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首页> 外文期刊>Marine biology >Mechanisms of dispersal and establishment drive a stepping stone community assembly on seamounts and oceanic islands
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Mechanisms of dispersal and establishment drive a stepping stone community assembly on seamounts and oceanic islands

机译:分散和建立机制在海山和海洋岛屿上驱动踏脚石社区组装

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摘要

The mechanisms driving the ecology and biodiversity of seamount communities are still unclear. Here we analyzed the distribution and species traits of reef fish species recorded over seamounts, oceanic islands, and the continental shelf of the southwestern Atlantic Ocean to understand the influence of mechanisms of dispersal and establishment in these ecosystems. Species richness did not decrease with distance from the mainland, and community composition was not related to geographic position and geological history of seamounts and oceanic islands. Similarity among sites was explained by habitat heterogeneity, shallowest depth, and distance from mainland. Inter-site isolation had a significant influence on the spatial turnover of species. All species traits related to dispersal and establishment worked as ecological filters driving the composition of communities and distribution of species along seamounts and oceanic islands. We conclude that seamount communities are closely related to those of oceanic islands, with the stepping-stones (inter-site isolation) process being the most important one shaping species composition and distribution. Establishment and dispersal mechanisms, in combination with historical sea-level fluctuations, regulate the persistence of species and the similarity of communities among adjacent and environmentally similar sites.
机译:驾驶海山社区生态和生物多样性的机制仍然不清楚。在这里,我们分析了珊瑚礁鱼类的分布和物种特征,记录在海山,海洋岛屿和西南大西洋大陆的大陆架上,了解这些生态系统中的分散和建立机制的影响。物种丰富性没有随着大陆的距离而减少,社区组成与海山和海洋岛屿的地理位置和地质史无关。栖息地的异质性,最浅的深度和大陆的距离解释了位点之间的相似性。间位间隔离对物种的空间营业额产生了重大影响。所有与分散和建立相关的物种特征曾担任生态过滤器,推动社区的组成和沿海山和海洋岛屿的物种分布。我们得出结论,海山社区与海洋岛屿密切相关,踩踏石头(位间隔离间)过程是最重要的一种成型物种组成和分布。建立和分散机制与历史海平面波动,规范物种的持续存在以及相邻和环境类似地点之间的社区的相似之处。

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  • 来源
    《Marine biology》 |2021年第7期|109.1-109.11|共11页
  • 作者单位

    Univ Fed Espirito Santo Dept Oceanog & Ecol Vitoria ES Brazil|Univ Estadual Santa Cruz Dept Ecol & Conservacao Biodiversidade Ilheus BA Brazil;

    Univ Fed Espirito Santo Dept Oceanog & Ecol Vitoria ES Brazil|Calif Acad Sci San Francisco CA 94118 USA|Univ Calif Santa Cruz Ecol & Evolutionary Biol Dept Santa Cruz CA 95064 USA;

    Univ Fed Espirito Santo Dept Oceanog & Ecol Vitoria ES Brazil;

    Univ Fed Rio de Janeiro Inst Biol Rio De Janeiro RJ Brazil|Univ Fed Rio de Janeiro SAGE COPPE Rio De Janeiro RJ Brazil;

    Univ Fed Espirito Santo Dept Oceanog & Ecol Vitoria ES Brazil;

    Univ Fed Espirito Santo Dept Oceanog & Ecol Vitoria ES Brazil;

    Univ Fed Espirito Santo Dept Oceanog & Ecol Vitoria ES Brazil;

    Univ Fed Santa Catarina Dept Ecol & Zool Florianopolis SC Brazil;

    Univ Fed Fluminense Dept Biol Marinha Niteroi RJ Brazil;

    Univ Fed Espirito Santo Dept Oceanog & Ecol Vitoria ES Brazil;

    Univ Sao Paulo Ctr Biol Marinha Sao Sebastiao SP Brazil;

    Univ Sao Paulo Ctr Biol Marinha Sao Sebastiao SP Brazil;

    Calif Acad Sci San Francisco CA 94118 USA|Univ Calif Santa Cruz Ecol & Evolutionary Biol Dept Santa Cruz CA 95064 USA;

    Univ Fed Espirito Santo Dept Oceanog & Ecol Vitoria ES Brazil|Univ Fed Rio de Janeiro Posgrad Ciencias Ambientais & Conservacao Inst Biodiversidade & Sustentabilidade Nucleo Ecol & Desenvolvimento Ambiental Macae Macae RJ Brazil;

    Univ Fed Espirito Santo Dept Oceanog & Ecol Vitoria ES Brazil;

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