The genetic structure and demographic history of Zabelia tyaihyonii, endemic to Korean limestone karst forests, based on genome‐wide SNP markers

Author:

Choi In‐Su1ORCID,Han Eun‐Kyeong2ORCID,Wojciechowski Martin F.3ORCID,Heo Tae‐Im4ORCID,Park Jong‐Soo5ORCID,Yang Jong‐Cheol4ORCID,Gantsetseg Amarsanaa2ORCID,Cheon Kyeong‐Sik6ORCID,Tamaki Ichiro7ORCID,Lee Jung‐Hyun23ORCID

Affiliation:

1. Department of Biological Sciences and Biotechnology Hannam University Daejeon Korea

2. Department of Biology Education Chonnam National University Gwangju Korea

3. School of Life Sciences Arizona State University Tempe Arizona USA

4. Division of Baekdudaegan Biodiversity Conservation Baekdudaegan National Arboretum Bonghwa Korea

5. Division of Botany Honam National Institute of Biological Resources Mokpo Korea

6. Department of Biological Science Sangji University Wonju Korea

7. Gifu Academy of Forest Science and Culture Gifu Japan

Abstract

AbstractSimilar to the global phenomenon, many plant species endemic to Korean limestone karst forests are at risk of extinction due to human intervention. Zabelia tyaihyonii is a familiar shrub, called “Hardy abelia” and “Fragrant abelia” growing in the karst forests of Korea, where it is one of the most threatened species. We investigated the genetic structure and demographic history of Z. tyaihyonii, which allow us to develop appropriate conservation and management strategies. The genetic structure was evaluated using a total of 187 samples from 14 populations, covering the entire distribution of Z. tyaihyonii in South Korea. We utilized 254 and 1753 SNP loci obtained via MIG‐seq (Multiplexed ISSR Genotyping by sequencing) for structure and demographic analyses, respectively. The population demographic modeling was performed with site frequency spectrum. To gain further historical insights, we also employed ENM (Ecological Niche Modeling). We found two distinct clusters (CLI and CLII) of ancient origin (ca. 490 ka). Despite CLII experiencing a more severe bottleneck, both clusters showed similar levels of genetic diversity, indicating mutual historical gene flow. Their historical distribution range seems to have changed very little. We proposed a historical distribution scenario for Z. tyaihyonii, taking into account its intrinsic factors, and emphasized a more complex response to Quaternary climate change beyond simple allopatric speciation models. These findings provide valuable insights for conservation and management strategies for Z. tyaihyonii.

Publisher

Wiley

Subject

Nature and Landscape Conservation,Ecology,Ecology, Evolution, Behavior and Systematics

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