首页> 外文期刊>Oikos: A Journal of Ecology >Influence of ecosystem engineers on ecosystem processes is mediated by lake sediment properties.
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Influence of ecosystem engineers on ecosystem processes is mediated by lake sediment properties.

机译:生态系统工程师对生态系统过程的影响是由湖泊沉积物特性介导的。

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Invasive species may impact biotic community structure, ecosystem processes, and associated goods and services. Their impact may be especially strong when they also serve as ecosystem engineers (i.e. organisms affecting the physical habitat and resources for other species). Dreissenid mussels fill both these roles, having invaded the Laurentian Great Lakes in the late 1980 s, and also serve as ecosystem engineers by altering nutrient fluxes and influencing the microbial food web through direct nutrient release and excretion of feces and pseudo-feces at the water-sediment interface. We conducted laboratory experiments to investigate how the different functional traits of invasive quagga mussels (filtering activity and direct nutrient release) and native chironomid larvae (tube building and bioirrigation) interact with lake sediment of differing organic matter content to influence biogeochemical fluxes and water quality. Our results showed that sediment reworking and ventilation activities by chironomid larvae increased oxygen penetration in the sediment, affecting primarily pore water chemistry, whereas invasive mussels enhanced nutrient releases in the surface water. However, sediment organic matter modulated the effects of ecosystem engineers on system-level processes; chironomids had a greater influence on sediment reworking and microbial-mediated processes in organic-rich sediments, whereas quagga mussels enhanced nutrient concentrations in the overlying water of organic-poor sediments. These results have management implications, as the effects of invasive mussels on the biogeochemical functioning in the Great Lakes region and elsewhere can alter system bioenergetics and promote harmful algal blooms.
机译:入侵物种可能影响生物群落结构,生态系统过程以及相关的商品和服务。当他们还担任生态系统工程师时(即影响其他物种的自然栖息地和资源的生物),其影响可能会特别强烈。 Dreissenid贻贝扮演了这两个角色,在1980年代后期入侵了劳伦大湖,并通过改变养分通量并通过直接养分的释放以及粪便和假粪便在水中的排泄来影响微生物食物网而充当生态系统工程师。 -sediment接口。我们进行了实验室实验,以研究侵入性拟贝类贻贝的不同功能特征(过滤活性和直接养分释放)和天然拟虫幼虫(试管建造和生物灌溉)如何与不同有机物含量的湖泊沉积物相互作用,从而影响生物地球化学通量和水质。我们的结果表明,尺虫幼虫对沉积物的再加工和通风活动增加了氧气在沉积物中的渗透,主要影响了孔隙水的化学性质,而入侵贻贝则增加了地表水中养分的释放。但是,沉积物有机物调节了生态系统工程师对系统级过程的影响。手足类动物对富含有机物的沉积物的沉积物再加工和微生物介导的过程影响更大,而杂种贻贝则提高了上层有机质较差沉积物的水中的养分浓度。这些结果具有管理意义,因为贻贝对大湖区和其他地区生物地球化学功能的影响可以改变系统的生物能,并促进有害的藻华。

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