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Can transplanting enhance mobile marine invertebrates in ecologically engineered rock pools?

机译:移植能否增强生态工程岩池中可移动的海洋无脊椎动物?

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The field of eco-engineering has burgeoned in recent years in response to the proliferation of artificial structures. Adding water-retaining features to seawalls has been successful in increasing biodiversity relative to the surrounding structure. Artificial rock pools may not, however, completely mimic natural rock pools. Here, we compared natural colonisation, through dispersal and recruitment, of intertidal mobile species to water-retaining flowerpots on seawalls with that into rock pools. This represents the more usual 'passive' approach to ecoengineering where features are built to enhance biodiversity and are allowed to colonise naturally, as opposed to seeding or transplanting organisms to features. While flowerpots supported some mobile species not found on the seawall, other species common on natural shores did not recruit to flowerpots. Thus, in a second experiment we tested the effectiveness of an 'active' approach through transplanting mobile organisms to flowerpots to expedite the colonisation process. For the species examined, however, most individuals did not stay in the flowerpots for more than 24 h after being transplanted. Further understanding of the processes (e.g. dispersal distances, recruitment) influencing colonisation of eco-engineered habitats is needed to effectively inform management of marine infrastructure, particularly for projects targeted at restoration rather than enhancement.
机译:近年来,随着人工结构的激增,生态工程领域迅速发展。在海堤上增加保水功能已成功地增加了相对于周围结构的生物多样性。但是,人造岩石池可能无法完全模仿天然岩石池。在这里,我们比较了潮间带动植物通过散布和募集与在海堤上保水花盆的自然定居以及在岩石池中的自然定居。这代表了生态工程中更常见的“被动”方法,其特征是为了增强生物多样性而建立的,并允许自然地定殖,而不是将生物播种或移植到特征中。花盆支撑着一些在海堤上找不到的活动物种,而自然海岸上常见的其他物种却没有被招募到花盆中。因此,在第二个实验中,我们通过将活动生物移植到花盆中以加快定植过程,测试了“主动”方法的有效性。但是,对于所检查的物种,大多数个体在移植后在花盆中停留的时间都不超过24小时。需要进一步了解影响生态工程栖息地定殖的过程(例如分散距离,募集),以有效地为海洋基础设施的管理提供信息,特别是针对旨在恢复而非增强的项目。

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