...
首页> 外文期刊>Ecosystems >Integrating the Concept of Resilience into an Ecosystem Approach to Bivalve Aquaculture Management
【24h】

Integrating the Concept of Resilience into an Ecosystem Approach to Bivalve Aquaculture Management

机译:将恢复力的概念集成为双向水产养殖管理的生态系统方法

获取原文
获取原文并翻译 | 示例
           

摘要

Bivalve aquaculture has become increasingly important for marine protein production and is an alternative to exploiting natural resources. Its further and sustainable development should follow an ecosystem approach, to maintain both biodiversity and ecosystem functioning. The identification of critical thresholds to development remains difficult. The present work aims at combining the calculation of the system's ecological carrying capacity (ECC) with the ecosystem view of resilience for a bay system exposed to bivalve (scallop) aquaculture. Using a trophic food-web model, a stepwise further expansion of culture activities was simulated, and the impact on the system was evaluated twofold: First, a recently developed approach to estimating ECC was used, and second, a resilience indicator was calculated, which is based on the distribution of consumption flows within the trophic network (sensu Arreguin-Sanchez in Ecol Model 272: 27-276, 2014). Results suggest that a culture expansion beyond present-day scale would (a) cause a shift in community composition towards a system dominated by secondary consumers, (b) lead to the loss of system compartments, affecting ecosystem functioning, and (c) result in a decrease in resilience, emphasizing the need to regulate aquaculture activities. The applicability and potential of this presented method in the context of an ecosystem-based approach to aquaculture is discussed. This work aims at adding to the ongoing discussion on sustainable bivalve aquaculture and is expected to help guide aquaculture management.
机译:双级水产养殖对海洋蛋白质生产越来越重要,是利用自然资源的替代方案。其进一步和可持续的发展应遵循生态系统方法,以维持生物多样性和生态系统运作。识别对发展的关键阈值仍然困难。本工作旨在将系统生态承载能力(ECC)的计算与暴露于双架(扇贝)水产养殖的海湾系统的恢复力的生态系统视图相结合。使用营养食品网模型,模拟培养活性的逐步进一步扩增,并评估了对系统的影响双重:首先,使用最近开发的估算ECC的方法,并计算了弹性指标,其中基于营养网络内的消费流量的分布(Sensu Arrecuin-Sanchez在Ecol Model 272:27-276,2014)中)。结果表明,在当天规模之外的文化扩张将(a)归因于社区组成的转变对二次消费者主导的系统,(b)导致系统隔间的损失,影响生态系统运作,(c)降低弹性,强调需要规范水产养殖活动。讨论了在基于生态系统的水产养殖方法的上下文中的这种方法的适用性和潜力。这项工作旨在增加关于可持续双抗性水产养殖的持续讨论,预计将有助于指导水产养殖管理。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号