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Disturbance of ecological habitat distribution driven by a chemical barrier of domestic and agricultural discharges: An experimental approach to test habitat fragmentation

机译:由家庭和农业排放物的化学屏障驱动的生态栖息地分布扰动:一种测试栖息地破碎化的实验方法

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Contamination is an important factor for determining the pattern of habitat selection by organisms. Since many organisms are able to move from contaminated to more favorable habitats, we aimed to: (i) verify if the contamination along the river Guadalete (Spain) could generate a chemical barrier, restricting the displacement of freshwater shrimps (Atyaephyra desmarestii) and (ii) discriminate the role of the contaminants concerning the preference response by the shrimps. A desmarestii was experimentally tested in a multi-compartmented, non-forced exposure system, simulating the spatial arrangement of the samples just like their distribution in the environment. Water and sediment samples were chemically characterized by analyses of 98 chemical compounds and 19 inorganic elements. Shrimps selected the less contaminated water and sediment samples, with two marked preference patterns: (i) upstream displacement avoiding the sample located at the point of pollutant discharges and those samples downstream from this point and (ii) fragmentation of the population with spatial isolation of the upstream and downstream populations. The preference was related to the avoidance of artificial sweeteners, flame retardants, fragrances, PAHs, PCBs, pesticides, UV filters and some inorganic elements. The threat of contamination was related to its potential to isolate populations due to the chemical fragmentation of their habitat. (C) 2018 Elsevier B.V. All rights reserved.
机译:污染是决定生物选择生境的重要因素。由于许多生物能够从受污染的栖息地迁移到更有利的栖息地,因此我们的目标是:(i)验证瓜达莱特河(西班牙)沿岸的污染是否会产生化学屏障,从而限制淡水虾(Atyaephyra desmarestii)的流离失所和( ii)区分污染物在虾的偏好响应中的作用。 desmarestii在多隔室,非强制暴露系统中进行了实验测试,模拟了样品的空间排列,就像它们在环境中的分布一样。通过分析98种化合物和19种无机元素对水和沉积物样品进行化学表征。虾选择污染较少的水和沉积物样本,具有两个明显的偏好模式:(i)上游迁移,避免样本位于污染物排放点和下游的样本;(ii)种群分散,空间隔离上游和下游人口。首选与避免使用人造甜味剂,阻燃剂,香料,多环芳烃,多氯联苯,农药,紫外线过滤剂和某些无机元素有关。由于栖息地的化学碎片化,污染的威胁与其隔离种群的潜力有关。 (C)2018 Elsevier B.V.保留所有权利。

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