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同时入侵使斑马贻贝和水的清澈度脱钩。

Simultaneous invasion decouples zebra mussels and water clarity.

机构信息

Minnesota Department of Natural Resources, St. Paul, MN, USA.

Department of Biology, University of Minnesota Duluth, Duluth, MN, USA.

出版信息

Commun Biol. 2022 Dec 22;5(1):1405. doi: 10.1038/s42003-022-04355-z.

Abstract

Species invasions are a leading threat to ecosystems globally, but our understanding of interactions among multiple invasive species and their outcomes on ecosystem properties is undeveloped despite their significance to conservation and management. Here we studied a large lake in Minnesota, USA, that experienced a simultaneous surge in invasive zebra mussel and spiny water flea populations. A long-term (2000-2018) dataset offered a rare opportunity to assess whole-ecosystem shifts following the co-invasion. Within two years, the native crustacean zooplankton community declined abruptly in density and productivity (-93% and -91%, respectively). Summer phytoplankton abundance and water clarity remained stable across the time series, an unexpected outcome given the high density of zebra mussels in the lake. Observational data and modeling indicate that removal of native herbivorous zooplankton by the predatory spiny water flea reduced zooplankton grazing pressure enough to compensate new grazing losses due to zebra mussels, resulting in a zero net effect on phytoplankton abundance and water clarity despite a wholesale shift in secondary production from the pelagic to the benthic food web. This study reveals the extent of direct and indirect effects of two aquatic invaders on food-web processes that cancel shifts in water clarity, a highly valued ecosystem service.

摘要

物种入侵是全球生态系统的主要威胁,但尽管它们对保护和管理具有重要意义,我们对多种入侵物种之间的相互作用及其对生态系统特性的影响的理解仍不充分。在这里,我们研究了美国明尼苏达州的一个大型湖泊,该湖泊的斑马贻贝和刺水蚤种群同时激增。一个长期(2000-2018 年)的数据集提供了一个难得的机会来评估共同入侵后整个生态系统的变化。在两年内,本地甲壳类浮游动物的密度和生产力急剧下降(分别为 93%和 91%)。尽管湖中斑马贻贝密度很高,但浮游植物的丰度和水的清澈度在整个时间序列中保持稳定,这是一个出人意料的结果。观测数据和模型表明,捕食性刺水蚤对本地草食性浮游动物的捕食减少了浮游动物的摄食压力,足以补偿由于斑马贻贝而产生的新的摄食损失,尽管浮游生物丰度和水清澈度发生了全面变化,但对浮游植物丰度和水清澈度没有净影响,因为食物网从浮游生物向底栖食物网的转变。这项研究揭示了两种水生入侵物种对食物网过程的直接和间接影响的程度,这些过程抵消了水清澈度的变化,这是一种非常有价值的生态系统服务。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bd5f/9780222/457a29e9bbba/42003_2022_4355_Fig1_HTML.jpg

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