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首页> 外文期刊>Marine ecology progress series >Comparative phylogeography of four Indo-Pacific moray eel species (Muraenidae) reveals comparable ocean-wide genetic connectivity despite five-fold differences in available adult habitat
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Comparative phylogeography of four Indo-Pacific moray eel species (Muraenidae) reveals comparable ocean-wide genetic connectivity despite five-fold differences in available adult habitat

机译:四种印度洋-太平洋海ray物种(Muraenidae)的比较系统地理学揭示了可比较的海洋遗传连通性,尽管可用成年栖息地差异五倍

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摘要

Most coral reef fishes have non-migratory adults and depend on a pelagic larval stage for dispersal. Species with long pelagic larval duration (PLD) can have tremendous dispersal potential and thus display little geographic-genetic differentiation among reef habitats. Restricted adult niche breadth due to habitat specialization can have the opposite effect of fragmenting populations and increasing geographic-genetic differentiation. If long PLD suffices to ensure widespread gene flow among reef populations, we predict similar geographic-genetic homogeneity within species whose adults differ in niche breadth. We tested this hypothesis using a comparative phylogeographic study of 4 sympatric moray eel species that differ in the amount of available habitat within their reported ranges. We generated molecular genetic data for Echidna nebulosa (N = 79) and Gymnomuraena zebra (N = 67) to measure geographic-genetic structure within these species/whose adult habitat is very restricted for moray eels, and compared these results to identical measurements previously published for habitat generalists Gymnothorax undulatus and Gymnothorax flavimarginatus. These 4 species share an ocean-wide distribution with adults occupying the same reefs; however, adults of E. nebulosa and G. zebra are restricted to shallow waters and occupy only 20% of the area occupied by the Gymnothorax species. Mitochondrial (632 bp of cytochrome b and 596 bp of cytochrome oxidase I) genomic sequences revealed high genetic variation (h = 0.995 to 0.998) and low geographic-genetic differentiation (pairwise Φ_(ST) < 0.07 and not significant) for each species across 22 000 km of the Indo-Pacific. Nuclear genomic sequences (420 bp of RAG-1 and 746 bp of RAG-2) demonstrated 16 to 25 haplotypes per marker within each species with minimal geographic-genetic differentiation among populations. This suggests that in cosmopolitan and highly dispersive species such as morays, larval life history can ensure widespread gene flow despite a 5-fold difference in the habitat breadth occupied by adult populations.
机译:大多数珊瑚鱼成年后不迁徙,它们依赖上层幼体阶段进行扩散。上层幼体持续时间长的物种可能具有巨大的扩散潜力,因此在珊瑚生境之间几乎没有地理遗传差异。由于栖息地专业化而导致的成虫生态位宽度受到限制,可能产生使种群破碎和增加地理遗传分化的相反作用。如果长的PLD足以确保礁石种群之间广泛的基因流动,我们预测其成虫在利基宽度上不同的物种内的地理遗传同质性。我们使用对4种同养海鳗物种的比较系统地理学研究对这一假设进行了检验,这些物种在其报告范围内的可用栖息地数量有所不同。我们生成了针E(N = 79)和斑Gym(Gymnomuraena斑马(N = 67))的分子遗传数据,以测量这些物种中的地理遗传结构/成年栖息地对海ray非常受限制,并将这些结果与先前发表的相同测量结果进行了比较。适用于栖息地通体Gymnothorax undulatus和Gymnothorax flavimarginatus。这4个物种在整个海洋中分布,成年者占据相同的礁石;然而,E。nebulosa和G.zebra的成虫只限于浅水域,仅占Gymnothorax物种所占面积的20%。线粒体(细胞色素b的632 bp和细胞色素氧化酶I的596 bp)的基因组序列揭示了每个物种的高遗传变异(h = 0.995至0.998)和低地理遗传分化(成对Φ_(ST)<0.07,不显着)。距印度太平洋22000公里。核基因组序列(RAG-1的420 bp和RAG-2的746 bp)在每个物种内每个标记显示16至25个单倍型,种群间的地理遗传差异最小。这表明在国际化和高度分散的物种(例如海鳗)中,幼虫的生活史可以确保广泛的基因流,尽管成年种群所占据的栖息地广度相差5倍。

著录项

  • 来源
    《Marine ecology progress series》 |2011年第2011期|p.269-277|共9页
  • 作者单位

    Washington University in St. Louis, Department of Biology, Campus Box 1137, One Brookings Drive, St. Louis,Missouri 63130, USA,Present address: University of California at Santa Cruz, 100 Schaffer Road, Santa Cruz, California 95062, USA;

    Hawaii Institute of marine Biology, PO Box 1346, Kaneohe, Hawaii 96744, USA;

    Smithsonian Institution, Museum Support Center MRC 534, 4210 Silver Hill Road, Suitland, maryland 20746, USA;

    Washington University in St. Louis, Department of Biology, Campus Box 1137, One Brookings Drive, St. Louis,Missouri 63130, USA;

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

    gene flow; phylogeography; connectivity; reef fish; leptocephalus; moray eel;

    机译:基因流系谱学;连接性;礁鱼;小脑海鳗;

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