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首页> 外文期刊>Marine ecology progress series >Coastal ecological engineering and habitat restoration: incorporating biologically diverse boulder habitat
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Coastal ecological engineering and habitat restoration: incorporating biologically diverse boulder habitat

机译:沿海生态工程和栖息地恢复:纳入生物多样性的巨石栖息地

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Ecological engineering is increasingly being studied and applied in order to reverse declines of biological diversity caused by coastal urbanisation and habitat degradation. As methods become more sophisticated and the theoretical framework more advanced, engineering of more complex and biologically diverse habitat types becomes possible. This review discusses the benefits of incorporating boulder habitat, which provides a unique combination of intermediate stability and high structural complexity, and can be occupied by many rare species. The inclusion of this habitat into engineered coastlines would therefore represent an important outcome for coastal ecological engineering by providing habitat for these species. Some methods are already in use to restore degraded boulder habitat; these methods should strive to closely mimic boulder habitat because semi-natural habitats (e.g. building rubble at bases of seawalls) have not been found to support rare species at this stage. Creation of new boulder habitat is also valuable for important fisheries (e.g. Haliotis spp.). Methods will be improved by focusing on small-scale microhabitats created by boulders and how these microhabitats provide shelter from locally relevant predators. Boulder habitat can reliably stabilise shorelines whereas alternative ecological engineering options based on littoral vegetation (e.g. mangroves, seagrass or saltmarsh) provide stabilisation involving strong spatiotemporal variability. Ecological engineering methods that include highly novel habitats, such as boulders, will achieve valuable biodiversity outcomes by allowing large-scale increases in along-shore distribution of specialist species. Overall, incorporation of boulder habitat in ecological engineering will help ensure coastal habitats include highly diverse assemblages and important ecological functionality as the pressure to modify coastlines increases.
机译:为了逆转沿海城市化和栖息地退化造成的生物多样性下降,越来越多地研究和应用生态工程。随着方法变得越来越复杂,理论框架也越来越先进,对更复杂和生物学上不同的生境类型进行工程化成为可能。这篇评论讨论了融入巨石栖息地的好处,这种栖息地提供了中间稳定性和高结构复杂性的独特组合,并且可以被许多稀有物种占据。因此,通过为这些物种提供栖息地,将该栖息地纳入工程海岸线将代表沿海生态工程的重要成果。已经使用了一些方法来恢复退化的巨石栖息地。这些方法应努力紧密地模仿巨石栖息地,因为在此阶段尚未发现半自然栖息地(例如在海堤底部建造瓦砾)来支持稀有物种。建立新的巨石栖息地对于重要的渔业(例如Haliotis spp。)也很有价值。通过关注巨石造成的小型微生境以及这些微生境如何为当地相关捕食者提供庇护,将改善方法。巨石栖息地可以可靠地稳定海岸线,而基于沿海植被的替代生态工程选择(例如红树林,海草或盐沼)则可以提供稳定的稳定性,并具有很大的时空变异性。包括巨石等新颖生境的生态工程方法,将允许大规模增加专业物种的近岸分布,从而实现有价值的生物多样性成果。总体而言,随着修改海岸线的压力增加,将巨石生境纳入生态工程将有助于确保沿海生境包括高度多样化的组合和重要的生态功能。

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