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Genetic and growth differences in the outcrossings between two clonal strains of the self-fertilizing mangrove killifish

机译:自交红树林kill鱼两个无性系之间异源的遗传和生长差异

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摘要

The populations of the only known self-fertilizing vertebrate Kryptolebias marmoratus (Poey, 1880) (formerly known as Rivulus marmoratus Poey, 1880; Cyprinodontiformes: Aplocheilidae) usually consist of different homozygous lineages; however, heterozygous individuals are found occasionally and ratios of homozygosity and heterozygosity in populations are dependent on the proportion of males. However, it is still unclear what impact male-mediated genetic diversity has on the phenotype of K. marmoratus. To clarify this, we attempted outcrossing between male and hermaphrodite of two different clonal strains with different life-history traits using artificial insemination, and examined the genotypes and growth of the hybrid F2 generation. We detected genetic differences between the two clonal strains using amplified fragment length polymorphism (AFLP) analysis with 3 primer combinations, and then obtained 11 AFLP markers. From a total of 31 artificial inseminations with two clonal strains, 1 of 13 hatched fish clearly indicated heterozygosity. The hybrid F2 generations were also heterozygous. Moreover, the growths of the hybrid F2 generation were intermediate of the parental strains from days 0 to 30. Therefore, outcrossing changes genetic architecture and the new genotypes potentially result in new phenotypes of the subsequent generations of K. marmoratus. It may also play a role in adaptation to new environments and the facilitation of local adaptation.
机译:唯一已知的自体受精脊椎动物Kryptolebias marmoratus(Poey,1880年)(以前称为Rivulus marmoratus Poey,1880年; Cyprinodontiformes:Aplocheilidae)的种群通常由不同的纯合谱系组成。但是,偶尔会发现杂合子个体,群体中纯合子和杂合子的比例取决于男性的比例。但是,目前尚不清楚男性介导的遗传多样性对沙门氏菌的表型有什么影响。为了阐明这一点,我们尝试使用人工授精在具有不同生活史特征的两种不同克隆菌株的雄性和雌雄同体之间进行异型杂交,并研究了杂交F2代的基因型和生长。我们使用3个引物组合通过扩增片段长度多态性(AFLP)分析检测了两个克隆菌株之间的遗传差异,然后获得了11个AFLP标记。在总共31种人工授精和2个克隆菌株中,有13条孵化的鱼中有1条清楚地表明了杂合性。杂种F2代也是杂合的。此外,杂种F2代的生长在第0天到第30天处于亲本菌株的中间。因此,异型遗传结构的改变和新的基因型可能导致继代K. marmoratus的新表型。它还可能在适应新环境和促进本地适应方面发挥作用。

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  • 来源
    《Canadian Journal of Zoology》 |2008年第9期|p.976-982|共7页
  • 作者单位

    Y. Nakamura and A. Hagiwara. Graduate School of Science and Technology, Nagasaki University, Bunkyo 1-14, Nagasaki 852-8521,Japan.K. Suga.1 Nagasaki Industrial Promotion Foundation, Omura Ikeda 2-1303-8, Nagasaki 856-0026, Japan.Y. Sakakura.2 Faculty of Fisheries, Nagasaki University, Bunkyo 1-14, Nagasaki 852-8521, Japan.T. Sakamoto. Department of Marine Biosciences, Tokyo University of Marine Science and Technology, Minato-ku Konan 4-5-7,Tokyo 108-8477, Japan.;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Genetic and growth;

    机译:遗传与生长;

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