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Morphological analysis of Trichomycterusareolatus Valenciennes 1846 from southern Chilean rivers using a truss-based system (Siluriformes Trichomycteridae)

机译:毛霉菌的形态学分析Areolatus Valenciennes1846年来自智利南部河流使用基于桁架的系统(SiluriformesTrichomycteridae)

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摘要

Trichomycterus areolatus Valenciennes, 1846 is a small endemic catfish inhabiting the Andean river basins of Chile. In this study, the morphological variability of three T. areolatus populations, collected in two river basins from southern Chile, was assessed with multivariate analyses, including principal component analysis (PCA) and discriminant function analysis (DFA). It is hypothesized that populations must segregate morphologically from each other based on the river basin that they were sampled from, since each basin presents relatively particular hydrological characteristics. Significant morphological differences among the three populations were found with PCA (ANOSIM test, r = 0.552, p < 0.0001) and DFA (Wilks’s λ = 0.036, p < 0.01). PCA accounted for a total variation of 56.16% by the first two principal components. The first Principal Component (PC1) and PC2 explained 34.72 and 21.44% of the total variation, respectively. The scatter-plot of the first two discriminant functions (DF1 on DF2) also validated the existence of three different populations. In group classification using DFA, 93.3% of the specimens were correctly-classified into their original populations. Of the total of 22 transformed truss measurements, 17 exhibited highly significant (p < 0.01) differences among populations. The data support the existence of T. areolatus morphological variation across different rivers in southern Chile, likely reflecting the geographic isolation underlying population structure of the species.
机译:Trichomycterus areolatus Valenciennes,1846年,一种小型流行cat鱼,栖息于智利的安第斯河流域。在这项研究中,通过多变量分析,包括主成分分析(PCA)和判别函数分析(DFA),对智利南部两个河流域中采集到的三个斑节菜种群的形态变异进行了评估。据推测,由于每个流域都表现出相对特殊的水文特征,因此必须根据所采样的流域在形态上相互隔离种群。在PCA(ANOSIM测试,r = 0.552,p <0.0001)和DFA(Wilksλ= 0.036,p <0.01)的情况下,发现了这三个种群之间的显着形态差异。前两个主要成分占PCA的总变化为56.16%。第一主成分(PC1)和PC2分别解释了总变化的34.72和21.44%。前两个判别函数(DF1在DF2上)的散点图也验证了三个不同种群的存在。在使用DFA进行的组分类中,将93.3%的标本正确分类为它们的原始种群。在22个转换的桁架测量中,有17个在人群之间显示出非常显着的差异(p <0.01)。数据支持智利南部不同河流之间的斑纹丁香形态学差异的存在,这很可能反映了该种群结构的地理隔离。

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