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范围扩张后的外周萌芽解释了单侧卵胎生鱼类的多样性和分布。

Peripheral Budding Following Range Expansion Explains Diversity and Distribution of One-Sided Livebearing Fish.

作者信息

Berg Rachel, Aguilera Gastón, Goyenola Guillermo, Petry Ana C, Meyer Axel, Torres-Dowdall Julián

机构信息

Department of Biological Sciences, University of Notre Dame, Notre Dame, Indiana, USA.

Fundación Miguel Lillo-Unidad Ejecutora Lillo (CONICET), San Miguel de Tucumán, Tucumán, Argentina.

出版信息

Mol Ecol. 2025 Aug;34(16):e70023. doi: 10.1111/mec.70023. Epub 2025 Jul 11.

DOI:10.1111/mec.70023
PMID:40642873
Abstract

Peripheral budding occurs when populations diverge from a widespread parental population and speciate along its periphery, facilitated by the interaction of ecological and geographic barriers. This phenomenon results in species that contrast in range size and ecological tolerance and can lead to confounding phylogenies. Here we examine patterns of peripheral budding in the Jenynsia lineata species complex using a genomic approach. The J. lineata species complex is a group of live-bearing fish in South America that shows signals of peripheral budding through asymmetric range sizes, J. lineata being widespread, and with a confounding and unresolved phylogeny. Our goal was to adequately classify the J. lineata species complex, delimit species within the complex, and identify signals of introgression to better understand the underlying evolutionary patterns. We collected 85 samples from the species complex for DNA extraction and performed RAD sequencing to generate genome-wide molecular markers for phylogenetic analyses. We found evidence of six distinct genetic groups within the complex and delimited at least five species, with a new species of Jenynsia in Northern Argentina along the periphery of J. lineata. Jenynsia lineata was recovered as the most recently diverged species in our phylogeny. This placement, along with observed patterns of introgression between species, suggests peripheral budding to have facilitated speciation in the J. lineata species complex, following a range expansion of a parental J. lineata. Our results show genomic patterns associated with peripheral budding and support the utility of using peripheral budding to better understand confounding phylogenetic patterns.

摘要

当种群从广泛分布的亲本种群中分化出来,并在其边缘形成新物种时,就会发生边缘萌芽现象,这一过程受到生态和地理屏障相互作用的促进。这种现象会导致物种在分布范围大小和生态耐受性方面形成差异,并可能导致系统发育关系混乱。在这里,我们使用基因组方法研究了细纹珍妮丽鱼物种复合体中的边缘萌芽模式。细纹珍妮丽鱼物种复合体是南美洲一群胎生鱼类,通过不对称的分布范围显示出边缘萌芽的信号,细纹珍妮丽鱼分布广泛,其系统发育关系混乱且尚未解决。我们的目标是对细纹珍妮丽鱼物种复合体进行充分分类,界定该复合体中的物种,并识别基因渗入的信号,以更好地理解潜在的进化模式。我们从该物种复合体中收集了85个样本用于DNA提取,并进行了RAD测序,以生成用于系统发育分析的全基因组分子标记。我们发现该复合体中有六个不同遗传群体的证据,并界定了至少五个物种,在阿根廷北部细纹珍妮丽鱼分布边缘发现了一个新的珍妮丽鱼物种。在我们构建的系统发育树中,细纹珍妮丽鱼是最近分化出来的物种。这一位置,以及观察到的物种间基因渗入模式,表明在亲本细纹珍妮丽鱼分布范围扩张之后,边缘萌芽促进了细纹珍妮丽鱼物种复合体的物种形成。我们的结果显示了与边缘萌芽相关的基因组模式,并支持利用边缘萌芽来更好地理解混乱的系统发育模式的实用性。

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本文引用的文献

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How Important Is Budding Speciation for Comparative Studies?出芽物种形成对比较研究有多重要?
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