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Effects of fishing disturbance on benthic communities and secondary production within an intensively fished area

机译:捕捞干扰对密集捕捞区内底栖动物群落和次级生产的影响

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ABSTRACT: Demersal fishing alters seabed habitats and affects the structure and functioning of benthic invertebrate communities. At a critical level of disturbance, such communities may approach an equilibrium disturbed state in which a further increase in disturbance has little additional impact. Such arguments have been used to suggest that an ecosystem approach to fisheries management (EAFM) should protect lightly fished areas and deflect fishing activity into areas that are already intensively fished. In this study, the effects of variation in fishing disturbance on the secondary production, species diversity, abundance, biomass, and community structure of benthic infauna were examined in a region of the German Bight (North Sea) that has been intensively trawled for decades. Variation in fishing disturbance across the study area was determined using automated position registration and vessel monitoring through satellite. Even in such a heavily fished area, linear regression analyses revealed that biomass, species richness, and production decreased significantly with increasing fishing intensity. Although redundancy analyses (RDA) showed that sediment characteristics were influential in determining the structure of the infauna community, partial RDA revealed that fishing continued to have an impact on community structure in terms of biomass. These results suggest that, in implementing an EAFM, managers will need to consider the possibility that, even in areas with high chronic fishing disturbance, further increases in fishing activity may still cause additional damage to benthic invertebrate communities.
机译:摘要:沉水捕鱼改变了海底栖息地,并影响了底栖无脊椎动物群落的结构和功能。在严重的干扰水平上,此类社区可能会达到平衡的干扰状态,在这种状态下,干扰的进一步增加几乎没有其他影响。这些论点已经被用来表明,渔业管理的生态系统方法应该保护轻度捕鱼区,并使捕鱼活动转移到已经密集捕鱼的地区。在这项研究中,研究人员在密集捕捞了数十年的德国海岸线(北海)的一个区域中研究了渔业扰动变化对底栖动物的次级产量,物种多样性,丰度,生物量和群落结构的影响。使用自动位置注册和通过卫星进行的船只监视,确定研究区域内捕鱼干扰的变化。即使在如此严重的捕鱼区,线性回归分析也表明,随着捕鱼强度的增加,生物量,物种丰富度和产量也显着下降。尽管冗余分析(RDA)显示沉积物特征对确定动物群落的结构有影响,但部分RDA显示,捕捞继续对生物量方面的群落结构产生影响。这些结果表明,在实施EAFM时,管理者将需要考虑以下可能性:即使在长期慢性捕鱼干扰严重的地区,捕鱼活动的进一步增加仍可能对底栖无脊椎动物群落造成进一步的损害。

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