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Seafloor heterogeneity influences the biodiversity–ecosystem functioning relationships in the deep sea

机译:海底异质性影响深海中生物多样性与生态系统的功能关系

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摘要

Theoretical ecology predicts that heterogeneous habitats allow more species to co-exist in a given area. In the deep sea, biodiversity is positively linked with ecosystem functioning, suggesting that deep-seabed heterogeneity could influence ecosystem functions and the relationships between biodiversity and ecosystem functioning (BEF). To shed light on the BEF relationships in a heterogeneous deep seabed, we investigated variations in meiofaunal biodiversity, biomass and ecosystem efficiency within and among different seabed morphologies (e.g., furrows, erosional troughs, sediment waves and other depositional structures, landslide scars and deposits) in a narrow geo-morphologically articulated sector of the Adriatic Sea. We show that distinct seafloor morphologies are characterized by highly diverse nematode assemblages, whereas areas sharing similar seabed morphologies host similar nematode assemblages. BEF relationships are consistently positive across the entire region, but different seabed morphologies are characterised by different slope coefficients of the relationship. Our results suggest that seafloor heterogeneity, allowing diversified assemblages across different habitats, increases diversity and influence ecosystem processes at the regional scale, and BEF relationships at smaller spatial scales. We conclude that high-resolution seabed mapping and a detailed analysis of the species distribution at the habitat scale are crucial for improving management of goods and services delivered by deep-sea ecosystems.
机译:理论生态学预测,异类生境允许在给定区域内更多物种共存。在深海,生物多样性与生态系统功能正相关,这表明深海底异质性可能影响生态系统功能以及生物多样性与生态系统功能之间的关系。为了阐明异质深海床中的BEF关系,我们研究了不同海床形态(例如,犁沟,侵蚀槽,沉积波和其他沉积结构,滑坡疤痕和沉积物)内和之间的动植物生物多样性,生物量和生态系统效率的变化。在亚得里亚海狭窄的地貌铰接区域。我们显示出不同的海底形态特征是高度多样化的线虫组合,而共享相似海底形态的区域则具有相似的线虫组合。 BEF关系在整个区域始终是正的,但不同的海底形态特征是关系的斜率系数不同。我们的结果表明,海底异质性允许在不同生境之间形成多样化的组合,增加了多样性并影响了区域规模的生态系统过程,并影响了较小空间尺度上的BEF关系。我们得出的结论是,高分辨率海床制图和栖息地规模的物种分布的详细分析对于改善对深海生态系统提供的商品和服务的管理至关重要。

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