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首页> 外文期刊>Hydrobiologia >Use of phytoplankton functional groups as a model of spatial and temporal patterns in reservoirs: a case study in a reservoir of central Brazil
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Use of phytoplankton functional groups as a model of spatial and temporal patterns in reservoirs: a case study in a reservoir of central Brazil

机译:浮游植物功能群体作为水库空间和时间模式模型的模型:巴西中部水库的案例研究

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摘要

We analyzed the temporal (dry and rainy periods) and spatial (zones) phytoplankton biomass variation (FGs-functional groups) in a tropical reservoir, and determined the main drivers. We hypothesized that water flow negatively affects the FG-environment relationship because high flow promotes dispersal stochasticity. Our results indicated that the FG-environment relationship was affected mainly by the rainfall regime. Periods with intermediate precipitation showed greater predictability than periods with extreme precipitation. This suggests that the effect of stochastic processes on the phytoplankton community is more important in both the highest and lowest water flow, and deterministic processes are more important at intermediate flow. The longitudinal gradient of nutrients, light, and water-column mixing influenced the distribution of the FG biomass. The riverine zone showed high nutrient concentrations, low light availability, and a high biomass of organisms related to highly enriched systems (FG J-chlorophyceans) and shade-adapted taxa (FG S1-cyanobacteria). The lacustrine zone showed high light availability and a high biomass of heterocytous cyanobacteria (FGs S (N) and H1) and meroplanktonic diatoms (FG MP). The functional approach can be applied to understand the processes responsible for species coexistence and for the organization of aquatic ecosystems.
机译:我们在热带储层中分析了时间(干燥和雨季)和空间(区域)浮游植物变异(FGS-官能团),并确定了主要司机。我们假设水流量对FG环境关系产生负面影响,因为高流量促进了分散性随机性。我们的结果表明,FG-Environmitions关系主要受降雨制度的影响。中间沉淀的时期显示出比具有极端沉淀的时期更大的可预测性。这表明随机过程对浮游植物群落的影响在最高和最低水流中更为重要,并且确定性过程在中间流动中更为重要。营养素,光和水柱混合的纵向梯度影响了FG生物质的分布。河流区显示出高营养浓度,低光可用性,以及与高度富集的系统(FG J-Chlorophyceans)和遮蔽的分类群(FG S1-Cyanobacteria)相关的生物体的高生物量。湖泊区显示出高的光可用性和高生物量的杂核细胞(FGS S(N)和H1)和梅尔多兰间硅藻(FGMP)。功能方法可以应用于了解对物种共存和组织水生生态系统负责的过程。

著录项

  • 来源
    《Hydrobiologia 》 |2018年第2018期| 共15页
  • 作者单位

    Univ Estadual Maringa Nucleo Pesquisas Limnol Ictiol &

    Aquicultura Ave Colombo 5790 Bloco H 90 BR-87020900 Maringa Parana Brazil;

    Univ Estadual Maringa Nucleo Pesquisas Limnol Ictiol &

    Aquicultura Ave Colombo 5790 Bloco H 90 BR-87020900 Maringa Parana Brazil;

    Univ Brasilia Fac UnB Planaltina Area Univ 1 Vila Nossa Senhora Fatima BR-73300000 Planaltina DF Brazil;

    Univ Estadual Maringa Nucleo Pesquisas Limnol Ictiol &

    Aquicultura Ave Colombo 5790 Bloco H 90 BR-87020900 Maringa Parana Brazil;

    Univ Estadual Oeste Parana Lab Ficol Rua Univ 2019 BR-85819110 Cascavel Parana Brazil;

    Univ Estadual Maringa Nucleo Pesquisas Limnol Ictiol &

    Aquicultura Ave Colombo 5790 Bloco H 90 BR-87020900 Maringa Parana Brazil;

    Univ Estadual Maringa Nucleo Pesquisas Limnol Ictiol &

    Aquicultura Ave Colombo 5790 Bloco H 90 BR-87020900 Maringa Parana Brazil;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 水生生物学 ;
  • 关键词

    Planktonic algae; STATICO; Impoundment; Indicators;

    机译:浮游藻类;史蒂科;蓄水;指标;

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