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Food-web indicators accounting for species interactions respond to multiple pressures

机译:解释物种相互作用的食物网指标应对多种压力

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摘要

Food-web indicators for marine management are required to describe the functioning and structure of marine food-webs. In Europe, the Marine Strategy Framework Directive (MSFD), intended to lead to a 'good environmental status' of the marine waters, requires indicators of the status of the marine environment that also respond to manageable anthropogenic pressures. Identifying such relationships to pressures is particularly challenging for food-web indicators, as they need to be disentangled from linkages between indicators of different functional groups caused by species interactions. Still, such linkages have not been handled in the indicator development. Here we used multivariate autoregressive time series models to identify how fish indicators in an exploited food-web relate to fishing, climate and eutrophication, while accounting for the linkages between indicators caused by species interactions. We assembled 31-year long time series of indicators of key functional groups of fish in the Central Baltic Sea pelagic food-web, which is characterized by strong trophic links between cod (Gadus morhua) and its main fish prey sprat (Sprattus sprattus) and herring (Clupea harengus). These food-web indicators were either abundance-based indicators of key piscivores (cod) and zooplanktivores (sprat and herring) or size-based indicators of the corresponding trophic groups (biomass of large predatory fish (cod >= 38 cm) and biomass of small prey fish (sprat and herring <10 cm)). Comparative analyses of models with and without linkages among indicators showed that for both types of indicators, linkages corresponding to predator-prey feedbacks and intra-specific density-dependence were essential to explain temporal variation in the indicators. Thus, no indicator-pressure relationships could be found that explained the indicators' variation unless such linkages were accounted for. When accounting for these, we found that the indicators overall respond to multiple pressures acting simultaneously rather than to single pressures, as no pressure alone could explain how the indicators developed over time. The manageable pressures fishing and eutrophication, as well as the prevailing hydrological conditions influenced by climate, were all needed to reproduce the inter-annual changes in these food-web indicators combined, although individual relationships differed between the indicators. We conclude that our innovative indicator-testing framework can therefore be used to identify responses of food-web indicators to manageable pressures while accounting for the biotic interactions in food-webs linking such indicators. (C) 2017 Elsevier Ltd. All rights reserved.
机译:需要海洋管理食物网指标来描述海洋食物网的功能和结构。在欧洲,旨在导致海洋水域具有“良好环境状态”的海洋战略框架指令(MSFD)要求海洋环境状况的指标也能应对可控的人为压力。确定食物压力指标与压力的关系特别具有挑战性,因为它们需要与物种相互作用引起的不同功能组指标之间的联系脱开。尽管如此,这种联系还没有在指标制定中得到处理。在这里,我们使用了多元自回归时间序列模型来确定被开发食物网中的鱼类指标与捕鱼,气候和富营养化之间的关系,同时考虑了物种相互作用导致的指标之间的联系。我们收集了长达31年的中波罗的海中上层食物网中鱼类关键功能组指标的长时间序列,该指标的特征是鳕鱼(Gadus morhua)与主要鱼类猎物西鲱(Sprattus sprattus)和鲱鱼(Clupea harengus)。这些食物网指标要么是主要食肉动物(鳕鱼)和浮游动物(鲱鱼和鲱鱼)的丰度指标,要么是相应营养类群的大小指标(大型掠食性鱼类的生物量(鳕鱼> 38 cm)和鱼的生物量)。小猎物(鲱鱼和鲱鱼<10厘米)。对指标之间具有链接和不具有链接的模型进行的比较分析表明,对于两种类型的指标,对应于捕食者-猎物反馈和种内密度依赖性的链接对于解释指标的时间变化至关重要。因此,除非考虑到这种联系,否则无法找到解释指标变化的指标压力关系。考虑这些因素时,我们发现指标总体上是对同时作用的多个压力做出反应,而不是对单个压力做出反应,因为没有单独的压力可以解释指标随着时间的推移如何发展。再现这些食物网指标的年际变化都需要可控的捕捞和富营养化压力,以及受气候影响的主要水文条件,尽管指标之间的个体关系有所不同。我们得出结论,因此,我们的创新指标测试框架可用于确定食物网指标对可控压力的响应,同时考虑将这些指标链接在一起的食物网中的生物相互作用。 (C)2017 Elsevier Ltd.保留所有权利。

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