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沿海生境可作为底栖动物群落分类学、功能和营养结构的替代物。

Coastal habitats as surrogates for taxonomic, functional and trophic structures of benthic faunal communities.

机构信息

Åbo Akademi University, Department of Biosciences, Environmental and Marine Biology, Turku, Finland.

出版信息

PLoS One. 2013 Oct 22;8(10):e78910. doi: 10.1371/journal.pone.0078910. eCollection 2013.

Abstract

Due to human impact, there is extensive degradation and loss of marine habitats, which calls for measures that incorporate taxonomic as well as functional and trophic aspects of biodiversity. Since such data is less easily quantifiable in nature, the use of habitats as surrogates or proxies for biodiversity is on the rise in marine conservation and management. However, there is a critical gap in knowledge of whether pre-defined habitat units adequately represent the functional and trophic structure of communities. We also lack comparisons of different measures of community structure in terms of both between- (β) and within-habitat (α) variability when accounting for species densities. Thus, we evaluated a priori defined coastal habitats as surrogates for traditional taxonomic, functional and trophic zoobenthic community structure. We focused on four habitats (bare sand, canopy-forming algae, seagrass above- and belowground), all easily delineated in nature and defined through classification systems. We analyzed uni- and multivariate data on species and trait diversity as well as stable isotope ratios of benthic macrofauna. A good fit between habitat types and taxonomic and functional structure was found, although habitats were more similar functionally. This was attributed to within-habitat heterogeneity so when habitat divisions matched the taxonomic structure, only bare sand was functionally distinct. The pre-defined habitats did not meet the variability of trophic structure, which also proved to differentiate on a smaller spatial scale. The quantification of trophic structure using species density only identified an epi- and an infaunal unit. To summarize the results we present a conceptual model illustrating the match between pre-defined habitat types and the taxonomic, functional and trophic community structure. Our results show the importance of including functional and trophic aspects more comprehensively in marine management and spatial planning.

摘要

由于人类的影响,海洋生境广泛退化和丧失,因此需要采取措施,将生物多样性的分类学以及功能和营养方面结合起来。由于这些数据在自然界中较难量化,因此在海洋保护和管理中,越来越多地使用生境作为生物多样性的替代物或代理。然而,人们对于预先定义的生境单位是否能充分代表群落的功能和营养结构知之甚少。我们还缺乏在考虑物种密度时,对于不同群落结构衡量标准的比较,包括生境之间(β)和生境内(α)变异性。因此,我们评估了预先定义的沿海生境作为传统分类学、功能和营养动物群群落结构的替代物。我们专注于四种生境(裸沙、有冠藻类、海草地上和地下),这些生境在自然界中很容易划定,并通过分类系统进行定义。我们分析了物种和特征多样性以及底栖大型动物稳定同位素比值的单变量和多变量数据。发现生境类型与分类学和功能结构之间具有很好的拟合度,尽管生境在功能上更为相似。这归因于生境内的异质性,因此当生境划分与分类结构相匹配时,只有裸沙在功能上具有独特性。预先定义的生境无法满足营养结构的变异性,而这种变异性也被证明是在较小的空间尺度上发生的。仅使用物种密度来量化营养结构只能识别出一个表生和一个底栖单元。为了总结结果,我们提出了一个概念模型,说明了预先定义的生境类型与分类学、功能和营养群落结构之间的匹配关系。我们的结果表明,在海洋管理和空间规划中,更全面地纳入功能和营养方面非常重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5219/3805526/9595a79d2f90/pone.0078910.g001.jpg

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