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首页> 外文期刊>The Science of the Total Environment >Water mass-driven spatial effects and environmental heterogeneity shape microeukaryote biogeography in a subtropical, hydrographically complex ocean system - A case study of ciliates
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Water mass-driven spatial effects and environmental heterogeneity shape microeukaryote biogeography in a subtropical, hydrographically complex ocean system - A case study of ciliates

机译:亚热带水文复杂海洋系统中水质驱动的空间效应和环境异质性形状微真核生物的生物地理学—纤毛虫的案例研究

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摘要

The relative importance of geographic distance and depth in shaping microeukaryote community composition on a regional scale remains unclear, especially how that composition is related to the movement of water masses. Here, we collected 156 water samples across the Taiwan Strait, which is characterized by complex topography and dynamic circulation, to investigate the composition of the ciliate community with high-throughput sequencing of the 18S rRNA gene transcript. Ciliate alpha diversity exhibited strong correlations with water chemistry, food abundance, and geographic distance; approximately 50% of the variance of the diversity could be explained by dissolved oxygen concentrations, chlorophyll a concentrations, bacterial abundance, and latitude. The sampling sites could be divided into three provinces based on the compositions of the ciliate communities, which exhibited a distinctly nonuniform spatial distribution pattern on a regional scale (587 km). Geographic distance, environmental conditions, and depth were identified as principal determinants of the ciliate community within the Strait. Geographic distance was the most influential factor. The effect of geographic distance seems to mainly reflect the movement of water masses that strongly constrain dispersal and contribute to environmental heterogeneity that accounts for 86.0% and 5.5%, respectively, of community variance across the Strait. Overall, this study revealed that ciliate biogeography as a function of depth and environmental gradients is linked on a regional scale to the water masses that the ciliates inhabit. This result expands our knowledge of the drivers of microeukaryote community composition across regions within which there are water mass movements and strong spatial and environmental gradients.
机译:尚不清楚地理距离和深度在区域规模上塑造微型真核生物群落组成的相对重要性,特别是该组成与水团的运动如何相关。在这里,我们收集了台湾海峡两岸的156个水样,这些水样以复杂的地形和动态环流为特征,通过18S rRNA基因转录本的高通量测序研究了纤毛虫群落的组成。纤毛虫的α多样性与水化学,食物丰度和地理距离密切相关。大约50%的多样性差异可以通过溶解氧浓度,叶绿素a浓度,细菌丰度和纬度来解释。根据纤毛虫群落的组成,可将采样点分为三个省,这在区域尺度(587 km)上表现出明显不均匀的空间分布格局。地理距离,环境条件和深度被确定为海峡内纤毛虫群落的主要决定因素。地理距离是影响最大的因素。地理距离的影响似乎主要反映了强烈限制水体扩散并促进环境异质性的水团运动,水异质性分别占海峡两岸群落变化的86.0%和5.5%。总体而言,这项研究表明,纤毛虫的生物地理学与深度和环境梯度的关系在区域范围内与纤毛虫所栖息的水团有关。这一结果扩展了我们对水质运动以及强烈的空间和环境梯度的区域内微真核生物群落组成驱动因素的认识。

著录项

  • 来源
    《The Science of the Total Environment》 |2020年第1期|135753.1-135753.14|共14页
  • 作者单位

    Key Laboratory of the Ministry of Education for Coastal and Wetland Ecosystem College of the Environment and Ecology Xiamen University. Xiamen 361102 China Fujian Provincial Key Laboratory for Coastal Ecology and Environmental Studies Xiamen University Xiamen 361102 China;

    Department of Environmental Sciences School of the Coast and Environment Louisiana State University Baton Rouge LA 70803 USA;

    Fujian Provincial Key Laboratory for Coastal Ecology and Environmental Studies Xiamen University Xiamen 361102 China;

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

    Microorganism; Biogeography; Ocean current; Geographic distance; Depth;

    机译:微生物;生物地理学;海流;地理距离;深度;

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