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A new type of plankton food web functioning in coastal waters revealed by coupling Monte Carlo Markov chain linear inverse method and ecological network analysis

机译:一种新型的沿海水域中的浮游生物,通过耦合蒙特卡罗马尔可夫链线性逆法和生态网络分析显示

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摘要

Plankton food webs (PFW) typology is based on different categories of functioning, according to the dominant processes and the role played by heterotrophic bacteria, small vs large phytoplankton, and small vs large zooplankton. Investigating the structure and the function of planktonic food webs in two SW Mediterranean waters (inshore and marine sites) at four seasons, using inverse (LIM-MCMC) and ecological network (ENA) analyses, we identified a new type of food web, called the "bacterial multivorous food web". This food web adds to the conventional trophic continuum as previously reported. The "bacterial multivorous food web" present in winter showed the lowest primary production among seasons, but highest bacterial production. Several food web ratios characterized this new typology e.g. picophytoplankton net primary production to total primary production varied from 0.20 to 0.28; bacterial to primary production ratio is higher than values reported in global scale (congruent to 1); bacterial net production to the potential protozoan prey net production was high (0.2). In this special food web, carbon was mostly recycled, with a moderate fraction channeled to deep waters, which lead to a higher retention of carbon inside the ecosystem. This winter PFW also seemed to be the most organized, specialized, stable and mature, as related to common interpretations of ENA. The spring was characterized by herbivorous food web, with highest activity coinciding with low stability. Although less usual, the herbivorous pathway was also observed during summer, in inshore waters. The autumn food webs, which functioned as multivorous or microbial food webs, appeared to be stable and mature. Finally, our study demonstrates the usefulness of food web models derived ratios combined with ecological network analysis indices to conduct evaluation of the structure and functioning of ecosystems and potentially to support management decisions in marine environment.
机译:浮游生物食物网(PFW)类型基于不同类别的运作,根据主要的过程和异养细菌的作用,小VS大型浮游植物和小型大型浮游车。调查在四季(利用Lim-MCMC)和生态网络(ENA)分析的四季中浮游食品网的结构和功能,我们确定了一种新型食品网,称为“细菌多剂量食物网”。如前所述,这种食物纤维网增加了传统的营养性连续体。冬季存在的“细菌多孔食物网”显示出季节中最低的主要生产,但细菌生产最高。几种食物纤维网格比例是这种新型类型。 PICOPHYTOPLANKTONT净初级生产初级生产从0.20到0.28各不相同;对初级生产比的细菌高于全球规模报告的价值(一致为1);细菌净生产到潜在的原生动物猎物净产量高(> 0.2)。在这种特殊的食物网中,碳大多是再循环的,中等馏分被通道到深水,导致生态系统内的碳保留更高。冬季PFW似乎也是符合ENA的常见解释相关的最具组织,专业,稳定和成熟的。春天的特征在于食状食物纤维网,最高活性与低稳定性重合。虽然常见,但在夏天也观察到食草途径,居住在赫尔莫尔沃特。秋季食物纤维网,其作为多元或微生物纤维网,似乎是稳定的和成熟的。最后,我们的研究表明,食品网络模型导出的比率与生态网络分析指标相结合,以便对生态系统的结构和运作进行评估,并潜在地支持海洋环境中的管理决策。

著录项

  • 来源
    《Ecological indicators》 |2019年第9期|67-85|共19页
  • 作者单位

    Univ Carthage Fac Sci Bizerte Lab Phytoplanctonol Zarzouna 7021 Bizerte Tunisia|Univ Tunis El Manar LR18ES41 Sci Environm Biol & Physiol Organismes A Fac Sci Tunis Tunis Tunisia;

    Univ Antilles Univ Caen Normandie IRD 207 Sorbonne Univ CS 14032 CNRS Normandie Univ UNICAEN UMR BOREA MNHN CNRS F-14032 Caen France;

    Univ Carthage Fac Sci Bizerte Lab Phytoplanctonol Zarzouna 7021 Bizerte Tunisia|Univ Monastir Inst Super Biotechnol Monastir LR 14ES06 Bioressources Biol Integrat & Valorisat Ave Taher Hadad BP 74 Monastir 5000 Tunisia;

    Univ Carthage Fac Sci Bizerte Lab Phytoplanctonol Zarzouna 7021 Bizerte Tunisia|Univ Tunis El Manar LR18ES41 Sci Environm Biol & Physiol Organismes A Fac Sci Tunis Tunis Tunisia;

    Univ Antilles Univ Caen Normandie IRD 207 Sorbonne Univ CS 14032 CNRS Normandie Univ UNICAEN UMR BOREA MNHN CNRS F-14032 Caen France;

    Univ Antilles Univ Caen Normandie IRD 207 Sorbonne Univ CS 14032 CNRS Normandie Univ UNICAEN UMR BOREA MNHN CNRS F-14032 Caen France|IFREMER Ecol & Models Appl Fishery Resources Nantes France|INRA ESE Ecol & Ecosyst Hlth Agro Campus Ouest F-35042 Rennes France;

    IRD MARBEC Marine Biodivers Exploitat & Conservat BP 434 Tunis 1004 Tunisia|Univ Montpellier CNRS 9190 IFREMER UMR IRD 248 Montpellier France;

    Univ Carthage Fac Sci Bizerte Lab Phytoplanctonol Zarzouna 7021 Bizerte Tunisia|Univ Tunis El Manar LR18ES41 Sci Environm Biol & Physiol Organismes A Fac Sci Tunis Tunis Tunisia;

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

    Food web modeling; Network analysis; Trophic structure; Coastal waters; Seasonal variations; Ecology; Bacterial multivorous food web;

    机译:食物网络建模;网络分析;营养结构;沿海水域;季节性变化;生态学;细菌多孔食物网;

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