测试。分析否定了背眼在物种水平上具有诊断作用的假设。然而,他们揭示了五种假设的、主要分布在异域的形态隐种的存在。这种系统地理结构并不一定令人惊讶,因为Astronotus属的物种具有定居和领土习性,具有低扩散潜力。这些假设物种的分布与在其他亚马逊水生动物中观察到的模式一致,表明共同的历史过程在产生当前生物多样性模式中的作用。
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Deep phylogenetic divergence and lack of taxonomic concordance in species of astronotus (cichlidae).

The neotropical cichlid genus Astronotus currently comprises two valid species: A. ocellatus Agassiz, 1831 and A. crassipinnis Heckel, 1840. The diagnosis is based on color pattern and meristics counts. However, body color pattern is highly variable between regions and the meristic counts show a considerable overlap between populations differing in color patterning. They do not represent true synapomorphies that diagnose species. Purportedly the only truly diagnostic character is the presence or absence of one or more ocelli at the base of the dorsal fin, diagnosing A. ocellatus and A. crassipinnis, respectively. Using the 5' portion of the mitochondrial COI gene and EPIC nuclear markers, the validity of the dorsal ocelli as diagnostic character was tested in individuals sampled from ten localities in the Amazon basin. Analyses rejected the hypothesis that dorsal ocelli are diagnostic at the species level. However, they revealed the existence of five hypothetical, largely allopatrically distributed morphologically cryptic species. The phylogeographic structure is not necessarily surprising, since species of the genus Astronotus have sedentary and territorial habits with low dispersal potential. The distribution of these hypothetical species is coincident with patterns observed in other Amazonian aquatic fauna, suggesting the role of common historical processes in generating current biodiversity patterns.

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