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Trophic niche partitioning among sympatric baleen whale species following the collapse of groundfish stocks in the Northwest Atlantic

机译:在西北大西洋底层鱼类种群崩溃之后,同伴鲸鱼之间的营养生态位分配

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摘要

Ecologically similar species may coexist when resource partitioning over time and space reduces interspecific competition. Understanding resource use within these species assemblages may help predict how species relative abundance might influence ecosystem functioning. In the Gulf of St. Lawrence, Canada, 4 species of rorqual whales (blue Balaenoptera musculus, fin B. physalus, minke B. acutorostrata and humpback Megaptera novaeangliae) coexist during the summer feeding period. They can be observed within hundreds of meters of one another, suggesting an overlap in ecological niches; yet fine-scale habitat use analyses suggest some resource partitioning. While major ecological changes have been observed in marine ecosystems, including the Gulf of St. Lawrence, we have little understanding of how the removal of predatory fish might cascade through ecosystems. Here, we take advantage of a 19 yr tissue collection subsequent to a fishery collapse (which occurred in 1992) to investigate trophic niche partitioning within a guild of rorqual whales following the loss of a key ecosystem component, groundfish. We analyzed stable isotope ratios for 626 rorqual individuals sampled between 1992 and 2010. Using Bayesian iso-topic mixing models, we demonstrated that the 4 rorqual species segregated trophically by consuming different proportions of shared prey. An overall increase in δ~(15)N values over the study period (post groundfish collapse), particularly for fin and humpback whales, suggested a progressive use of higher-trophic level prey, such as small pelagic fish, whereas the stability of blue whale diet over time confirmed their specialized feeding behaviour. This study provides the first long-term assessment of trophic ecology among rorqual populations on this Northwest Atlantic feeding ground, and evidence for differential resource use among large marine predators following ecosystem change.
机译:当资源随时间和空间分配减少种间竞争时,生态相似的物种可能共存。了解这些物种集合中的资源使用情况可能有助于预测物种相对丰度如何影响生态系统功能。在加拿大圣劳伦斯湾,夏季取食期间共存在4种不规则鲸鱼(蓝色Balaenoptera musculus,鳍B. physalus,minke B. acutorostrata和座头鲸Megaptera novaeangliae)。可以在彼此相距数百米的范围内观察到它们,表明生态位重叠。然而,大规模的栖息地利用分析表明,存在一些资源划分。尽管在包括圣劳伦斯湾在内的海洋生态系统中已经观察到重大的生态变化,但我们对掠食性鱼类的清除如何在整个生态系统中级联的了解很少。在这里,我们利用渔业崩溃(于1992年发生)后19年的组织收集来调查在失去了主要生态系统组成部分底层鱼类之后,轮生鲸鱼协会中的营养位细分。我们分析了1992年至2010年之间采样的626个不规则个体的稳定同位素比率。使用贝叶斯同位素混合模型,我们证明了这4个不规则物种通过消耗不同比例的共享猎物而在营养上分离。在研究期内(底层鱼类崩溃之后),δ〜(15)N值总体增加,特别是对于有鳍和座头鲸而言,表明逐渐使用较高营养水平的猎物,例如小型远洋鱼类,而蓝色的稳定性鲸鱼的饮食随着时间的推移证实了它们的专门喂养行为。这项研究首次对该西北大西洋觅食地的不平等种群的营养生态进行了长期评估,并为生态系统变化后大型海洋捕食者之间不同资源利用的证据。

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  • 来源
    《Marine ecology progress series》 |2014年第5期|285-301|共17页
  • 作者单位

    Department of Biology, Universite Laval, 1045 ave de la Medecine, Quebec, Quebec G1V 0A6, Canada,Mingan Island Cetacean Study, 284 Green St., Saint Lambert, Quebec J4P 1T3, Canada,Quebec-Ocean, Universite Laval, 1045 ave de la Medecine, Quebec, Quebec G1V 0A6, Canada;

    Maurice Lamontagne Institute, Fisheries and Oceans Canada, 850 route de la Mer, Mont-Joli, Quebec G5H 3Z4, Canada,Quebec-Ocean, Universite Laval, 1045 ave de la Medecine, Quebec, Quebec G1V 0A6, Canada;

    Mingan Island Cetacean Study, 284 Green St., Saint Lambert, Quebec J4P 1T3, Canada;

    Mingan Island Cetacean Study, 284 Green St., Saint Lambert, Quebec J4P 1T3, Canada;

    Marine Evolution and Conservation, Centre of Evolutionary and Ecological Studies, University of Groningen, Broerstraat 5, 9712 CP Groningen, The Netherlands;

    Centre for Ecology and Conservation, University of Exeter, Cornwall Campus, Treliever Rd, Penryn, Cornwall TR10 9EZ, UK;

    Department of Biology, Universite Laval, 1045 ave de la Medecine, Quebec, Quebec G1V 0A6, Canada,Quebec-Ocean, Universite Laval, 1045 ave de la Medecine, Quebec, Quebec G1V 0A6, Canada;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Trophic niche; Interspecific; Stable isotopes; δ~(13)C; δ~(15)N; Rorqual; Ecosystem change;

    机译:营养小生境;种间稳定同位素;δ〜(13)℃;δ〜(15)N;Rorqual;生态系统变化;

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