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A role for a neo-sex chromosome in stickleback speciation

机译:新性染色体在棘背物种形成中的作用

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摘要

Sexual antagonism, or conflict between the sexes, has been proposed as a driving force in both sex-chromosome turnover and speciation. Although closely related species often have different sex-chromosome systems, it is unknown whether sex-chromosome turnover contributes to the evolution of reproductive isolation between species. Here we show that a newly evolved sex chromosome contains genes that contribute to speciation in threespine stickleback fish (Gasterosteus aculeatus). We first identified a neo-sex chromosome system found only in one member of a sympatric species pair in Japan. We then performed genetic linkage mapping of male-specific traits important for reproductive isolation between the Japanese species pair. The neo-X chromosome contains loci for male courtship display traits that contribute to behavioural isolation, whereas the ancestral X chromosome contains loci for both behavioural isolation and hybrid male sterility. Our work not only provides strong evidence for a large X-effect on reproductive isolation in a vertebrate system, but also provides direct evidence that a young neo-X chromosome contributes to reproductive isolation between closely related species. Our data indicate that sex-chromosome turnover might have a greater role in speciation than was previously appreciated.
机译:已提出性拮抗或性别冲突是性染色体更新和物种形成的驱动力。尽管密切相关的物种通常具有不同的性染色体系统,但未知性染色体更新是否有助于物种间生殖隔离的进化。在这里,我们显示了一条新进化的性染色体,该基因包含有助于三脊stick鱼(Gasterosteus aculeatus)形成物种的基因。我们首先确定了仅在日本同胞物种对中的一个成员中发现的新性染色体系统。然后,我们对雄性特定性状进行了遗传连锁作图,这对日本物种对之间的生殖隔离非常重要。 neo-X染色体包含用于促成行为隔离的男性求爱显示特征的基因座,而祖先X染色体包含用于行为隔离和混合雄性不育的基因座。我们的工作不仅为脊椎动物系统中的生殖分离产生很大的X效应提供了有力的证据,而且还提供了直接的证据表明年轻的Neo-X染色体有助于密切相关物种之间的生殖分离。我们的数据表明,性染色体转换在物种形成中的作用可能比以前所认识的更大。

著录项

  • 来源
    《Nature》 |2009年第7267期|1079-1083|共5页
  • 作者单位

    Division of Human Biology, Fred Hutchinson Cancer Research Center, 1100 Fairview Avenue North, Seattle, Washington 98109, USA Department of Ecology and Evolutionary Biology, Graduate School of Life Sciences, Tohoku University, Sendai, Miyagi 980-8578, Japan;

    Division of Human Biology, Fred Hutchinson Cancer Research Center, 1100 Fairview Avenue North, Seattle, Washington 98109, USA Graduate Program in Molecular and Cellular Biology, University of Washington, Seattle, Washington 98195, USA Department of Biology, University of Maryland, College Park, Maryland 20742, USA;

    Biological Laboratory, Gifu-keizai University, Ogaki, Gifu 503-8550, Japan;

    Aqua Restoration Research Center, Public Works Research Institute, Kakamigahara, Gifu 501-6021, Japan;

    Department of Developmental Biology and Howard Hughes Medical Institute, Stanford University, Stanford, California 94305, USA;

    Department of Developmental Biology and Howard Hughes Medical Institute, Stanford University, Stanford, California 94305, USA;

    Department of Genetics and Stanford Human Genome Center, Stanford University, Stanford, California 94304, USA HudsonAlpha Institute for Biotechnology, Huntsville, Alabama 35806, USA;

    Department of Genetics and Stanford Human Genome Center, Stanford University, Stanford, California 94304, USA HudsonAlpha Institute for Biotechnology, Huntsville, Alabama 35806, USA;

    Department of Genetics and Stanford Human Genome Center, Stanford University, Stanford, California 94304, USA HudsonAlpha Institute for Biotechnology, Huntsville, Alabama 35806, USA;

    Department of Genetics and Stanford Human Genome Center, Stanford University, Stanford, California 94304, USA HudsonAlpha Institute for Biotechnology, Huntsville, Alabama 35806, USA;

    Department of Developmental Biology and Howard Hughes Medical Institute, Stanford University, Stanford, California 94305, USA;

    Division of Human Biology, Fred Hutchinson Cancer Research Center, 1100 Fairview Avenue North, Seattle, Washington 98109, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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  • 入库时间 2022-08-18 02:55:41

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