首页> 美国卫生研究院文献>Ecology and Evolution >Gene flow and species delimitation in fishes of Western North America: Flannelmouth (Catostomus latipinnis) and Bluehead sucker (C. Pantosteus discobolus)
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Gene flow and species delimitation in fishes of Western North America: Flannelmouth (Catostomus latipinnis) and Bluehead sucker (C. Pantosteus discobolus)

机译:北美西部鱼类的基因流和物种划界:弗兰内茅斯(Catostomus latipinnis)和蓝头吸盘(C. Pantosteus discobolus)

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摘要

The delimitation of species boundaries, particularly those obscured by reticulation, is a critical step in contemporary biodiversity assessment. It is especially relevant for conservation and management of indigenous fishes in western North America, represented herein by two species with dissimilar life histories codistributed in the highly modified Colorado River (i.e., flannelmouth sucker, ; bluehead sucker, ). To quantify phylogenomic patterns and examine proposed taxonomic revisions, we first employed double‐digest restriction site‐associated DNA sequencing (ddRAD), yielding 39,755 unlinked SNPs across 139 samples. These were subsequently evaluated with multiple analytical approaches and by contrasting life history data. Three phylogenetic methods and a Bayesian assignment test highlighted similar phylogenomic patterns in each, but with considerable difference in presumed times of divergence. Three lineages were detected in bluehead sucker, supporting elevation of to species status and recognizing (Zuni bluehead sucker) as a discrete entity. Admixture in the latter necessitated a reevaluation of its contemporary and historic distributions, underscoring how biodiversity identification can be confounded by complex evolutionary histories. In addition, we defined three separate flannelmouth sucker lineages as ESUs (evolutionarily significant units), given limited phenotypic and genetic differentiation, contemporary isolation, and lack of concordance (per the genealogical concordance component of the phylogenetic species concept). Introgression was diagnosed in both species, with the Little Colorado and Virgin rivers in particular. Our diagnostic methods, and the agreement of our SNPs with previous morphological, enzymatic, and mitochondrial work, allowed us to partition complex evolutionary histories into requisite components, such as isolation versus secondary contact.
机译:物种边界的划界,特别是被网状遮盖的边界,是当代生物多样性评估中的关键步骤。它与北美西部土著鱼类的养护和管理特别相关,在这里以在高度改良的科罗拉多河中共同分布的两种生活史不同的物种(即法兰绒嘴吸盘;蓝头吸盘)为代表。为了量化系统进化模式并检查拟议的分类学修订,我们首先采用了双消化限制性位点相关的DNA测序(ddRAD),在139个样品中产生了39,755个未连接的SNP。随后通过多种分析方法并通过对比生活史数据对这些进行了评估。三种系统发育方法和贝叶斯赋值测试突出显示了每种方法中相似的系统发育模式,但在估计的发散时间上有相当大的差异。在蓝头吸盘中检测到三个谱系,支持将物种提升至物种状态并识别(祖尼蓝头吸盘)为离散实体。后者中的混合物必须重新评估其当代和历史分布,强调如何通过复杂的进化史混淆生物多样性的识别。此外,鉴于表型和遗传分化有限,当代分离和缺乏一致性(根据系统发育物种概念的家谱一致性组成部分),我们将三个单独的法兰绒嘴suck科谱系定义为ESU(进化上重要的单位)。在这两个物种中都诊断出渗入,特别是小科罗拉多河和维京河。我们的诊断方法以及SNP与先前的形态学,酶学和线粒体研究的一致性,使我们能够将复杂的进化史划分为必要的组成部分,例如分离与次级接触。

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