Genome-wide patterns of divergence and introgression after secondary contact between Pungitius sticklebacks

Author:

Yamasaki Yo Y.1ORCID,Kakioka Ryo1,Takahashi Hiroshi2,Toyoda Atsushi3,Nagano Atsushi J.4,Machida Yoshiyasu5,Møller Peter R.6,Kitano Jun1ORCID

Affiliation:

1. Ecological Genetics Laboratory, National Institute of Genetics, Yata 1111, Mishima, Shizuoka 411-8540, Japan

2. National Fisheries University, 2-7-1 Nagata-honmachi, Shimonoseki, Yamaguchi 759-6595, Japan

3. Comparative Genomics Laboratory, National Institute of Genetics, Yata 1111, Mishima, Shizuoka 411-8540, Japan

4. Faculty of Agriculture, Ryukoku University, Otsu, Shiga 520-2194, Japan

5. Bihoro Museum, Midori 253-4, Bihoro, Abashiri, Hokkaido 092-0002, Japan

6. Natural History Museum of Denmark, University of Copenhagen, Universitatetsparken 15, Copenhagen 2100, Denmark

Abstract

Speciation is a continuous process. Although it is known that differential adaptation can initiate divergence even in the face of gene flow, we know relatively little about the mechanisms driving complete reproductive isolation and the genomic patterns of divergence and introgression at the later stages of speciation. Sticklebacks contain many pairs of sympatric species differing in levels of reproductive isolation and divergence history. Nevertheless, most previous studies have focused on young species pairs. Here, we investigated two sympatric stickleback species, Pungitius pungitius and P. sinensis , whose habitats overlap in eastern Hokkaido; these species show hybrid male sterility, suggesting that they may be at a late stage of speciation. Our demographic analysis using whole-genome sequence data showed that these species split 1.73 Ma and came into secondary contact 37 200 years ago after a period of allopatry. This long period of allopatry might have promoted the evolution of intrinsic incompatibility. Although we detected on-going gene flow and signatures of introgression, overall genomic divergence was high, with considerable heterogeneity across the genome. The heterogeneity was significantly associated with variation in recombination rate. This sympatric pair provides new avenues to investigate the late stages of the stickleback speciation continuum. This article is part of the theme issue ‘Towards the completion of speciation: the evolution of reproductive isolation beyond the first barriers’.

Funder

Japan Society for the Promotion of Science

Publisher

The Royal Society

Subject

General Agricultural and Biological Sciences,General Biochemistry, Genetics and Molecular Biology

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