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首页> 外文期刊>The Journal of Applied Ecology >Structural and functional trends indicate fishing pressure on marine fish assemblages
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Structural and functional trends indicate fishing pressure on marine fish assemblages

机译:结构和功能的趋势表明钓鱼海洋鱼类组合的压力

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1. Conservation science increasingly focuses on how ecosystem functioning is affected by anthropogenic pressures, which implies an understanding of the structural and functional changes in biological assemblages and requires indicators to detect such changes within a suitable time frame. 2. A novel approach that combines the spatial analysis of fishing gradients (based on vessel monitoring system records) with distance-based linear models was used to assess the response of several functional and structural metrics of fish assemblages to gradients of trawling, within four distinct habitat types. In addition, critical thresholds of trawling intensity were identified for the most sensitive metrics through piecewise regression models. 3. Overall, total biomass and dominance (i.e. number of species that make up 90% of the total biomass) metrics as well as metrics representing vulnerable features (such as chondrichthyes, species with very low resilience and sedentary species) were shown to be sensitive to fishing. Our results suggest that decreasing trends in these indicators are likely to be associated with direct and indirect fishing effects acting synergistically on specific features of fish assemblages leading to its homogenization, with likely impacts on ecosystems resilience. 4. Critical thresholds at high, medium and low fishing intensity levels were identified depending on the metric used to assess fishing impacts, suggesting that it is difficult to define a single global target for fishing management as it ultimately will depend on management and conservation objectives (e.g. maintenance of biomass vs. maintenance of structure and function). 5. Synthesis and applications. A key goal of the applied approach was to provide short-term indicators that are sensitive to gradients of trawling intensity and can be extrapolated to a broader geographical region. The identification of thresholds of fishing pressure that fish assemblages can withstand before ecosystem functioning is altered is key for the development of indicators as warning mechanisms, as well as to assess performance measures for management. Understanding responses to other pressure sources (e.g. pollution, dredging) requires further research, and combining an integrative functional traits approach with a wider range of pressures may help make this achievable.
机译:1. 生态系统功能的影响如何人为的压力,这意味着一个对结构和功能的理解生物组合和要求的变化指标内检测到这种变化合适的时间框架。结合了空间分析的钓鱼梯度(基于船舶监控系统记录)和基于距离的线性模型用于评估响应的几个功能鱼组合和结构指标拖网捕鱼的梯度,在四个不同生境类型。拖网捕捞强度是确定的通过分段最敏感的指标回归模型。优势(即数量的物种组成总生物量的90%)指标以及指标代表脆弱的特性(如软骨鱼纲、物种与韧性很低和久坐不动的物种)被证明是敏感的去钓鱼。这些指标可能的趋势与直接和间接相关的钓鱼影响作用具体表现为协同作用鱼组合的特点导致的均质化,可能对生态系统的影响弹性。中等强度水平和低钓鱼根据指标用来评估渔业的影响,这表明它是很困难的定义一个全局目标钓鱼最终将取决于管理(如管理和保护目标。生物量的维护与维修结构和功能)。应用程序。是提供短期指标是什么敏感的拖网捕捞强度和梯度可以外推到一个更广泛的地理吗地区。钓鱼,鱼组合可以压力承受在生态系统功能改变发展的关键指标是预警机制,以及评估性能管理措施。理解对其他压力来源的反应(如污染、疏浚)需要进一步一个综合性研究,并结合功能特征的方法与更大范围的压力可以帮助使这个可以实现的。

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