Species Persistence with Hybridization in Toad-Headed Lizards Driven by Divergent Selection and Low Recombination

Author:

Gao Wei1,Yu Chuan-Xin12,Zhou Wei-Wei1,Zhang Bao-Lin1,Chambers E. Anne34,Dahn Hollis A.5,Jin Jie-Qiong1,Murphy Robert W.156,Zhang Ya-Ping17,Che Jing17

Affiliation:

1. State Key Laboratory of Genetic Resources and Evolution & Yunnan Key Laboratory of Biodiversity and Ecological Security of Gaoligong Mountain, Kunming Institute of Zoology, Chinese Academy of Sciences, Kunming, China

2. Kunming College of Life Science, University of Chinese Academy of Sciences, Kunming, China

3. Department of Integrative Biology and Biodiversity Center, University of Texas at Austin, Austin, TX, USA

4. Department of Environmental Science, Policy, and Management, University of California, Berkeley, CA, USA

5. Department of Ecology and Evolutionary Biology, University of Toronto, Toronto, ON, Canada

6. Centre for Biodiversity and Conservation Biology, Royal Ontario Museum, Toronto, ON, Canada

7. Center for Excellence in Animal Evolution and Genetics, Chinese Academy of Sciences, Kunming, China

Abstract

AbstractSpeciation plays a central role in evolutionary studies, and particularly how reproductive isolation (RI) evolves. The origins and persistence of RI are distinct processes that require separate evaluations. Treating them separately clarifies the drivers of speciation and then it is possible to link the processes to understand large-scale patterns of diversity. Recent genomic studies have focused predominantly on how species or RI originate. However, we know little about how species persist in face of gene flow. Here, we evaluate a contact zone of two closely related toad-headed lizards (Phrynocephalus) using a chromosome-level genome assembly and population genomics. To some extent, recent asymmetric introgression from Phrynocephalus putjatai to P. vlangalii reduces their genomic differences. However, their highly divergent regions (HDRs) have heterogeneous distributions across the genomes. Functional gene annotation indicates that many genes within HDRs are involved in reproduction and RI. Compared with allopatric populations, contact areas exhibit recent divergent selection on the HDRs and a lower population recombination rate. Taken together, this implies that divergent selection and low genetic recombination help maintain RI. This study provides insights into the genomic mechanisms that drive RI and two species persistence in the face of gene flow during the late stage of speciation.

Publisher

Oxford University Press (OUP)

Subject

Genetics,Molecular Biology,Ecology, Evolution, Behavior and Systematics

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