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Isotopic niche plasticity in a marine top predator as indicator of a large marine ecosystem food web status

机译:在海上捕食者中的同位素利基可塑性作为大型海洋生态系统食物网状状态的指标

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摘要

As marine ecosystems are harvested or modified by anthropogenic or natural factors, there is an increasing demand for indicators of trophic web health or status. The Magellanic Penguin (Spheniscus magellanicus) is a widely distributed species that forages in the Patagonian Shelf. During breeding, this species is a central-place forager that feeds mainly on schooling fish, with Argentine anchovy (Engraulis anchoita) being the dominant prey in the north and Fuegian sprat (Sprattus fuegensis) in the south of the Argentine Patagonian distribution (40-55°S). Like most forage fish, both prey species display large natural interannual recruitment fluctuations. We used stable isotope analysis of adult Magellanic penguin blood obtained at twelve colonies along its Patagonian latitudinal range to assess changes in isotopic niche and in trophic level as a response to interannual changes in abundance and spatial segregation of forage fish size classes, respectively. Magellanic penguins showed large isotopic niche fluctuations among breeding seasons, explained by the contribution of forage fish in their diet. Furthermore, the size of the isotopic niche negatively correlated with forage fish biomass estimated from acoustic surveys and with their contribution in penguin diet. We defined an isotopic niche size threshold that indicates low abundance of forage fish in nearby feeding grounds. In addition, the trophic level of Magellanic penguins increased with latitude, which corresponds to the size-distribution of both main forage fish species, showing that penguins from different colonies target different size classes of their main prey. We present here a simple and easy to implement indicator to monitor the status of the base of the food web in one of the most productive marine areas in the world, which constitutes the feeding ground of a diverse group of high trophic level predators and sustains large-scale fisheries.
机译:随着人类学或自然因素的收获或修饰海洋生态系统,对营养网络健康或地位的指标存在越来越大。 Magellanic企鹅(Spheniscus Magellanicus)是一种广泛分布的物种,在巴塔哥尼亚人身上觅食。在繁殖期间,该物种是一名中央地位,主要是在学校教育鱼的饲料,阿根廷凤尾鱼(Engraulis Anchoita)是阿根廷巴塔哥拉那人分布南部的北部和Fuegian Sprat(Sprattus Fuegensis)的主导猎物(40- 55°S)。与大多数饲料鱼一样,两种猎物都显示出大型自然互薪兴奋的波动。我们使用了沿着二十六角形的成人麦哲伦企鹅血液的稳定同位素分析,以沿着其基塔哥岛延伸范围获得的十二个殖民地,以评估同位素利基和营养水平的变化,作为对牧草尺寸类的丰富和空间隔离的际变化的反应。麦哲伦企鹅在育种季节展示了大型同位素的利基波动,通过饲料饲料中的饲料贡献来解释。此外,同位素Niche的大小与牧草生物量呈负相关,并从声学调查估计,并伴随着企鹅饮食的贡献。我们定义了同位素的利基尺寸阈值,表示附近喂养场的低丰度。此外,麦哲伦企鹅的营养水平随着纬度而增加,这对应于主要饲料鱼类的大小 - 分布,表明来自不同殖民地的企鹅瞄准其主要猎物的不同尺寸类别。我们在这里展示了一个简单易于实施的指标,以监测世界上最富有成效的海域的食品网站的状态,这构成了一组多种高营养水平捕食者的饲养地,并维持大量-scale渔业。

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  • 来源
    《Oceanographic Literature Review》 |2021年第6期|1328-1329|共2页
  • 作者单位

    CESIMAR Centra Nacional Patagonico - CONICET Blvd. Brown 2915 Puerto Madryn Chubut 9120 Argentina;

    CESIMAR Centra Nacional Patagonico - CONICET Blvd. Brown 2915 Puerto Madryn Chubut 9120 Argentina;

    CESIMAR Centra Nacional Patagonico - CONICET Blvd. Brown 2915 Puerto Madryn Chubut 9120 Argentina;

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