4.7 Article

Impacts of Chronic Habitat Fragmentation on Genetic Diversity of Natural Populations of Prunus persica in China

期刊

PLANTS-BASEL
卷 11, 期 11, 页码 -

出版社

MDPI
DOI: 10.3390/plants11111458

关键词

Prunus persica; wild population; microsatellites; habitat fragmentation; genetic diversity

资金

  1. Science and Technology Service, Chinese Academy of Sciences [KFJ-EW-STS-07]

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The fragmented distribution of wild peach due to human disturbance and geographic isolation has affected genetic variation and genetic structure. Habitat fragmentation has led to a decrease in gene flow and impacted the genetic diversity of Prunus persica populations.
Wild peach is an important resource for improving existing peach varieties. However, the extant populations of wild peach show fragmented distribution due to human disturbance and geographic isolation. In this study, we used natural populations (or wild populations) of Prunus persica (Rosaceae) to assess the genetic effects of habitat fragmentation. A total of 368 individuals sampled from 16 natural populations were analyzed using 23 polymorphic simple sequence repeat (SSR) markers. Prunus persica maintained low within-population genetic variation and high level of genetic differentiation. Two genetic clusters were revealed based on three different methods (UPGMA, PCoA, and STRUCTURE). All populations showed a significant heterozygosity deficiency and most extant populations experienced recent reduction in population size. A significant isolation by distance (IBD) was observed with Mantel's test. Compared to historical gene flow, contemporary gene flow was restricted among the studied populations, suggesting a decrease in gene flow due to habitat fragmentation. Habitat fragmentation has impacted population genetic variation and genetic structure of P. persica. For breeding and conservation purpose, collecting as many individuals as possible from multiple populations to maximize genetic diversity was recommended during the process of germplasm collection. In addition, populations from central China had higher genetic diversity, suggesting these populations should be given priority for conservation and germplasm collection.

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