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首页> 外文期刊>Estuarine Coastal and Shelf Science >Resource partitioning by two large planktivorous fishes Micromesistius australis and Macruronus magellanicus in the Southwest Atlantic
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Resource partitioning by two large planktivorous fishes Micromesistius australis and Macruronus magellanicus in the Southwest Atlantic

机译:西南大西洋的两种大型浮游鱼类对资源的划分(澳大利亚南方鱼类和麦哲伦)

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摘要

The ontogenetic, seasonal, bathymetric and regional variations in the feeding spectrum of 922 specimens of southern blue whiting Micromesistius australis and 512 specimens of hoki Macruronus magellanicus were studied on the Falkland Islands' shelf (Southwest Atlantic) between November 1999 and April 2003. A total of 49 different prey items were found in the stomach contents of the two species, with the hyperiid Themisto gaudichaudii and Euphausiacea being amongst the most important prey. Although the species composition did not change over fish size, the proportions of individual prey items in their diets did, with an increase in T. gaudichaudii and Euphausiacea with increasing fish size in southern blue whiting. The opposite occurred in hoki. Seasonal variations in the diet were found to mirror the seasonal abundance of prey around the Falkland Islands for the two species. Intra-specific differences in the diet of both predators reflected the distribution of prey, which in turn was determined by the water structure in the two regions sampled, leading to very different diets. In the limited time that the two species occupied the same space there was little or no competition resulting in almost total segregation of their trophic niches in space and time.
机译:在1999年11月至2003年4月期间,在福克兰群岛的大陆架(西南大西洋)上研究了南部南部白垩白鳕鱼的922个标本和南方红鳕Micromagistius australis的512个标本和512个霍基Macruronus magellanicus的标本的个体发育,季节,测深和区域变化。在这两个物种的胃中发现了49种不同的猎物,其中最重要的猎物是高变种Themisto gaudichaudii和Euphausiacea。尽管物种组成不会随鱼的大小而变化,但其饮食中单个猎物的比例却发生了变化,随着南部蓝鳕鱼中鱼的大小的增加,T。gaudichaudii和Euphausiacea的增加。相反的是发生在hoki。发现饮食的季节性变化反映了福克兰群岛周围两种物种的猎物季节性丰富。两种天敌的饮食中的种内差异反映了猎物的分布,这又取决于采样的两个区域的水结构,从而导致了非常不同的饮食。在有限的时间内,两个物种占据了相同的空间,几乎没有竞争,甚至没有竞争,导致它们的营养位在空间和时间上几乎完全隔离。

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