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Genetic variation and structuring in the threatened koala populations of Southeast Queensland

机译:昆士兰东南部濒危考拉种群的遗传变异和结构

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Habitat fragmentation can act to cause reproductive isolation between conspecifics and undermine species’ persistence, though most studies have reported the genetic condition of populations that have already declined to a very small size. We examined genetic diversity within the vulnerable, declining koala (Phascolarctos cinereus) population in Southeast Queensland, Australia to determine the genetic impact of ongoing threatening processes. Five hundred and twelve koalas from ten Southeast Queensland Local Government Areas on the mainland and one island were genotyped at six polymorphic microsatellite loci. Based on Bayesian cluster analysis incorporating spatial data, the regional koala population was subdivided into six clusters, with location of major roads and rivers appearing to be consistent with being barriers to gene flow. The distribution of mtDNA control region haplotypes identified distinct coastal and inland clades suggesting that historically there was gene flow between koalas along the coast (though little interchange between coastal and inland animals). In contrast, koalas from the Koala Coast (Brisbane City, Logan City and Redland Shire) were shown by microsatellite analysis to be genetically distinct from adjacent areas. It is likely, therefore, that more recent reductions in population size and restricted gene flow through urbanisation have contributed to the genetic differentiation of koalas in the Koala Coast region.
机译:生境破碎化可导致种间繁殖隔离,破坏物种的持久性,尽管大多数研究报告说,已经减少到很小规模的种群遗传条件。我们检查了澳大利亚昆士兰州东南部脆弱的,数量下降的树袋熊(Phascolarctos cinereus)种群内的遗传多样性,以确定持续威胁过程的遗传影响。在六个多态微卫星基因座上对来自大陆十个昆士兰东南地方政府区域和一个岛屿的512只无尾熊进行了基因分型。基于结合空间数据的贝叶斯聚类分析,该地区的考拉种群被细分为六个聚类,主要道路和河流的位置似乎与基因流动的障碍相吻合。 mtDNA控制区单倍型的分布确定了不同的沿海和内陆进化枝,这表明历史上沿海岸的考拉之间存在基因流(尽管沿海和内陆动物之间很少有互换性)。相反,通过微卫星分析显示,来自考拉海岸(布里斯班市,洛根市和雷德兰郡)的考拉在遗传上与邻近地区不同。因此,最近人口减少和城市化带来的基因流受限,可能导致了考拉海岸地区考拉的遗传分化。

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