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Genetic diversity and population structure in Elephantopus scaber (Asteraceae) from South China as revealed by ISSR markers
Authors:L Wang  J Liu  S Jian  W Zhang  Q Wang  X Zhao
Institution:1. Ministry of Education Key Laboratory for Biodiversity Science and Ecological Engineering, School of Life Sciences , Fudan University , Shanghai, China;2. Ministry of Education Key Laboratory for Biodiversity Science and Ecological Engineering, School of Life Sciences , Fudan University , Shanghai, China;3. Biotechnology Research Institute, Yunnan Academy of Agricultural Sciences , Kunming, China;4. South China Botanical Garden, Chinese Academy of Sciences , Guangzhou, China
Abstract:Abstract

We used inter-simple sequence repeat (ISSR) markers to investigate genetic variation in eight natural populations of Elephantopus scaber from South China, including Guangdong, Hainan and Hong Kong. Eleven primers produced 247 bands across all 184 individuals, of which 243 (98.4%) were polymorphic. The average genetic diversity at the species and population levels was estimated to be 0.283 and 0.103, respectively, using mean expected heterozygosity. The average gene differentiation (F ST) among populations was 0.725. AMOVA analysis showed that the partition of molecular variation between and within populations was 72.5% and 27.5%, respectively. The effective number of migrants among populations based on the F ST was relatively low (N m = 0.095). Cluster analysis based on Nei's genetic distance and the neighbour-joining method revealed the genetic relationships among the populations of E. scaber. The Mantel test indicated that there was no significant correlation between population genetic and geographic distances. The results obtained from the AMOVA analysis, the cluster analysis, and the Mantel test all suggested that fragmented local environments and human disturbance might play important roles in shaping the population structure of E. scaber.
Keywords:Elephantopus scaber  genetic diversity  ISSR  population structure
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