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Biogeochemical water type influences community composition, species richness, and biomass in megadiverse Amazonian fish assemblages

机译:生物地球化学水型影响群落成分,物种丰富,和巨大的生物量亚马逊鱼组合

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摘要

Amazonian waters are classified into three biogeochemical categories by dissolved nutrient content, sediment type, transparency, and acidity—all important predictors of autochthonous and allochthonous primary production (PP): (1) nutrient-poor, low-sediment, high-transparency, humic-stained, acidic blackwaters; (2) nutrient-poor, low-sediment, high-transparency, neutral clearwaters; (3) nutrient-rich, low-transparency, alluvial sediment-laden, neutral whitewaters. The classification, first proposed by Alfred Russel Wallace in 1853, is well supported but its effects on fish are poorly understood. To investigate how Amazonian fish community composition and species richness are influenced by water type, we conducted quantitative year-round sampling of floodplain lake and river-margin habitats at a locality where all three water types co-occur. We sampled 22,398 fish from 310 species. Community composition was influenced more by water type than habitat. Whitewater communities were distinct from those of blackwaters and clearwaters, with community structure correlated strongly to conductivity and turbidity. Mean per-sampling event species richness and biomass were significantly higher in nutrient-rich whitewater floodplain lakes than in oligotrophic blackwater and clearwater river-floodplain systems and light-limited whitewater rivers. Our study provides novel insights into the influences of biogeochemical water type and ecosystem productivity on Earth’s most diverse aquatic vertebrate fauna and highlights the importance of including multiple water types in conservation planning.
机译:亚马逊水域通过溶解营养含量,沉积物类型,透明度和酸度分为三种生物地球化学类别 - 所有重要的预测因子的自身加重和表发初级产量(PP):(1)营养不良,低沉积物,高透明度,腐殖质 - 酸性酸性黑水; (2)营养不良,低沉积物,高透明度,中性透明度; (3)营养丰富,低透明度,加蓝沉积物,中性白水。本分类首次由Alfred Russel Wallace于1853年提出,得到了很好的支持,但它对鱼类的影响很差。为了调查亚马逊鱼群组成和物种丰富性的影响受水类型的影响,我们在所有三种水类型共同发生的地方进行了洪泛湖和河流栖息地的定量全年抽样。从310种,我们抽出了22,398条鱼。社区组成受水类型的影响而不是栖息地。白水社区与黑水和透明人员不同,社区结构强烈地与电导率和浊度相关。营养丰富的白水泛洪叶湖泊的平均每种采样事件物种富含营养丰富的白水洪水湖泊显着较高,而不是寡营养的黑水和克利尔沃特河 - 洪泛区和有限的白水河河流。我们的研究为生物地球化学水类型和生态系统生产力对地球最多样化的水生脊椎动物动物的影响提供了新的见解,并突出了包括在保护计划中包括多种水类型的重要性。

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