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首页> 外文期刊>Canadian Journal of Fisheries and Aquatic Sciences >Among- and within-species variability in fatty acid signatures of marine fish and invertebrates on the Scotian Shelf, Georges Bank, and southern Gulf of St. Lawrence
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Among- and within-species variability in fatty acid signatures of marine fish and invertebrates on the Scotian Shelf, Georges Bank, and southern Gulf of St. Lawrence

机译:Scotian Shelf,Georges Bank和圣劳伦斯湾南部的海水鱼类和无脊椎动物的脂肪酸特征在种间和种内变化

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摘要

The fat and fatty acid compositions of 28 species of fish and invertebrates (n = 954) from the Scotian Shelf, Georges Bank, and the Gulf of St. Lawrence were determined. Discriminant analysis of the 16 most numerous species (n greater than or equal to 18 each), using 17 major fatty acids, classified species with greater than 98% accuracy and grouped species into three general clusters (gadids, flatfish, and planktivores) with similar fatty acid compositions, and likely, similar diets. A number of species exhibited changes in fatty acid signatures with increasing size (multivariate analysis of variance), which corresponded with known dietary shifts reported from stomach contents analyses. Location effects were also observed among the three major geographical regions and were probably due to broad-scale variations in prey assemblages and phytoplankton composition in the northwestern Atlantic. Despite these effects, within-species variation was still substantially less than among-species variation. Thus, fatty acid signatures can be used to distinguish and characterize fish and invertebrate species in a given ecosystem, as well as to study finer-scale trophic interactions of these species. These data also have applications at higher trophic levels and will serve as a prey database for studying the diets of other fish and marine mammal predators using fatty acid signatures.
机译:确定了来自斯科特陆架,乔治银行和圣劳伦斯湾的28种鱼类和无脊椎动物(n = 954)的脂肪和脂肪酸组成。使用17种主要脂肪酸对16种数量最多的物种(每个n大于或等于18个)进行判别分析,将具有98%以上准确度的分类物种划分为三个具有相似相似性的一般集群(小类,比目鱼和浮游生物)脂肪酸组成,以及类似的饮食。许多种类的脂肪酸特征随大小增加而变化(方差的多变量分析),这与通过胃内容物分析报告的已知饮食变化相对应。在三个主要地理区域中也观察到了位置效应,这可能是由于西北大西洋的猎物组合和浮游植物组成发生了大规模变化。尽管有这些影响,物种内的变异仍然大大小于物种间的变异。因此,脂肪酸特征可用于区分和表征给定生态系统中的鱼类和无脊椎动物,并研究这些物种的更细微的营养相互作用。这些数据在较高营养水平上也有应用,并将作为利用脂肪酸特征研究其他鱼类和海洋哺乳动物捕食者饮食的猎物数据库。

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