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The Laboratory Domestication of Zebrafish: From Diverse Populations to Inbred Substrains

机译:斑马鱼的实验室归驯售:从不同的人群到近交底有

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We know from human genetic studies that practically all aspects of biology are strongly influenced by the genetic background, as reflected in the advent of "personalizedmedicine." Yet, with few exceptions, this is not taken into account when using laboratory populations as animal model systems for research in these fields. Laboratory strains of zebrafish (Danio rerio) are widely used for research in vertebrate developmental biology, behavior, and physiology, for modeling diseases, and for testing pharmaceutic compounds in vivo. However, all of these strains are derived from artificial bottleneck events and therefore are likely to represent only a fraction of the genetic diversity present within the species. Here, we use restriction site-associated DNA sequencing to genetically characterize wild populations of zebrafish from India, Nepal, and Bangladesh, and to compare themto previously published data on four common laboratory strains. We measured nucleotide diversity, heterozygosity, and allele frequency spectra, and find that wild zebrafish are much more diverse than laboratory strains. Further, in wild zebrafish, there is a clear signal of GC-biased gene conversion that is missing in laboratory strains. We also find that zebrafish populations in Nepal and Bangladesh are most distinct from all other strains studied, making theman attractive subject for future studies of zebrafish population genetics andmolecular ecology. Finally, isolates of the same strains kept in different laboratories show a pattern of ongoing differentiation into genetically distinct substrains. Together, our findings broaden the basis for future genetic, physiological, pharmaceutic, and evolutionary studies in Danio rerio.
机译:我们从人类遗传研究中知道,实际上生物学的所有方面都受到遗传背景的强烈影响,如“个性化医学的出现”所反映。然而,少数例外情况下,在使用实验室人群作为这些领域的研究中的动物模型系统时,不会考虑这一点。斑马鱼(Danio Rerio)的实验室株(Danio Rerio)广泛用于脊椎动物发育生物学,行为和生理学的研究,用于造型疾病,以及用于体内测试药物化合物。然而,所有这些菌株来自人工瓶颈事件,因此可能仅代表物种内存在的遗传多样性的一小部分。在这里,我们使用限制性位点相关的DNA测序来从印度,尼泊尔和孟加拉国遗传表征斑马鱼的野生种群,并将它们与先前公布的四个公共实验室菌株进行比较。我们测量核苷酸多样性,杂合性和等位基因频谱,发现野生斑马鱼比实验室菌株更多样化。此外,在野性斑马鱼中,存在在实验室菌株中缺失的GC偏置基因转化的明显信号。我们还发现尼泊尔和孟加拉国的斑马鱼种群与所学习的所有其他菌株最截然不同,使Zebrafish人口遗传学和分散生态学的未来研究有吸引力的主题。最后,在不同实验室中保持的相同菌株的分离物显示出持续分化的模式,进入遗传上不同的基底。我们的研究结果在一起拓宽了Danio Rerio的未来遗传,生理学,药学和进化研究的基础。

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