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解决北美鼠蛇( Pantherophis obsoletus 复合体)物种形成灰色地带中杂交的空间复杂性。

Resolving spatial complexities of hybridization in the context of the gray zone of speciation in North American ratsnakes (Pantherophis obsoletus complex).

机构信息

Department of Herpetology, The American Museum of Natural History, Central Park West and 79th Street, New York, New York, 10024.

Department of Biological Sciences, Rutgers University Newark, 195 University Ave, Newark, New Jersey, 07102.

出版信息

Evolution. 2021 Feb;75(2):260-277. doi: 10.1111/evo.14141. Epub 2021 Jan 5.

DOI:10.1111/evo.14141
PMID:33346918
Abstract

Inferring the history of divergence between species in a framework that permits the presence of gene flow has been crucial for characterizing the "gray zone" of speciation, which is the period of time where lineages have diverged but have not yet achieved strict reproductive isolation. However, estimates of both divergence times and rates of gene flow often ignore spatial information, for example when considering the location and width of hybrid zones with respect to changes in the environment between lineages. Using population genomic data from the North American ratsnake complex (Pantherophis obsoletus), we connected phylogeographic estimates of lineage structure, migration, historical demography, and timing of divergence with hybrid zone dynamics. We examined the spatial context of diversification by linking migration and timing of divergence to the location and widths of hybrid zones. Artificial neural network approaches were applied to understand how landscape features and past climate have influenced population genetic structure among these lineages. We found that rates of migration between lineages were associated with the overall width of hybrid zones. Timing of divergence was not related to migration rate or hybrid zone width across species pairs but may be related to the number of alleles weakly introgressing through hybrid zones. This research underscores how incomplete reproductive isolation can be better understood by considering differential allelic introgression and the effects of historical and contemporary landscape features on the formation of lineages as well as overall genomic estimates of migration rates through time.

摘要

在允许基因流存在的框架下推断物种间的分歧历史对于描述“灰色地带”的物种形成至关重要,这是谱系分化但尚未达到严格生殖隔离的时期。然而,对分歧时间和基因流动率的估计往往忽略了空间信息,例如在考虑与谱系之间环境变化有关的杂种带的位置和宽度时。利用北美鼠蛇复合体( Pantherophis obsoletus )的种群基因组数据,我们将谱系结构、迁移、历史人口统计学和分歧时间的地理遗传学估计与杂种带动态联系起来。我们通过将迁移和分歧时间与杂种带的位置和宽度联系起来,考察了多样化的空间背景。我们应用人工神经网络方法来了解景观特征和过去气候如何影响这些谱系之间的种群遗传结构。我们发现,谱系之间的迁移率与杂种带的总宽度有关。分歧时间与物种对之间的迁移率或杂种带宽度无关,但可能与通过杂种带弱渗入的等位基因数量有关。这项研究强调了如何通过考虑不完全生殖隔离来更好地理解等位基因的差异渗入以及历史和当代景观特征对谱系形成以及通过时间的整体基因组估计的迁移率的影响。

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