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铜对海洋污损生物群落多个演替阶段的影响。

Effect of copper on multiple successional stages of a marine fouling assemblage.

作者信息

McElroy David J, Hochuli Dieter F, Doblin Martina A, Murphy Richard J, Blackburn Robert J, Coleman Ross A

机构信息

a Coastal & Marine Ecosystems Group, Marine Ecology Laboratories (A11), School of Life & Environmental Sciences , The University of Sydney , Sydney , Australia.

b Integrative Ecology Group, School of Life & Environmental Sciences , The University of Sydney , Sydney , Australia.

出版信息

Biofouling. 2017 Nov;33(10):904-916. doi: 10.1080/08927014.2017.1384468. Epub 2017 Oct 30.

Abstract

Copper based paints are used to prevent fouling on the hulls of ships. The widely documented effect of copper on hull assemblages may be primarily due to direct effects on the invertebrates themselves or indirect effects from copper absorbed into the microbial biofilm before settlement has commenced. Artificial units of habitat were exposed to varied regimes of copper to examine (1) the photosynthetic efficiency and pigments of early-colonising biofilms, and (2) subsequent macroinvertebrate assemblage change in response to the different regimes of copper. Macroinvertebrate assemblages were found to be less sensitive to the direct effects of copper than indirect effects as delivered through biofilms that have been historically exposed to copper, with some species more tolerant than others. This raises further concern for the efficacy of copper as a universal antifoulant on the hulls of ships, which may continue to assist the invasion of copper-tolerant invertebrate species.

摘要

铜基涂料被用于防止船舶船体的污垢附着。铜对船体生物群落具有广泛记载的影响,这可能主要归因于对无脊椎动物自身的直接影响,或者是在定居开始前铜被吸收到微生物生物膜中所产生的间接影响。将人工栖息地单元暴露于不同的铜处理条件下,以研究:(1)早期定殖生物膜的光合效率和色素;(2)随后大型无脊椎动物群落因不同铜处理条件而发生的变化。结果发现,大型无脊椎动物群落对铜的直接影响不如通过历史上接触过铜的生物膜所传递的间接影响敏感,且一些物种比其他物种更具耐受性。这进一步引发了对铜作为船舶船体通用防污剂功效的担忧,因为这可能会继续助长耐铜无脊椎动物物种的入侵。

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