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Importance of functional biodiversity and species-specific traits of benthic fauna for ecosystem functions in marine sediment

机译:底栖动物的功能性生物多样性和物种特质对于海洋沉积物中生态系统功能的重要性

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摘要

Fauna have been found to regulate important biogeochemical properties and ecosystem functions in benthic environments. In this study, we focused on how functional biodiversity and species-specific traits of benthic macrofauna affect key ecosystem functions related to organic matter mineralization and cycling of nutrients in surface sediments. Dominant benthic invertebrates from the Baltic Sea and the Skagerrak were classified into functional groups in accordance with their behaviour, feeding and sediment reworking activities. Macrofauna species were added in different combinations to defaunated Baltic sediments in 2 parallel microcosm systems fuelled with brackish and marine water. In total, there were 12 treatments that differed in terms of functional diversity of benthic fauna. The experiments demonstrated that faunal activities directly affected benthic oxygen and nutrient fluxes, sediment reactivity and pore-water distribution under both Baltic and Skagerrak conditions. Benthic fluxes, sediment reactivity and pore-water distribution were similar in Baltic and Skagerrak treatments, in which the same functional biodiversity and species-specific traits of benthic macrofauna were observed. Although no significant effects of functional biodiversity could be detected under Baltic or Skagerrak conditions, treatments with bioturbating fauna from the Skagerrak enhanced oxygen consumption and nutrient fluxes compared to treatments with Baltic fauna and Skagerrak fauna with functional groups similar (parallel) to the Baltic fauna. Moreover, species-specific traits related to the Skagerrak fauna (e.g. the thalassinid shrimp Calocaris macandreae) exceeded the effects of all other faunal treatments. This suggests that species-specific traits of macrofauna may override species richness and functional biodiversity of macrofauna when regulating important ecosystem properties and functions in benthic environments.
机译:已经发现动物在底栖环境中调节重要的生物地球化学特性和生态系统功能。在这项研究中,我们重点研究底栖大型动物的功能性生物多样性和特定物种的特征如何影响与有机物矿化和表层沉积物中养分循环相关的关键生态系统功能。来自波罗的海和斯卡格勒克的主要底栖无脊椎动物根据其行为,摄食和沉积物再加工活动被分为功能组。在两个咸淡水和海水共同作用的平行缩微系统中,以不同的组合将大型动植物物种添加到被破坏的波罗的海沉积物中。总共有12种处理方法,在底栖动物的功能多样性方面有所不同。实验表明,在波罗的海和斯卡格拉克条件下,动物活动直接影响着底栖氧气和养分通量,沉积物反应性和孔隙水分布。在波罗的海和Skagerrak处理中,底栖通量,沉积物反应性和孔隙水分布相似,在底栖大型动物中观察到相同的功能生物多样性和物种特异性。尽管在波罗的海或Skagerrak的条件下无法检测到功能性生物多样性的显着影响,但与具有与波罗的海动物类似(平行)的官能团的波罗的海动物和Skagerrak动植物相比,对Skagerrak的生物扰动动物进行的处理增加了氧气的消耗和营养通量。此外,与Skagerrak动物区系相关的特定物种性状(例如,拟南芥虾Calocaris macandreae)超过了所有其他动物区系处理的影响。这表明,在调节底栖环境中重要的生态系统特性和功能时,大型动物的特定物种性状可能会超过大型动物的物种丰富度和功能性生物多样性。

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