首页> 外文期刊>Molecular phylogenetics and evolution >A phylogeny of the cannibal snails of southern Africa, genus Natalina sensu lato (Pulmonata: Rhytididae): Assessing concordance between morphology and molecular data
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A phylogeny of the cannibal snails of southern Africa, genus Natalina sensu lato (Pulmonata: Rhytididae): Assessing concordance between morphology and molecular data

机译:Natalina sensu lato(Pulmonata:Rhytididae)属的南部非洲食人蜗牛的系统发育:评估形态学与分子数据之间的一致性

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摘要

The genus Natalina Pilsbry, 1893 is a southern African endemic belonging to the Gondwanan family of carnivorous snails, Rhytididae. We present a well-resolved molecular phylogeny of the genus based on the mitochondrial 16S and COI genes and the nuclear ITS2 gene, and assess this in light of Watson's [Watson, H., 1934. Natalina and other South African snails. Proc. Malacol. Soc. Lond. 21, 150-193] supra-specific classification via a re-examination of 23 morphological characters including features of the shell, radula, external anatomy and distal reproductive tract. Ancestral reconstruction and character mapping based on the MK_1 model reveals broad concordance between morphology and the molecular phylogeny at the supra-specific level. Given this concordance and exceptionally deep divergences in the molecular data, we recommend the elevation of the subgenera Natalina s.s., Afrorhytida, and Capitina to generic status. At the species level, we identify several species complexes for which additional fine scale morphological and molecular appraisal is needed to qualify on the one hand incipient speciation with notable differentiation in shell form and body pigmentation, and on the other, phylogenetically deep yet morphologically cryptic diversity.
机译:纳塔利娜·皮尔斯布里(Natalina Pilsbry)属,1893年,属于非洲南部特有种,隶属于食肉蜗牛冈第南家族(Rhytididae)。我们提出了一个基于线粒体16S和COI基因以及核ITS2基因的类的系统化分子系统发育,并根据Watson的[Watson,H.,1934. Natalina和其他南非蜗牛进​​行了评估。进程马拉科尔。 Soc。 nd 21,150-193]通过对23种形态特征的重新检查来确定超特异性分类,这些形态特征包括壳,小弓,外部解剖结构和远端生殖道的特征。基于MK_1模型的祖先重建和字符映射揭示了形态和分子系统发育在超特定水平上的广泛一致性。考虑到这种一致性以及分子数据中异常深厚的分歧,我们建议将Natalina s.s.,Afrorhytida和Capitina子属提升为通用状态。在物种水平上,我们确定了几种需要进一步细微形态和分子鉴定的物种复合物,一方面需要对初始形态进行鉴定,并且在壳形和体色素沉着方面有显着差异,另一方面,需要在系统发育上深入而又在形态上难以理解。

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