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首页> 外文期刊>Ecology and Evolution >The role of the Ord Arid Intrusion in the historical and contemporary genetic division of long‐tailed finch subspecies in northern Australia
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The role of the Ord Arid Intrusion in the historical and contemporary genetic division of long‐tailed finch subspecies in northern Australia

机译:干旱入侵一词在澳大利亚北部长尾雀科亚种的历史和当代遗传划分中的作用

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AbstractThe effect of separation by biogeographic features followed by secondary contact can blur taxonomic boundaries and produce complex genetic signatures. We analyzed population structure and gene flow across the range of the long-tailed finch (Poephila acuticauda) in northern Australia (1) to test the hypothesis that Ord Arid Intrusion acted as the causative barrier that led to divergence of P. acuticauda subspecies, (2) to determine whether genetic data support the presence of a gradual cline across the range or a sudden shift, both of which have been suggested based on morphological data, and (3) to estimate levels of contemporary gene flow within this species complex. We collected samples from 302 individuals from 10 localities. Analyses of 12 microsatellite loci and sequence data from 333 base pairs of the mitochondrial control region were used to estimate population structure and gene flow, using analysis of molecular variance (AMOVA), haplotype network analysis, frequency statistics, and clustering methods. Mitochondrial sequence data indicated the presence of three genetic groups (regions) across the range of P. acuticauda. Genetic diversity was highest in the east and lowest in the west. The Ord Arid Intrusion appears to have functioned as a biogeographic barrier in the past, according to mtDNA evidence presented here and evidence from previous studies. The absence of isolation by distance between adjacent regions and the lack of population genetic structure of mtDNA within regions indicates that genetic changes across the range of P. acuticauda subspecies are characterized by discrete breaks between regions. While microsatellite data indicate a complete absence of genetic structure across this species’ range, it appears unlikely that this results from high levels of gene flow. Mitochondrial data do not support the presence of contemporary gene flow across the range of this species.
机译:摘要通过生物地理特征进行分离并随后进行二次接触的效果可以模糊分类学边界并产生复杂的遗传特征。我们分析了澳大利亚北部长尾朱雀(Poephila acuticauda)范围内的种群结构和基因流(1),以检验Ord Arid Intrusion充当导致P. acuticauda亚种分化的病因壁垒的假说( 2)确定遗传数据是否支持整个范围内的渐进谱系或突变,这都是基于形态学数据提出的;以及(3)估算该物种复合体中当代基因流的水平。我们从10个地方的302个人中收集了样本。使用分子变异分析(AMOVA),单倍型网络分析,频率统计和聚类方法,通过分析线粒体控制区333个碱基对中的12个微卫星基因座和序列数据来估计种群结构和基因流。线粒体序列数据表明,在P. acuticauda范围内存在三个遗传组(区域)。遗传多样性在东部最高,在西部最低。根据此处提供的mtDNA证据和先前研究的证据,Ord Arid Intrusion过去似乎曾经是生物地理屏​​障。缺乏相邻区域之间的距离隔离以及区域内mtDNA群体遗传结构的缺乏表明,在A. P. acuticauda亚种范围内的遗传变化的特征在于区域之间的离散断裂。尽管微卫星数据表明该物种范围内完全没有遗传结构,但这似乎不太可能是由于高水平的基因流动造成的。线粒体数据不支持该物种范围内当代基因流的存在。

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