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A meta-analysis of multiple stressors on seagrasses in the context of marine spatial cumulative impacts assessment

机译:海洋空间累计影响评估背景下海草多重压力源的荟萃分析

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Humans are placing more strain on the world’s oceans than ever before. Furthermore, marine ecosystems are seldom subjected to single stressors, rather they are frequently exposed to multiple, concurrent stressors. When the combined effect of these stressors is calculated and mapped through cumulative impact assessments, it is often assumed that the effects are additive. However, there is increasing evidence that different combinations of stressors can have non-additive impacts, potentially leading to synergistic and unpredictable impacts on ecosystems. Accurately predicting how stressors interact is important in conservation, as removal of certain stressors could provide a greater benefit, or be more detrimental than would be predicted by an additive model. Here, we conduct a meta-analysis to assess the prevalence of additive, synergistic, and antagonistic stressor interaction effects using seagrasses as case study ecosystems. We found that additive interactions were the most commonly reported in seagrass studies. Synergistic and antagonistic interactions were also common, but there was no clear way of predicting where these non-additive interactions occurred. More studies which synthesise the results of stressor interactions are needed to be able to generalise interactions across ecosystem types, which can then be used to improve models for assessing cumulative impacts.
机译:人类在世界上的海洋上的压力比以往任何时候都更加紧张。此外,海洋生态系统很少受到单一的压力源,而是它们经常暴露于多个并发压力。当通过累积影响评估计算并映射这些压力源的组合效果时,通常认为效果是添加剂的。然而,有越来越多的证据表明,压力源的不同组合可以具有非加性影响,可能导致对生态系统的协同和不可预测的影响。准确地预测压力源在保护方面是如何重要的,因为某些压力源的去除可以提供更大的益处,或者比添加剂模型预测更有损害。在这里,我们进行META分析以评估添加剂,协同和拮抗应激源相互作用效应的患病率,以使用海草作为案例研究生态系统。我们发现添加剂相互作用是海草研究中最常见的相互作用。协同和拮抗相互作用也很常见,但没有明确的方式预测这些非添加剂相互作用的位置。需要合成压力源相互作用结果的更多研究能够概括跨生态系统类型的相互作用,然后可以用于改善评估累积影响的模型。

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