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影响加拿大不列颠哥伦比亚省布劳顿群岛大西洋鲑鱼养殖场生物污损群落时空分布的因素:见解

Factors affecting the spatial and temporal distribution of biofouling communities on Atlantic salmon () farms: insights from the Broughton Archipelago, British Columbia, Canada.

作者信息

Johnson Devan L, Pearce Christopher M, Flaherty Mark S, Cowen Laura L E, Black Morgan J, Worst Sandra V, Greiter Loerzer Raquel A, Guitard Kaitlin C, McGoveran Matthew, Vornicu Bogdan

机构信息

Department of Geography, University of Victoria, Victoria, BC, Canada.

Pacific Biological Station, Fisheries and Oceans Canada, Nanaimo, BC, Canada.

出版信息

Biofouling. 2025 Jan;41(1):20-35. doi: 10.1080/08927014.2024.2430353. Epub 2024 Dec 12.

Abstract

Biofouling communities were examined at five depths at two salmon farms (Doctor Islets (DI), Wicklow Point (WP)) in British Columbia, Canada from April/May to October 2020. In addition, various water quality parameters were measured and the jellyfish numbers were quantified. Biofouling communities were mainly composed of Mollusca (primarily spp.), arthropods (mostly harpacticoids), and hydroids (predominantly sp.), while jellyfish samples were made up mostly of medusa-form sp. At DI, all variables except ammonia were associated with biofouling counts, all variables except depth were associated with hydroid biomass, while only temperature, dissolved oxygen, ammonia, and nitrate were associated with jellyfish. At WP, all variables except phosphate and silica were associated with biofouling counts, only depth was associated with hydroid biomass, and only ammonia was associated with jellyfish. Insights into what environmental variables are correlated with biofouling organisms and jellyfish may assist with the development of effective mitigation strategies.

摘要

2020年4月/5月至10月,在加拿大不列颠哥伦比亚省的两个鲑鱼养殖场(医生岛(DI)、威克洛角(WP))的五个深度对生物污损群落进行了研究。此外,还测量了各种水质参数并对水母数量进行了量化。生物污损群落主要由软体动物(主要是 属)、节肢动物(大多为猛水蚤类)和水螅虫(主要是 属)组成,而水母样本主要由水母体 属组成。在医生岛,除氨以外的所有变量都与生物污损数量相关,除深度以外的所有变量都与水螅虫生物量相关,而只有温度、溶解氧、氨和硝酸盐与水母相关。在威克洛角,除磷酸盐和二氧化硅以外的所有变量都与生物污损数量相关,只有深度与水螅虫生物量相关,只有氨与水母相关。深入了解哪些环境变量与生物污损生物和水母相关,可能有助于制定有效的缓解策略。

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