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Biological structures as a source of habitat heterogeneity and biodiversity on the deep ocean margins

机译:深海边缘生物结构作为栖息地异质性和生物多样性的来源

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摘要

Biological structures exert a major influence on species diversity at both local and regional scales on deep continental margins. Some organisms use other species as substrates for attachment, shelter, feeding or parasitism, but there may also be mutual benefits from the association. Here, we highlight the structural attributes and biotic effects of the habitats that corals, sea pens, sponges and xenophyo-phores offer other organisms. The environmental setting of the biological structures influences their species composition. The importance of benthic species as substrates seems to increase with depth as the complexity of the surrounding geological substrate and food supply decline. There are marked differences in the degree of mutualistic relationships between habitat-forming taxa. This is especially evident for scleractinian corals, which have high numbers of facultative associates (commensals) and few obligate associates (mutualists), and gorgonians, with their few commensals and many obligate associates. Size, flexibility and architectural complexity of the habitat-forming organism are positively related to species diversity for both sessile and mobile species. This is mainly evident for commensal species sharing a facultative relationship with their host. Habitat complexity is enhanced by the architecture of biological structures, as well as by biological interactions. Colony morphology has a great influence on feeding efficiency for suspension feeders. Suspension feeding, habitat-forming organisms modify the environment to optimize their food uptake. This environmental advantage is also passed on to associated filter-feeding species. These effects are poorly understood but represent key points for understanding ecosystems and biodiversity on continental margins. In this paper we explore the contributions of organisms and the biotic structures they create (rather than physical modifications) to habitat heterogeneity and diversity on the deep continental margins.
机译:在深大陆边缘的地方和区域尺度上,生物结构都对物种多样性产生重大影响。一些生物使用其他物种作为附着,庇护,喂养或寄生的底物,但这种结合也可能带来互惠互利。在这里,我们重点介绍了珊瑚,海笔,海绵和异种植物提供其他生物的栖息地的结构特征和生物效应。生物结构的环境设置会影响其物种组成。随着周围地质基质的复杂性和食物供应的减少,底栖生物作为基质的重要性似乎随着深度的增加而增加。形成栖息地的分类单元之间的相互关系程度存在明显差异。对于巩膜珊瑚而言,这尤其明显,它们的兼职伙伴(通俗)数量很多,专心的同伴(互助主义者)和高哥氏珊瑚,他们的礼俗很少,而专心的伴侣很多。形成栖息地的生物的大小,灵活性和建筑复杂性与无柄和活动物种的物种多样性呈正相关。这对于共生物种与其寄主具有亲缘关系是很明显的。生物结构的结构以及生物相互作用增加了栖息地的复杂性。菌落形态对悬浮喂食器的喂食效率有很大影响。悬浮喂养,形成栖息地的生物会改变环境,以优化食物摄取。这种环境优势也传给了相关的滤食物种。人们对这些影响了解甚少,但代表了了解大陆边缘的生态系统和生物多样性的关键点。在本文中,我们探索了生物及其创造的生物结构(而不​​是物理修饰)对深大陆边缘生境异质性和多样性的贡献。

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