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  4. Genetic status and conservation implications of endangered Formosan black bears
 
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Genetic status and conservation implications of endangered Formosan black bears

Journal
Ursus
Journal Volume
2022
Journal Issue
33 E16
Date Issued
2022-12-21
Author(s)
Hsiao, Chen
YU-TEN JU  
Chang, Chun Hao
Chen, Sheng Wei
Tsai, Hui Wen
Wang, Ling
Lin, Wan Ching
Hwang, Mei Hsiu
DOI
10.2192/URSUS-D-21-00011.1
URI
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85145577759&doi=10.2192%2fURSUS-D-21-00011.1&partnerID=40&md5=098137d4dd0f2efeb06c7682be8ea74d
https://scholars.lib.ntu.edu.tw/handle/123456789/633873
URL
https://api.elsevier.com/content/abstract/scopus_id/85145577759
Abstract
The Formosan black bear (Ursus thibetanus formosanus, FBB) is an endangered subspecies of Asiatic black bear, geographically isolated in Taiwan from 6 other subspecies on the Asian continent and in Japan. Data on the genetic diversity and structure of wild FBB are lacking, though 2 potential hotspots for FBB occurrence have been identified; Yushan National Park (YNP) and Dasyueshan National Forest Recreation Area (DSY). Elucidating species' genetic structure can help assess the potential risks of population fragmentation and isolation that threaten FBB. Here, we employed 8 FBB-derived microsatellite loci to genotype 139 individuals from fecal samples collected in YNP, 20 captured individuals from both study areas, and 1 fecal sample from DSY, during 2009-2019. The marker set featured high polymorphic information content (mean > 0.699) and appropriate probability of identity (combined P(ID) < 0.0001) for individual identification. We detected high heterozygosity and no evidence of inbreeding in YNP, but the 2 subpopulations presented significant genetic differentiation. All DSY samples were assigned to one genetic cluster or phylogenetic clade, indicating that the DSY subpopulation is monophyletic. However, members of the YNP subpopulation were allocated to diverse lineages, and some YNP samples were partly assigned to the same cluster or clade as DSY individuals. We discuss potential evolutionary scenarios in which the observed population genetic structuring may have evolved. Based on our genetic results, the DSY and YNP subpopulations should be considered 2 separate management units and gene flow between both parts should be promoted.
Subjects
conservation | Formosan black bear | genetic differentiation | genetic diversity | genetic structure | microsatellite | noninvasive DNA sampling | Ursus thibetanus formosanus
Type
journal article

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