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Diversity Differentiation and Linkage Disequilibrium: Prospects for Association Mapping in the Malaria Vector Anopheles arabiensis

机译:多样性分化和链接不平衡:疟疾媒介按蚊中的关联映射的前景。

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摘要

Association mapping is a widely applied method for elucidating the genetic basis of phenotypic traits. However, factors such as linkage disequilibrium and levels of genetic diversity influence the power and resolution of this approach. Moreover, the presence of population subdivision among samples can result in spurious associations if not accounted for. As such, it is useful to have a detailed understanding of these factors before conducting association mapping experiments. Here we conducted whole-genome sequencing on 24 specimens of the malaria mosquito vector, Anopheles arabiensis, to further understanding of patterns of genetic diversity, population subdivision and linkage disequilibrium in this species. We found high levels of genetic diversity within the An. arabiensis genome, with ~800,000 high-confidence, single- nucleotide polymorphisms detected. However, levels of nucleotide diversity varied significantly both within and between chromosomes. We observed lower diversity on the X chromosome, within some inversions, and near centromeres. Population structure was absent at the local scale (Kilombero Valley, Tanzania) but detected between distant populations (Cameroon vs. Tanzania) where differentiation was largely restricted to certain autosomal chromosomal inversions such as 2Rb. Overall, linkage disequilibrium within An. arabiensis decayed very rapidly (within 200 bp) across all chromosomes. However, elevated linkage disequilibrium was observed within some inversions, suggesting that recombination is reduced in those regions. The overall low levels of linkage disequilibrium suggests that association studies in this taxon will be very challenging for all but variants of large effect, and will require large sample sizes.
机译:关联映射是一种广泛应用的方法,用于阐明表型性状的遗传基础。但是,诸如连锁不平衡和遗传多样性水平等因素会影响此方法的功能和解决方案。此外,如果不加以考虑,样本中人口细分的存在会导致虚假关联。因此,在进行关联映射实验之前对这些因素有详细的了解是很有用的。在这里,我们对24种疟疾蚊媒,即阿拉伯按蚊(Anopheles arabiensis)标本进行了全基因组测序,以进一步了解该物种的遗传多样性,种群细分和连锁不平衡的模式。我们在An内发现了高水平的遗传多样性。阿拉伯基因组,检测到约80万个高信度,单核苷酸多态性。但是,核苷酸多样性水平在染色体内和染色体之间均存在显着差异。我们观察到X染色体上,某些倒位内和着丝粒附近的多样性较低。局部规模(坦桑尼亚的基洛贝洛谷地)不存在种群结构,但在远距离种群(喀麦隆与坦桑尼亚)之间发现了种群结构,在这些种群之间的分化主要局限于某些常染色体染色体倒置,例如2Rb。总体而言,An内部的连锁不平衡。阿拉伯半岛所有染色体的衰减非常快(200 bp以内)。但是,在一些倒位中观察到升高的连锁不平衡,表明这些区域的重组减少。总体而言,连锁不平衡的水平较低,这表明该分类单元中的关联研究对于具有较大影响的变体(除了变异较大的所有变体)将是非常具有挑战性的,并且需要大样本量。

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