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贝叶斯网络分析揭示了海蜇 Aurelia aurita 对爱尔兰海生态系统剧变的恢复力。

Bayesian Network Analysis reveals resilience of the jellyfish Aurelia aurita to an Irish Sea regime shift.

机构信息

Pelagic Ecology Research Group, Scottish Oceans Institute, Gatty Marine Laboratory, School of Biology, University of St. Andrews, St Andrews, KY16 8LB, Scotland, UK.

Centre for Biological Diversity, Sir Harold Mitchell Building, School of Biology, University of St. Andrews, St Andrews, KY16 9TF, Scotland, UK.

出版信息

Sci Rep. 2021 Feb 12;11(1):3707. doi: 10.1038/s41598-021-82825-w.

Abstract

Robust time-series of direct observations of jellyfish abundance are not available for many ecosystems, leaving it difficult to determine changes in jellyfish abundance, the possible causes (e.g. climate change) or the consequences (e.g. trophic cascades). We sought an indirect ecological route to reconstruct jellyfish abundance in the Irish Sea: since zooplankton are jellyfish prey, historic variability in zooplankton communities may provide proxies for jellyfish abundance. We determined the Bayesian ecological network of jellyfish-zooplankton dependencies using jellyfish- and zooplankton-abundance data obtained using nets during a 2-week cruise to the Irish Sea in 2008. This network revealed that Aurelia aurita abundance was dependent on zooplankton groups Warm Temperate and Temperate Oceanic as defined by previous zooplankton ecology work. We then determined historic zooplankton networks across the Irish Sea from abundance data from Continuous Plankton Recorder surveys conducted between 1970 and 2000. Transposing the 2008 spatial dependencies onto the historic networks revealed that Aurelia abundance was more strongly dependent over time on sea surface temperature than on the zooplankton community. The generalist predatory abilities of Aurelia may have insulated this jellyfish over the 1985 regime shift when zooplankton composition in the Irish Sea changed abruptly, and also help explain its globally widespread distribution.

摘要

由于许多生态系统缺乏对水母丰度的直接观测时间序列数据,因此难以确定水母丰度的变化、可能的原因(如气候变化)或后果(如营养级联)。我们试图寻找一种间接的生态学途径来重建爱尔兰海域的水母丰度:由于浮游动物是水母的猎物,因此浮游动物群落的历史变异性可能是水母丰度的替代指标。我们使用 2008 年在爱尔兰海域进行的为期两周的航次中使用网获得的水母和浮游动物丰度数据,确定了水母-浮游动物依赖关系的贝叶斯生态网络。该网络表明,Aurelia aurita 的丰度取决于浮游动物群,这些浮游动物群是以前的浮游动物生态学工作定义的暖温带和温带海洋浮游动物群。然后,我们从 1970 年至 2000 年期间进行的连续浮游生物记录器调查的丰度数据中确定了爱尔兰海域的历史浮游动物网络。将 2008 年的空间依赖关系转换到历史网络上表明,Aurelia 的丰度随时间变化与海面温度的相关性比与浮游动物群落的相关性更强。Aurelia 的泛食性捕食能力可能使其在 1985 年生态系统发生变化时免受影响,当时爱尔兰海域的浮游动物组成突然发生变化,这也有助于解释其在全球范围内的广泛分布。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7bf7/7881242/21d013bc4ab2/41598_2021_82825_Fig1_HTML.jpg

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