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Separate and combined effects of copper and freshwater on the biodiversity and functioning of fouling assemblages

机译:铜和淡水对生物多样性和结垢组件功能的单独和综合影响

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Increased levels of anthropogenic stressors in the marine environment are leading to complex changes in its diversity and functioning. Many marine ecosystems are exposed simultaneously to multiple stressors, and their combined effects are difficult to predict. Climate change will intensify the input of terrestrial pollutants and increase the flow of water to coastal systems through increased precipitation. Subtidal assemblages were subjected to factorial combinations of copper and freshwater to test effects on their structure and on ecosystem processes. Assemblages were also subjected to seawater to separate the intended effects of water flow and salinity. For the first three months, no effects of copper or freshwater were found. After three months, copper significantly reduced the taxon richness and the percentage cover of taxa, and reduced the rate of community respiration and gross primary production. The flow of water also reduced community respiration, regardless of whether the water was fresh or saline. (C) 2016 Elsevier Ltd. All rights reserved.
机译:海洋环境中人为压力源的增加导致其多样性和功能的复杂变化。许多海洋生态系统同时暴露于多种压力下,其综合影响难以预测。气候变化将增加陆地污染物的输入,并通过增加降水来增加流向沿海系统的水量。潮下组合受到铜和淡水的析因组合,以测试对其结构和生态系统过程的影响。组件还受到海水的作用,以分离水流和盐度的预期效果。在最初的三个月中,没有发现铜或淡水的影响。三个月后,铜显着降低了分类单元的丰富度和分类单元的覆盖率,并降低了社区呼吸和初级生产总值。无论水是新鲜的还是盐水,水的流动还减少了社区的呼吸。 (C)2016 Elsevier Ltd.保留所有权利。

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