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Trophic interactions and food web structure of a subantarctic marine food web in the Beagle Channel: Bahia Lapataia, Argentina

机译:比格尔海峡亚极南极海洋食物网的营养相互作用和食物网结构:阿根廷巴伊亚州拉帕塔亚

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摘要

Basic ecological knowledge regarding the importance of different sources of primary production and how it is transferred among consumer species is required to properly manage and conserve subpolar ecosystems that are particularly vulnerable to environmental changes. We used carbon (delta C-13) and nitrogen (delta N-15) stable isotope analysis to establish a baseline of species interactions and food web structure for the nearshore marine community in Bahia Lapataia, Argentina, an ecosystem that faces many threats, including a recent invasion of exotic chinook salmon. Primary producers and other organic sources (e.g., particulate organic matter) available to the food web were isotopically distinct and had a wide range in delta C-13 (-31.3 to -5.3 parts per thousand) and delta N-15 (-0.5 to 13.1 parts per thousand) values. Consumers also showed a wide range of isotope values with mean delta C-13 and delta N-15 values ranging from -20.8 to -12.3 parts per thousand and from 10.5 to 19.6 aEuro degrees, respectively. A cluster analysis of these isotope data correctly identified functional groups and expected interactions among species based on independent information. Using Bayesian isotope mixing models, we estimated that the proportional contribution of benthic production, in particular through grazing and the consumption of detritus, was a more important source of energy for primary and secondary consumers than pelagic production. Using stable isotope analysis to continually monitor species interactions and food web structure may prove to be a valuable research and management tool for assessing ecological consequences of different threats in this and other subpolar ecosystems.
机译:需要基本的生态知识,以了解不同初级生产来源的重要性及其如何在消费物种之间转移,以正确管理和保护特别易受环境变化影响的亚极生态系统。我们使用碳(δC-13)和氮(δN-15)稳定同位素分析建立了阿根廷巴伊亚州拉帕塔亚(Bahia Lapataia)近海海洋社区物种相互作用和食物网结构的基线,该生态系统面临许多威胁,包括最近入侵奇异鲑鱼。食物网可利用的主要生产者和其他有机源(例如颗粒状有机物)在同位素上是截然不同的,其变化范围在C-13值(千分之三-1.3至-5.3)和N-15值(-0.5至千分之三)之间。千分之13.1。消费者还显示出广泛的同位素值,平均C-13和N-15平均值分别在千分之20.8至-12.3之间和10.5至19.6 aEuro度之间。这些同位素数据的聚类分析可根据独立信息正确地识别出各物种之间的官能团和预期相互作用。使用贝叶斯同位素混合模型,我们估计底栖鱼类生产的比例贡献,特别是通过放牧和消耗碎屑,对中,初级消费者而言,比中上层渔业更重要。使用稳定同位素分析持续监测物种相互作用和食物网结构可能被证明是评估该威胁和其他亚极生态系统中不同威胁的生态后果的有价值的研究和管理工具。

著录项

  • 来源
    《Polar biology》 |2017年第4期|807-821|共15页
  • 作者单位

    Consejo Nacl Invest Cient & Tecn CONICET, Ctr Austral Invest Cient CADIC, Bernardo Houssay 200,V9410CAB, Ushuaia, Tierra Del Fueg, Argentina|UNTDF, Onas 450,V9410CAB, Ushuaia, Tierra Del Fueg, Argentina;

    Univ New Mexico, Dept Biol, MSC03-2020, Albuquerque, NM 87131 USA;

    Univ Calif Merced, Sch Nat Sci, 5200 Lake Rd, Merced, CA 95343 USA;

    Consejo Nacl Invest Cient & Tecn CONICET, Ctr Austral Invest Cient CADIC, Bernardo Houssay 200,V9410CAB, Ushuaia, Tierra Del Fueg, Argentina|UNTDF, Onas 450,V9410CAB, Ushuaia, Tierra Del Fueg, Argentina;

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

    Food web; Community structure; Trophic level; delta C-13; delta N-15; Biological baseline data;

    机译:食物网;社区结构;营养水平;δC-13;δN-15;生物基准数据;

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