遗传多样性
濒危物种
生物
亚洲象
近亲繁殖
人口
人口瓶颈
保护遗传学
生态学
有效人口规模
基因流
线粒体DNA
进化生物学
遗传结构
微卫星
动物
圈养繁殖
迁地保护
群体遗传学
原位保护
基因库
生物多样性
地理
遗传变异
野生动物保护
濒危物种
保护生物学
旗舰物种
作者
Xing Yun,Jingshan Wang,Xu Li,Bin Wang,Shaobing Yang,Dusu Wen,Weibin Wang,Ruobing Han
摘要
ABSTRACT The Asian elephant ( Elephas maximus ), a crucial flagship and umbrella species in forest ecosystems, possesses significant conservation value. However, it has been categorized as endangered due to several factors, including land use change, human disturbance, and climate change. To evaluate the genetic diversity of Chinese Asian elephant populations and provide a scientific basis for the establishment of the Asian Elephant National Park, microsatellite and mitochondrial DNA analyses were conducted on seven populations distributed across Yunnan Province, China. A total of 121 unique genotypes and five mitochondrial DNA (mtDNA) haplotypes were identified. The results revealed that all populations exhibited varying degrees of inbreeding, with the Mengla population showing the highest inbreeding levels. Significant genetic differentiation was observed between the Mengla and other populations. Interestingly, the Yexianggu population exhibits relatively high genetic diversity despite having undergone a population bottleneck and exhibited significant heterozygote excess. Nevertheless, the overall genetic diversity of Chinese Asian elephants remains relatively low compared to that of populations in other countries. To ensure the long‐term viability of the Nangunhe population, it is imperative to facilitate gene flow between this and other populations. Finally, based on geographic subdivision analysis, we propose that the seven Asian elephant populations should be considered as three conservation management units, namely unit 1 (Nangunhe), unit 2 (Mengla), and unit 3 (Yexianggu, Mengman, Puwen, Kongge, and Menga). This study provides a solid reference for the scientific conservation of the Asian elephant in the future.
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