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首页> 外文期刊>Oceanologia >Context-dependent consequences of Marenzelleria spp. (Spionidae: Polychaeta) invasion for nutrient cycling in the Northern Baltic Sea
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Context-dependent consequences of Marenzelleria spp. (Spionidae: Polychaeta) invasion for nutrient cycling in the Northern Baltic Sea

机译:Marenzelleria spp的上下文相关后果。 (Spionidae:Polychaeta)入侵为北波罗的海的养分循环

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摘要

Marenzelleria spp. are among the most successful non-native benthic species in the Baltic Sea. These burrowing polychaetes dig deeper than most native Baltic species, performing previously lacking ecosystem functions. We examine evidence from experiments, field sampling and modelling that the introduction of Marenzelleria spp. affects nutrient cycling and biogeochemical processes at the sediment-water interface. Over longer time scales, bioirrigation by Marenzelleria spp. has the potential to increase phosphorus retention in bottom deposits because of deeper oxygen penetration into sediments and formation of a deeper oxidized layer. In contrast, nitrogen fluxes from the sediment increase. As a consequence of a decline of the phosphate concentration and/or rising nitrogen/phosphorus ratio, some Northern Baltic ecosystems may experience improvement of the environment because of mitigation of eutrophication and harmful cyanobacteria blooms. Although it is difficult to unambiguously estimate the ecosystem-level consequences of invasion, in many cases it could be considered as positive due to increased structural and functional diversity. The long-term interactions with the native fauna still remain unknown, however, and in this paper we highlight the major knowledge gaps.
机译:Marenzelleria spp。是波罗的海最成功的非原生底栖物种之一。这些穴居多毛羚比大多数本地波罗的海物种更深入地挖掘,表现出以前缺乏生态系统的功能。我们从实验,现场采样和建模中检查了引入Marenzelleria spp的证据。影响沉积物-水界面的养分循环和生物地球化学过程。在更长的时间范围内,Marenzelleria spp进行了生物灌溉。由于氧气更深地渗透到沉积物中并形成更深的氧化层,因此有可能增加磷在底部沉积物中的保留。相反,来自沉积物的氮通量增加。由于磷酸盐浓度的下降和/或氮/磷比率的上升,一些北部波罗的海生态系统可能会由于富营养化的缓解和有害的蓝藻水华而遭受环境的改善。尽管很难一目了然地估计出入侵对生态系统的影响,但由于结构和功能多样性的增加,在许多情况下可以将其视为积极的。然而,与本地动物的长期互动仍然未知,在本文中,我们强调了主要的知识差距。

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