Department of Ecological and Biological Science, Tuscia University, Largo dell'Università s.n.c., 01100, Viterbo, Italy.
Naturalis Biodiversity Center, P.O. Box 9517, 2300 RA, Leiden, The Netherlands.
Sci Rep. 2021 Jan 8;11(1):260. doi: 10.1038/s41598-020-79046-y.
Genetic diversity feeds the evolutionary process and allows populations to adapt to environmental changes. However, we still lack a thorough understanding of why hotspots of genetic diversity are so 'hot'. Here, we analysed the relative contribution of bioclimatic stability and genetic admixture between divergent lineages in shaping spatial patterns of genetic diversity in the common toad Bufo bufo along the Italian peninsula. We combined population genetic, phylogeographic and species distribution modelling (SDM) approaches to map ancestral areas, glacial refugia, and secondary contact zones. We consistently identified three phylogeographic lineages, distributed in northern, central and southern Italy. These lineages expanded from their ancestral areas and established secondary contact zones, before the last interglacial. SDM identified widespread glacial refugia in peninsular Italy, sometimes located under the present-day sea-level. Generalized linear models indicated genetic admixture as the only significant predictor of the levels of population genetic diversity. Our results show that glacial refugia contributed to preserving both levels and patterns of genetic diversity across glacial-interglacial cycles, but not to their formation, and highlight a general principle emerging in Mediterranean species: higher levels of genetic diversity mark populations with substantial contributions from multiple genetic lineages, irrespective of the location of glacial refugia.
遗传多样性促进了进化过程,并使种群能够适应环境变化。然而,我们仍然缺乏对为什么遗传多样性热点如此“热”的全面理解。在这里,我们分析了生物气候稳定性和分歧谱系之间遗传混合的相对贡献,以塑造意大利半岛常见蟾蜍 Bufo bufo 遗传多样性的空间模式。我们结合了种群遗传、系统地理学和物种分布模型(SDM)方法来绘制祖先区域、冰川避难所和次级接触区。我们一致确定了三个系统地理学谱系,分布在意大利北部、中部和南部。这些谱系从它们的祖先区域扩张,并在末次间冰期之前建立了次级接触区。SDM 确定了半岛意大利广泛的冰川避难所,有时位于现今海平面以下。广义线性模型表明,遗传混合是种群遗传多样性水平的唯一显著预测因子。我们的结果表明,冰川避难所有助于在冰期-间冰期循环中保存遗传多样性的水平和模式,但不能形成遗传多样性,并且突出了地中海物种中出现的一个普遍原则:遗传多样性水平较高的种群具有来自多个遗传谱系的大量贡献,而不论冰川避难所的位置如何。