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Assessing the performance of artificial reefs as substitute habitat for temperate reef fishes: Implications for reef design and placement

机译:评估人工鱼礁作为温带礁鱼替代栖息地的性能:对礁石设计和放置的影响

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Artificial reefs (ARs) have been advocated and implemented as management tools for recreational fisheries, species conservation and habitat replacement. For ARs to function as substitute habitat for degraded natural reefs, they should perform as dose as possible to local natural reefs, however this is seldom investigated. Here we evaluated the performance of new custom-designed reef structures (CDARs) as fish habitat. As a benchmark for their success, we compared fish abundance, diversity and community composition on CDARs to another commonly used AR type (Reef Balls (RBs)) and nearby natural reefs. Fish were monitored on all reef types over two recruitment seasons at three locations in Port Phillip Bay, Australia. Overall, there were no consistent differences in fish density among reef types, although densities on both AR designs were markedly lower than natural reefs at some locations. However, fish species richness on the CDARs was, on average, 2x higher than natural or RB reefs. There were large dissimilarities in fish community composition among reef types across all locations and years. These dissimilarities declined over time with the CDARs becoming more similar to natural communities than to RB reefs. Our results suggest that CDARs can play a role in reef fish conservation where natural reefs are under threat, supporting natural community structure and enhancing local biodiversity. Overall, our findings suggest that la cation of deployment, rather than design, has a more significant influence on fish abundances on ARs, whereas reef design is an important determinant of species diversity and community structure irrespective of location. ARs represent an important management tool for enhancing fisheries productivity and conservation in areas where reef habitat has been degraded or lost. However, failure to incorporate consideration of reef location and design into future AR deployments may lead to poor performance and failure to achieve restoration or conservation goals. (C) 2019 Elsevier B.V. All rights reserved.
机译:人工鱼礁(ARs)已被提倡并实施为休闲渔业,物种保护和生境替代的管理工具。为了使ARs成为退化的自然礁石的替代栖息地,它们应尽可能地发挥作用于当地的自然礁石,但是很少对此进行研究。在这里,我们评估了新的定制设计的礁石结构(CDAR)作为鱼类栖息地的性能。作为其成功的基准,我们将CDAR上鱼类的丰富度,多样性和群落组成与另一种常用的AR类型(礁球(RB))和附近的自然礁进行了比较。在澳大利亚菲利普港湾的三个地点的两个捕捞季节中,对所有礁石类型的鱼类进行了监测。总体而言,珊瑚礁类型之间的鱼类密度没有一致的差异,尽管两种AR设计的密度在某些位置明显低于天然珊瑚礁。但是,CDAR上鱼类物种的丰富度平均比天然或RB珊瑚礁高2倍。在所有地点和年份,珊瑚礁类型之间的鱼类群落组成存在很大差异。随着时间的流逝,这些差异有所减少,因为CDAR与自然群落的相似程度超过了RB礁。我们的结果表明,CDARs在天然礁受到威胁的礁鱼保护中可以发挥作用,支持天然群落结构并增强当地生物多样性。总体而言,我们的研究结果表明,部署的时间而不是设计时间,对AR上鱼类的丰度有更大的影响,而礁石设计是物种多样性和群落结构的重要决定因素,而不论其位置如何。增强现实是在珊瑚礁栖息地已经退化或丧失的地区,提高渔业生产力和养护的重要管理工具。但是,如果未能将对礁石位置和设计的考虑纳入未来的AR部署中,可能会导致性能不佳以及无法实现恢复或保护目标。 (C)2019 Elsevier B.V.保留所有权利。

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