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Shelf and deep-water benthic macrofauna assemblages from the western Gulf of Mexico: Temporal dynamics and environmental drivers

机译:来自墨西哥西部海湾的货架和深水底栖宏观传染料:时间动态和环境司机

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摘要

Shelf and deep-water soft-bottom macrofauna were explored in the western Gulf of Mexico in terms of species and functional trait assemblages. Their variation was analysed as functions of depth and time, and the relationship with sea-bottom environmental conditions was examined to disentangle their association with potential environmental drivers. Four consecutive cruises (two per year, at the end of the dry and rainy seasons) were performed during 2016-2017 at 27 fixed stations distributed from 42 to 3565 m depth. Changes in macrofauna composition were tested considering species and functional trait assemblages. Environmental variables associated with sediment features (i.e., grain structure, organic matter, pH, redox), oceanographic conditions (i.e., temperature, dissolved oxygen, particulate organic carbon flux) and potential contaminants (i.e., hydrocarbons and metals) were analysed to identify potential drivers that would shape the structure of macrofauna assemblages. The results suggest that the structures of both species and functional trait assemblages change according to depth and show temporal variation in composition at seasonal and interannual scales. The effect of temporal variation represented about 12% of total variation in the assemblages (11.4 for species and 12.5% for functional-traits). Different patterns of spatial and temporal variation between shelf and deep benthic communities were observed. Variation in species assemblages on the shelf were related to the variation in lead, polycyclic aromatic hydrocarbons and the fine sand ratio. In the deep benthos, particulate carbon flux showed high correlation with the spatial and temporal variation in species assemblage. In the deep benthos the changes in the species assemblage between the dry and the rainy seasons and the interannual variation were highly correlated with particulate organic carbon input in the area.
机译:在物种和功能性特质组合方面,在墨西哥西部墨西哥州探索了货架和深水软底宏过。分析了它们的变化作为深度和时间的职能,并检查了与海底环境条件的关系,以解除与潜在的环境司机的关联。在2016-2017期间,在2016-2017的27个固定站点以42至3565米深度分配的27个固定站进行了四次连续巡航(每年两个,在干燥和雨季结束时)。考虑到物种和功能性状组合的测试中测试了大类组合物的变化。分析了与沉积物特征相关的环境变量(即晶粒结构,有机物,pH,氧化还原),海洋条件(即,温度,溶解氧,颗粒状有机碳通量)和潜在的污染物(即,碳氢化合物和金属)以识别潜力将塑造宏过组件结构的司机。结果表明,两种物种和功能性状组合的结构根据深度变化,并在季节性和际尺度上显示了组合物的时间变化。时间变化的效果表示组件中总变化的约12%(物种11.4,功能性状的12.5%)。观察到架子和深底栖社区之间的不同空间和时间变化模式。架子上的物种组装的变化与铅,多环芳烃和细砂比的变化有关。在深度底栖体中,颗粒碳通量显示出与物种组合的空间和时间变化高的相关性。在深度弯曲中,干燥和雨季之间的物种组合的变化与该地区的颗粒有机碳投入高度相关。

著录项

  • 来源
    《Marine Environmental Research》 |2021年第3期|105241.1-105241.9|共9页
  • 作者单位

    Univ Autonoma Carmen Fac Ciencias Nat Ciudad del Carmen Campeche Mexico;

    El Colegio Frontera Sur Lab Biodiversidad Marina & Cambio Climat Lerma Campeche Campeche Mexico;

    Univ Nacl Autonoma Mexico Escuela Nacl Estudios Super Merida Yucatan Mexico;

    Univ Nacl Autonoma Mexico Fac Quim Unidad Quim Sisal Sisal Yucatan Mexico|Inst Politecn Nacl Lab Geoquim Marina Unidad Merida CINVESTAV Merida Yucatan Mexico;

    Univ Nacl Autonoma Mexico Fac Ciencias Sisal Yucatan Mexico;

  • 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);
  • 原文格式 PDF
  • 正文语种 eng
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