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海洋多毛类环节动物沙蚕(OF müller 1776)在以三文鱼养殖污泥为食时,其体内的化学和生物污染物的转移和积累。

Transfer and bioaccumulation of chemical and biological contaminants in the marine polychaete Hediste diversicolor (OF müller 1776) when reared on salmon aquaculture sludge.

机构信息

Institute of Marine Ecosystem and Fishery Science, University of Hamburg, 22767 Hamburg, Germany; Department of Fisheries and New Biomarine Industry, SINTEF Ocean, Trondheim, Norway.

Institute of Marine Research, P.O. Box 1870, Nordnes, 5817, Bergen, Norway.

出版信息

J Environ Manage. 2024 Sep;367:122073. doi: 10.1016/j.jenvman.2024.122073. Epub 2024 Aug 3.

Abstract

Side streams from aquaculture production such as fish sludge poses ample opportunities for biological upcycling, as the sludge contains high amounts of nutrients, energy and valuable biochemicals, making it an ideal food for extractive species. Sludge has been proposed as a feed stock for polychaete production, which in turn can be utilized live in shrimp aquaculture or as an aquafeed ingredient. However, the biosafety of such value chains has not yet been addressed. We conducted an experiment exposing the polychaete Hediste diversicolor to aquaculture sludge spiked with four different fish pathogens (Mycobacterium salmoniphilum, Yersinia ruckeri, Infectious Pancreatic Necrosis (IPN) and Infectious Salmon Anaemia (ISA)) known to cause diseases in Atlantic salmon (Salmo salar L.). Moreover, we assessed whether heavy metals and other potentially hazardous elements present in fish sludge bioaccumulates in the polychaetes. Neither of the bacteria nor viruses could be detected in the polychaetes after 14 days of continuous exposure. Seven of the 15 elements we analysed showed bioaccumulation factors significantly below one, meaning biodilution, while the other eight did not differ from one, meaning no bioaccumulation. None of the elements showed a significant bioaccumulation. Further on, none of the heavy metals found in the polychaetes at the end of our experiment exceeded the EU regulatory maximum levels for fish feed ingredients. The current results suggest that a H. diversicolor can reared on aquaculture sludge, and aquaculture sludge may serve as feed stock for polychaete production without the product exceeding EU regulations for contaminants in animal feed.

摘要

水产养殖生产的副产物,如鱼泥,为生物再利用提供了充足的机会,因为鱼泥中含有大量的营养物质、能量和有价值的生物化学物质,是提取物种的理想食物。鱼泥已被提议作为多毛类生产的原料,而多毛类反过来可以在虾类养殖中活体使用,或作为水产饲料的成分。然而,这种价值链的生物安全性尚未得到解决。我们进行了一项实验,将多毛类 Hediste diversicolor 暴露于添加了四种不同鱼类病原体(鲑鱼嗜肺菌、弧菌、传染性胰脏坏死病和传染性鲑贫血病)的水产养殖污泥中,这些病原体已知会导致大西洋鲑(Salmo salar L.)发病。此外,我们还评估了鱼泥中存在的重金属和其他潜在危险元素是否在多毛类动物中生物积累。在连续暴露 14 天后,在多毛类动物中未检测到细菌或病毒。我们分析的 15 种元素中的 7 种显示生物积累因子明显低于 1,意味着生物稀释,而其他 8 种则与 1 没有差异,意味着没有生物积累。没有任何元素显示出明显的生物积累。此外,在实验结束时,在多毛类动物中发现的重金属都没有超过欧盟对鱼类饲料成分的监管最大限量。目前的结果表明,可以在水产养殖污泥中饲养 H. diversicolor,并且水产养殖污泥可以作为多毛类动物生产的原料,而产品不会超过欧盟对动物饲料中污染物的规定。

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