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A genetic linkage map of the vervet monkey (Chlorocebus aethiops sabaeus)

机译:黑长尾猴(Chlorocebus aethiops sabaeus)的遗传连锁图谱

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The spectacular progress in genomics increasingly highlights the importance of comparative biology in biomedical research. In particular, nonhuman primates, as model systems, provide a crucial intermediate between humans and mice. The close similarities between humans and other primates are stimulating primate studies in virtually every area of biomedical research, including development, anatomy, physiology, immunology, and behavior. The vervet monkey (Chlorocebus aethiops sabaeus) is an important model for studying human diseases and complex traits, especially behavior. We have developed a vervet genetic linkage map to enable mapping complex traits in this model organism and facilitate comparative genomic analysis between vervet and other primates. Here we report construction of an initial genetic map built with about 360 human orthologous short tandem repeats (STRs) that were genotyped in 434 members of an extended vervet pedigree. The map includes 226 markers mapped in a unique order with a resolution of 9.8 Kosambi centimorgans (cM) in the vervet monkey genome, and with a total length (including all 360 markers) of 2726 cM. At least one complex and 11 simple rearrangements in marker order distinguish vervet chromosomes from human homologs. While inversions and insertions can explain a similar number of changes in marker order between vervet and rhesus homologs, mostly inversions are observed when vervet chromosome organization is compared to that in human and chimpanzee. Our results support the notion that large inversions played a less prominent role in the evolution within the group of the Old World monkeys compared to the human and chimpanzee lineages.
机译:基因组学的惊人进步日益凸显了比较生物学在生物医学研究中的重要性。特别地,作为模型系统的非人类灵长类动物在人类和小鼠之间提供了至关重要的中间产物。人类与其他灵长类动物之间的相似性正在刺激生物医学研究几乎每个领域的灵长类动物研究,包括发育,解剖学,生理学,免疫学和行为学。黑长尾猴(Chlorocebus aethiops sabaeus)是研究人类疾病和复杂特征特别是行为的重要模型。我们已经开发了一种黑尾藻遗传连锁图谱,可以在该模型生物中绘制复杂的性状,并促进黑尾藻与其他灵长类动物的比较基因组分析。在这里,我们报告了一个初步的遗传图谱的构建,该图谱由大约360个人类直系同源短串联重复序列(STR)构建而成,这些序列在扩展的黑长绒谱系的434个成员中进行了基因分型。该图包括以唯一顺序映射的226个标记,黑绒猴基因组中的分辨率为9.8 Kosambi centimorgans(cM),总长度(包括所有360个标记)为2726 cM。按标记顺序至少有一个复杂的序列和11个简单的重排序列可以将黑角染色体与人类同源物区分开。虽然倒置和插入可以解释黑尾藜和恒河猴同源物之间标记顺序变化的相似数量,但是当将黑尾藻的染色体组织与人类和黑猩猩的染色体组织进行比较时,大多数观察到倒置。我们的研究结果支持这样的观点,即与人类和黑猩猩的血统相比,大倒置在旧世界猴群内的进化中起的作用较小。

著录项

  • 来源
    《Mammalian Genome 》 |2007年第5期| 347-360| 共14页
  • 作者单位

    Center for Neurobehavioral Genetics The Jane and Terry Semel Institute for Neuroscience and Human Behavior University of California Los Angeles California 90095 USA;

    Center for Neurobehavioral Genetics The Jane and Terry Semel Institute for Neuroscience and Human Behavior University of California Los Angeles California 90095 USA;

    Center for Neurobehavioral Genetics The Jane and Terry Semel Institute for Neuroscience and Human Behavior University of California Los Angeles California 90095 USA;

    Center for Neurobehavioral Genetics The Jane and Terry Semel Institute for Neuroscience and Human Behavior University of California Los Angeles California 90095 USA;

    Center for Neurobehavioral Genetics The Jane and Terry Semel Institute for Neuroscience and Human Behavior University of California Los Angeles California 90095 USA;

    Department of Human Genetics University of California Los Angeles California 90095 USA;

    Center for Primate Neuroethology The Jane and Terry Semel Institute for Neuroscience and Human Behavior University of California Los Angeles California 90095 USA;

    Center for Primate Neuroethology The Jane and Terry Semel Institute for Neuroscience and Human Behavior University of California Los Angeles California 90095 USA;

    Center for Primate Neuroethology The Jane and Terry Semel Institute for Neuroscience and Human Behavior University of California Los Angeles California 90095 USA;

    Center for Primate Neuroethology The Jane and Terry Semel Institute for Neuroscience and Human Behavior University of California Los Angeles California 90095 USA;

    Research Institute of McGill University Health Centre McGill University and Genome Québec Innovation Centre and Departments of Human Genetics and Experimental Medicine McGill University Montréal Québec H3A 1A1 Canada;

    Research Institute of McGill University Health Centre McGill University and Genome Québec Innovation Centre and Departments of Human Genetics and Experimental Medicine McGill University Montréal Québec H3A 1A1 Canada;

    Departments of Psychiatry and Human Genetics McGill University Montréal H3A 1A1 Québec Canada;

    Center for Neurobehavioral Genetics The Jane and Terry Semel Institute for Neuroscience and Human Behavior University of California Los Angeles California 90095 USA;

    Center for Neurobehavioral Genetics The Jane and Terry Semel Institute for Neuroscience and Human Behavior University of California Los Angeles California 90095 USA;

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