安第斯棕榈火箭蛙(香蛙科,红蛙科)的景观遗传学和物种划分

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2022-02-09 DOI:10.1155/2022/6774225
Gabrielle Genty, Carlos E. Guarnizo, Juan P. Ramírez, L. Barrientos, A. Crawford
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引用次数: 0

摘要

安第斯山脉北部物种丰富的复杂地形创造了异质的环境景观,据推测,这些景观通过替代或局部适应等过程促进了种群的分裂和多样化。先前对哥伦比亚中海拔森林特有的棕榈火箭蛙(Anura:Aromobatidae:Rheobates spp.)的系统发育研究表明,山谷在促进谱系之间的分化方面很重要。在这项研究中,我们首先评估了先前关于物种水平多样性的假设,然后拟合了一个带迁移的隔离(IM)历史人口统计模型,并测试了两个景观遗传模型来解释Rheobates内部的遗传差异:距离隔离和环境隔离。数据由24个样本中的两个线粒体基因和四个核基因组成,这些样本覆盖了该属的大部分地理范围。通过贝叶斯系统发育遗传学和系统发育地理学进行的物种划界在Rheobates中恢复了五个高度分化的遗传谱系,根据IM,其中很少甚至没有迁移者交换。我们发现,环境隔离是唯一一个与线粒体和核基因遗传距离显著相关的变量,这表明局部适应可能在推动该蛙属的遗传分化中发挥作用。因此,Rheobates的基因差异可能更多地是由这些青蛙生活的当地环境之间的差异驱动的,而不是由地理距离驱动的。
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Landscape Genetics and Species Delimitation in the Andean Palm Rocket Frog (Aromobatidae, Rheobates)
The complex topography of the species-rich northern Andes creates heterogeneous environmental landscapes that are hypothesized to have promoted population fragmentation and diversification by processes such as vicariance or local adaptation. Previous phylogenetic work on the palm rocket frog (Anura: Aromobatidae: Rheobates spp.), endemic to midelevation forests of Colombia, suggested that valleys were important in promoting divergence between lineages. In this study, we first evaluated previous hypotheses of species-level diversity, then fitted an isolation-with-migration (IM) historical demographic model, and tested two landscape genetic models to explain genetic divergence within Rheobates: isolation by distance and isolation by environment. The data consisted of two mitochondrial and four nuclear genes from 24 samples covering most of the geographic range of the genus. Species delimitation by Bayesian Phylogenetics and Phylogeography recovered five highly divergent genetic lineages within Rheobates, among which few to no migrants are exchanged according to IM. We found that isolation by environment provided the only variable significantly correlated with genetic distances for both mitochondrial and nuclear genes, suggesting that local adaptation may have a role in driving the genetic divergence within this frog genus. Thus, genetic divergence in Rheobates may be driven more by variation among the local environments where these frogs live rather than by geographic distance.
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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