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Technical systems for life sciences

机译:生命科学技术系统

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摘要

Dispersal greatly determines genetic structure of populations, although it is influenced by landscape heterogeneity, quality of the matrix, resource distribution and local population densities and dynamics. To get insights into some of those processes we analysed the genetic structure of the hairy-footed gerbil Gerbillurus paeba (Rodentia, Murinae, Gerbillinae) in the southern Kalahari (South Africa). Samples were taken from 20 populations covering an area of about 2200 km2. Genetic data were related to landscape characters and population dynamics. We used newly developed microsatellites and found at all loci some indication for the presence of null alleles. However, null alleles seem to have little influence on the general results of our analyses. Altogether we found even nearby populations of G. paeba to be significantly differentiated, although assignment tests revealed 24% of individuals as immigrants. Genetic structure was independent of landscape heterogeneities at all spatial scales. Autocorrelation analyses (range 50–90 km) revealed significant genetic structure within populations on distances <3 km. We found some indication for female-biased dispersal. Our study suggests that dispersing individuals have little influence on the long-term genetic structure and that drift is the major cause of genetic diversity. The observed genetic pattern likely derives from strong population fluctuations of G. paeba. The landscape structure has little influence on the genetic differentiation between populations.
机译:分散极大地决定了种群的遗传结构,尽管它受到景观异质性,基质质量​​,资源分布以及当地种群密度和动态的影响。为了深入了解其中的某些过程,我们分析了卡拉哈里南部(南非)长毛沙鼠沙鼠的遗传结构(啮齿类,鼠科,沙鼠科)。从覆盖约2200 km2的20个种群中取样。遗传数据与景观特征和种群动态有关。我们使用了新开发的微卫星,并在所有基因座上发现了存在无效等位基因的一些迹象。但是,无效等位基因似乎对我们分析的总体结果影响很小。尽管赋值测试显示24%的人是移民,但我们甚至发现附近的G.paeba人群也有显着差异。遗传结构在所有空间尺度上均与景观异质性无关。自相关分析(范围为50-90 km)揭示了在小于3 km的距离内种群内部具有明显的遗传结构。我们发现女性偏向分散的迹象。我们的研究表明,分散的个体对长期遗传结构影响很小,漂移是遗传多样性的主要原因。观察到的遗传模式很可能是由Pa.bae的强烈种群波动引起的。景观结构对种群之间的遗传分化影响很小。

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