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Genetic diversity of African clawless otters (Aonyx capensis) occurring in urbanised areas of Gauteng, South Africa

机译:南非城市化地区的非洲可怕水獭(Aonyx Capensis)的遗传多样性

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摘要

Genetic diversity is the basis of the evolutionary potential of species to respond to environmental changes. However, restricting the movement of species can result in populations becoming less connected which can reduce gene flow and can subsequently result in a loss of genetic diversity. Urban expansion can lead to the fragmentation of habitats which affects the ability of species to move freely between areas. In this study, the genetic diversity of the African clawless otter (Aonyx capensis) in Gauteng (South Africa) was assessed using non-invasive sampling techniques. DNA was extracted from spraint (faecal) samples collected along nine rivers and genotyped using 10 microsatellites to assess population structure and genetic diversity. Samples were grouped based on locality and by catchment to determine whether isolated subpopulations exist. Genetic diversity of A. capensis in Gauteng was found to be low (mean observed heterozygosity (Ho)=0.309). Analysis of genetic structure provides support for the otter populations being panmictic with high gene flow between populations from different rivers. Results from the study indicate that the movement of A. capensis is not affected by physical barriers in urbanised areas. However, because the genetic diversity of the species in the study area is low, these animals may not be able to cope with future environmental changes.Significance:• Genetic structure analysis of the sampled Gauteng otter population indicates the population is panmictic; however, a low level of genetic diversity in this population has also been identified and may affect how the population copes with future environmental changes.• Physical restrictions in urbanised areas do not appear to be affecting movement of the species.
机译:遗传多样性是物种对环境变化的进化潜力的基础。然而,限制物种的运动会导致群体变得较小,可以降低基因流动,随后可以导致遗传多样性丧失。城市扩张可能导致栖息地的碎片影响,影响物种在地区之间自由移动的能力。在这项研究中,使用非侵入性采样技术评估了豪登省(南非)在豪登(南非)的非洲铁龙动物(AONYX Capensis)的遗传多样性。 DNA从沿九条河流收集的捕食(粪便)样品中提取,并使用10微卫星基因分型来评估群体结构和遗传多样性。基于局部性和集水区分组样品以确定是否存在分离的亚步骤。发现高金属的遗传多样性是低(平均观察到的杂合子(HO)= 0.309)。遗传结构分析为不同河流人群之间的高基因流动提供了对胰岛群的支持。研究结果表明,城市化地区的物理障碍的影响表明A. Capensis的运动不受影响。然而,由于研究区域中物种的遗传多样性低,这些动物可能无法应对未来的环境变化。意义:•采样的高腾獭群体的遗传结构分析表明人口是持危害的;然而,还确定了该人群中遗传多样性的低水平,可能会影响人口与未来环境变化的方式。•城市化区域的物理限制似乎不会影响物种的运动。

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