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首页> 外文期刊>Aquaculture >Ecosystem maturity as a proxy of mussel aquaculture carrying capacity in Ria de Arousa (NW Spain): A food web modeling perspective
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Ecosystem maturity as a proxy of mussel aquaculture carrying capacity in Ria de Arousa (NW Spain): A food web modeling perspective

机译:生态系统成熟作为RIA DE AROUSA的贻贝水产养殖承载能力的代理(NW Spain):食品网络建模透视

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As demand for global food security increases and arable land decreases, utilization of marine ecosystems intensifies. In particular, coastal marine ecosystems which are easily accessible, highly productive, and often protected from large storm perturbations, make ideal areas for expansion in ocean food systems. Whether an ecosystem has been identified as a potential new site for food production or whether it has had long-established food production activities, proper management of resources is paramount for sustainability of both the eco-system and food industry. One way to approach sustainable management is by taking a carrying capacity approach using food web modeling. Our study area focuses on a highly productive estuarine embayment that has had long-standing practices of both mussel aquaculture and artisanal fisheries since the 1960's. Using ecological modeling with Ecopath software, we have calculated the current ecological carrying capacity and production carrying capacity of the system. Complementing this new analysis, we performed a review of ecosystem ecology indicators to compare relative carrying capacities. We found that current mussel aquaculture biomass (1718 t km(-2)) have exceeded ecological carrying capacity (773 t km(-2)) but it is still below production carrying capacity (2164 t km(-2)). Based on Ecopath maturity index and omnivory index output values, Ria de Arousa can be considered a mature ecosystem relative to other coastal and estuarine systems. This high level of maturity may be interpreted as the resilience of this system to cope with changes brought about over time by the intensification of food production and human activity.
机译:随着对全球粮食安全的需求增加,土地的需求降低,利用海洋生态系统的利用率。特别是,沿海海洋生态系统易于访问,高效,经常受到大风暴扰动的保护,使海洋食品系统中扩张的理想区域。生态系统是否被确定为粮食生产的潜在新网站,或者是否已有长期粮食生产活动,适当管理资源对于生态系统和食品行业的可持续性至关重要。接近可持续管理的一种方法是使用食物网络建模采取携带能力方法。我们的学习区重点介绍了自20世纪60年代以来贻贝水产养殖和贻贝水产养殖和手工渔业的长期实践。使用生态建模与EcoPath软件,我们计算了当前的生态承载能力和系统的生产能力。补充这一新分析,我们对生态系统生态指标进行了审查,以比较相对承载能力。我们发现目前的贻贝水产养殖生物量(1718吨KM(-2))已超过生态承载力(773吨KM(-2)),但仍低于生产能力(2164吨KM(-2))。基于EcoPATH成熟指数和鞣法指数输出值,RIA DE AROUSA可被认为是相对于其他沿海和河口系统的成熟生态系统。这种高水平的成熟度可能被解释为该系统的抵御能力,以应对随着时间的推移所带来的粮食生产和人类活动的变化。

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