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首页> 外文期刊>Marine ecology progress series >Effect of salmon cage aquaculture on the pelagic environment of temperate coastal waters: seasonal changes in nutrients and microbial community
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Effect of salmon cage aquaculture on the pelagic environment of temperate coastal waters: seasonal changes in nutrients and microbial community

机译:鲑鱼网箱养殖对温带沿海水域中上层环境的影响:养分和微生物群落的季节性变化

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摘要

The effects of salmon farm inputs on pelagic nutrient concentrations and planktonic microbial abundance and biomass were investigated in Loch Fyne, a temperate fjordic environment off the west coast of Scotland. The concentration of photosynthetic pigments and inorganic and organic nutrients, and the abundance and biomass of the autotrophic and heterotrophic microorganisms, were determined over a complete annual cycle from 3 depths (5, 15 and 25-30 m) at 4 stations located at differing proximities to the fish farm. Ammonium and dissolved organic nitrogen concentrations and heterotrophic microbial abundance and biomass were significantly higher at the stations nearest to the fish farm, suggesting that these and other nutrients derived from the fish farm may be directly or indirectly enhancing heterotrophic microbial activity. This in turn suggests that the heterotrophic microbial food web was responsible, at least in part, for processing matter and energy released into the pelagic environment from the salmon farm. By contrast, pigment concentrations, including chlorophyll a, tended to be similar at all stations, supporting the conclusions of previous studies that failed to establish a clear relationship between fish farm inputs and phytoplankton biomass. As such, the response of the heterotrophic microbial community is probably a more appro-priate indicator than chlorophyll concentration of local ecological effects of fish farms in temperate coastal waters.
机译:在苏格兰西海岸外的温带峡湾环境洛恩湖地区,研究了鲑鱼养殖场投入物对浮游鱼类营养物浓度,浮游微生物含量和生物量的影响。在一个完整的年周期中,从不同深度的4个站的3个深度(5、15和25-30 m)确定了光合色素和无机和有机营养素的浓度,以及自养和异养微生物的丰度和生物量到养鱼场。距养鱼场最近的站点的铵态氮和溶解态有机氮浓度以及异养微生物的丰度和生物量显着较高,表明这些和其他养鱼场养分可能直接或间接增强了异养微生物的活性。这反过来表明,异养微生物食物网至少部分地负责从鲑鱼养殖场释放到中上层环境中的加工物质和能量。相比之下,包括叶绿素a在内的色素浓度在所有站都趋于相似,这支持了先前研究的结论,这些研究未能在养鱼场投入与浮游植物生物量之间建立明确的关系。因此,与温带沿海水域养鱼场的局部生态效应相比,异养微生物群落的响应可能是更合适的指标。

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