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Phylogenetic relationship, biogeography, and conservation genetics of endangered Fraxinus chiisanensis (Oleaceae), endemic to South Korea

Authors
Kim, ChangkyunKim, Dong-KapSun, HangKim, Joo-Hwan
Issue Date
Mar-2022
Publisher
KeAi Publishing Communications Ltd.
Keywords
Biogeography; East China Sea land bridge; Endemic species; Fraxinus chiisanensis; Genetic diversity; Korean Peninsula
Citation
Plant Diversity, v.44, no.2, pp.170 - 180
Journal Title
Plant Diversity
Volume
44
Number
2
Start Page
170
End Page
180
URI
https://scholarworks.bwise.kr/gachon/handle/2020.sw.gachon/84474
DOI
10.1016/j.pld.2021.06.004
ISSN
2096-2703
Abstract
Endemic plants are important for understanding phylogenetic relationships, biogeographical history, and genetic variation because of their restricted distribution and their role in conserving biodiversity. Here, we investigated the phylogenetic relationships of the Korean endemic Fraxinus chiisanensis by reconstructing the molecular phylogeny of Fraxinus based on two nuclear DNA (nrITS and phantastica) and two chloroplast DNA (psbA-trnH and rpl32-trnL) regions. Within our fossil-calibrated phylogenetic framework, we also inferred the biogeographical history of F. chiisanensis. To provide a scientific basis for the conservation of F. chiisanensis, we determined the levels of genetic diversity and genetic differentiation in this species. Combining information from nuclear and chloroplast DNA sequence data, our molecular phylogenetic analyses identified F. chiisanensis as a genetically distinct unit from its sister group, Fraxinus platypoda from Japan. Our molecular dating analyses using nuclear and chloroplast DNA data sets show F. chiisanensis diverged from its sister F. platypoda in the Early or Middle Miocene and differentiated in the Late Miocene on the Korean Peninsula. Our results suggest that the divergence of F. chiisanensis was associated with the submergence of the East China Sea land bridge and enhanced monsoons in East Asia. When compared to F. platypoda, F. chiisanensis exhibits low genetic diversity within populations and high genetic differentiation among populations. These results help us to understand the evolutionary history of F. chiisanensis and to develop a conservation strategy for this species. © 2021 Kunming Institute of Botany, Chinese Academy of Sciences
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