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Increasing habitat complexity on seawalls: Investigating large- and small-scale effects on fish assemblages

机译:增加海堤的栖息地复杂性:研究对鱼类组合的大规模效果

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Abstract The construction of artificial structures in the marine environment is increasing globally. Eco-engineering aims to mitigate the negative ecological impacts of built infrastructure through designing structures to be multifunctional, benefiting both humans and nature. To date, the focus of eco-engineering has largely been on benefits for benthic invertebrates and algae. Here, the potential effect of eco-engineered habitats designed for benthic species on fish was investigated. Eco-engineered habitats (?¢????flowerpots?¢????) were added to an intertidal seawall in Sydney Harbour, Australia. Responses of fish assemblages to the added habitats were quantified at two spatial scales; large (among seawalls) and small (within a seawall). Data were collected during high tide using cameras attached to the seawall to observe pelagic and benthic fish. At the larger spatial scale, herbivores, planktivores, and invertebrate predators were generally more abundant at the seawall with the added flowerpots, although results were temporally variable. At the smaller spatial scale, certain benthic species were more abundant around flowerpots than at the adjacent control areas of seawall, although there was no general pattern of differences in species density and trophic group abundance of pelagic fish between areas of the seawall with or without added habitats. Although we did not find consistent, statistically significant findings throughout our study, the field of research to improve fish habitat within human-use constraints is promising and important, although it is in its early stages (it is experimental and requires a lot of trial and error). To advance this field, it is important to document when effects were detected, and when they were not, so that others can refine the designs or scale of habitat enhancements or their study approaches (e.g., sampling protocols).
机译:摘要海洋环境中人工结构的构建在全球范围内增加。生态工程旨在减轻建筑基础设施的负面生态影响,通过设计结构是多功能的,使人类和自然都受益。迄今为止,生态工程的重点在于底栖无脊椎动物和藻类的益处。在这里,研究了为鱼类底栖物种设计的生态工程栖息地的潜在影响。生态工程栖息地(?¢????花盆?澳大利亚悉尼港的跨境海堤添加到跨境海堤中。鱼组合对添加栖息地的反应在两个空间尺度上量化;大(海堤)和小(在海堤中)。在高潮期间使用连接到海堤的摄像机来观察骨盆和底栖鱼类的数据。在较大的空间尺度,食草动物,综合体和无脊椎动物捕食者通常在海堤中普遍丰富,虽然结果是在时间上变化的。在空间尺度较小,某些底栖物种周围围绕海堤的邻近控制区域越来越丰富,尽管在海堤区之间的物种密度和营养群体的普遍差异的一般差异,但是没有添加栖息地。虽然我们在我们的研究中没有找到一致的,统计学上的显着发现,但在人类使用限制内改善鱼类栖息地的研究领域是有前途和重要的,尽管它处于早期阶段(它是实验性的并且需要大量的审判和许多试验错误)。要提前此字段,在检测到效果时对文件进行记录,因此其他人可以完善栖息地增强的设计或规模或他们的学习方法(例如,采样协议)。

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