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首页> 外文期刊>Water SA >Environmental variables, pesticide pollution and meiofaunal community structure in two contrasting temporarily open/ closed False Bay estuaries
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Environmental variables, pesticide pollution and meiofaunal community structure in two contrasting temporarily open/ closed False Bay estuaries

机译:在两个相反的临时开/关假湾河口中,环境变量,农药污染和薄膜植物群落结构

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摘要

Environmental variables (including natural and anthropogenic stressors) and meiobenthic communities were sampled in a 'natural' (Rooiels) and a 'disturbed' (Lourens) estuary in the Western Cape, South Africa, bimonthly for 20 months. A primary aim of the study was to assess if the meiobenthic community structure is driven by different variables when comparing 'natural' versus 'disturbed' system. Due to the much smaller catchment of the Rooiels Estuary, many environmental variables were significantly different (p< 0.001) from the variables in the Lourens Estuary, e.g. salinity, temperature, pH, total suspended solids, nitrate and depth. No pesticide concentrations were expected in the Rooiels Estuary due to the absence of agricultural development in the catchment. However, chlorpyrifos (8.9 ug/kg), prothiofos (22.0 ug/kg) and cypermethrin concentrations (0.42 ug/kg) were detected frequently, with the highest concentrations recorded during the summer months. Principal response curve analysis showed that temporal variability between sampling dates explained 42% of the variance in environmental variables and pesticide concentrations and spatial variability between the 2 estuaries explained 58%. Variables contributing most to the differences were higher concentrations of endosulfan, p,p-DDE and nitrate concentrations in the Lourens Estuary and larger grain size and higher salinity at the bottom in the Rooiels Estuary. In general the meiofaunal community in the Rooiels Estuary showed a significantly higher number of taxa (p< 0.001), a significantly higher Shannon Wiener Diversity Index (p<0.00l) and a generally lower meiofaunal abundance with less variability than in the Lourens Estuary. The differences were mostly explained by a higher abundance of Cypretta and Darcythompsonia in the Rooiels Estuary and a higher abundance of Thermocyclops and Canthocamptus in the Lourens Estuary. The variables explaining a significant part (14%) of the variance in meiofaunal abundance in the Rooiels Estuary were salinity and temperature, with the Redundancy Analysis indicating that the abundance of most of the taxa increased with higher salinity and temperature, e.g. Upogebia, Nereis, Uroma and nematodes were clearly positively correlated to salinity and temperature. The variables explaining a significant part of the variance in the dataset (43%) within the Lourens Estuary were also salinity and temperature but included chlorpyrifos, nitrate and flow (including river and tidal flow).
机译:环境变量(包括自然和人为压力源)和中底栖动物群落每两个月在南非西开普的“自然”(鲁瓦斯)河口和“扰乱”(洛伦斯)河口采样。该研究的主要目的是在比较“自然”系统与“受干扰”系统时,评估中底栖动物群落结构是否由不同的变量驱动。由于Rooiels河口的集水区较小,许多环境变量与Lourens河口的变量有显着差异(p <0.001),例如盐度,温度,pH,总悬浮固体,硝酸盐和深度。由于集水区缺乏农业发展,预计在Rooiels河口没有农药浓度。但是,经常检测到毒死rif(8.9 ug / kg),原硫磷(22.0 ug / kg)和氯氰菊酯的浓度(0.42 ug / kg),在夏季月份记录到​​最高浓度。主要响应曲线分析表明,采样日期之间的时间变化解释了环境变量和农药浓度差异的42%,两个河口之间的空间变异解释了58%。造成差异最大的变量是劳伦斯河口中硫丹,p,p-DDE和硝酸盐的浓度较高,而鲁瓦伊尔河口底部的晶粒较大和盐度较高。总体而言,鲁伊尔河口的动植物种群显示出比卢伦斯河口大得多的分类单元(p <0.001),显着更高的香农维纳多样性指数(p <0.00l)和更低的动植物丰度。差异的主要原因是Rooiels河口的Cypretta和达西藻的丰度较高,Loures河口的热圈动物和Cancampcampus的丰度较高。解释Rooiels河口中动植物丰度方差的很大一部分(14%)的变量是盐度和温度,冗余度分析表明,大多数盐类的丰度随着盐度和温度的升高而增加,例如Upogebia,Nereis,Uroma和线虫显然与盐度和温度呈正相关。解释劳伦斯河口内数据集的很大一部分方差(43%)的变量还包括盐度和温度,但包括毒死rif,硝酸盐和流量(包括河流流量和潮汐流量)。

著录项

  • 来源
    《Water SA》 |2011年第3期|p.391-400|共10页
  • 作者单位

    Zoology Department, University of Johannesburg, 2006 Auckland Park, Johannesburg, South Africa lnstitute for Environmental Sciences, University Koblenz-Landau, D-76829 Landau/Pfalz, Germany;

    lterra, Centre for Water and Climate, Wageningen University and Research Centre, PO Box 47,6700AA Wageningen, The Netherlands Wageningen University, Department of Aquatic Ecology and Water Quality Management, Wageningen University and Research Centre, PO;

    Environmental Geoscience Unit, Council for Geoscience, Private Bag X112, Pretoria, 0001, South Africa;

    Freshwater Research Unit, University of Cape Town, Private Bag, Rondebosch 7701, South Africa;

    lnstitute for Environmental Sciences, University Koblenz-Landau, D-76829 Landau/Pfalz, Germany;

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

    particle-associated insecticides; meiofauna; estuaries; south africa;

    机译:与颗粒有关的杀虫剂;meiofauna;河口南非;

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