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Nutrient fluxes from water to land: seabirds affect plant nutrient status on Gulf of California islands.营养物质从水到陆地的流动:海鸟影响加利福尼亚湾岛屿上植物的营养状况。
Oecologia. 1999 Mar;118(3):324-332. doi: 10.1007/s004420050733.
2
Cascading effects of predation risk determine how marine predators become terrestrial prey on an oceanic island.捕食风险的级联效应决定了海洋捕食者如何在大洋岛屿上成为陆地猎物。
Ecology. 2016 Dec;97(12):3530-3537. doi: 10.1002/ecy.1614.
3
Precipitation alters interactions in a grassland ecological community.降水会改变草原生态群落中的相互作用。
J Anim Ecol. 2017 Mar;86(2):262-272. doi: 10.1111/1365-2656.12614. Epub 2017 Jan 4.
4
Earlier nesting by generalist predatory bird is associated with human responses to climate change.食性广泛的捕食性鸟类提前筑巢与人类对气候变化的应对有关。
J Anim Ecol. 2017 Jan;86(1):98-107. doi: 10.1111/1365-2656.12604. Epub 2016 Nov 21.
5
Evidence for climate-driven synchrony of marine and terrestrial ecosystems in northwest Australia.澳大利亚西北部海洋和陆地生态系统受气候驱动同步变化的证据。
Glob Chang Biol. 2016 Aug;22(8):2776-86. doi: 10.1111/gcb.13239. Epub 2016 Mar 11.
6
Increasing water cycle extremes in California and in relation to ENSO cycle under global warming.全球变暖背景下加利福尼亚州水循环极端事件增加及其与厄尔尼诺-南方涛动(ENSO)循环的关系。
Nat Commun. 2015 Oct 21;6:8657. doi: 10.1038/ncomms9657.
7
Tackling extremes: challenges for ecological and evolutionary research on extreme climatic events.应对极端情况:极端气候事件的生态与进化研究面临的挑战
J Anim Ecol. 2016 Jan;85(1):85-96. doi: 10.1111/1365-2656.12451. Epub 2015 Nov 14.
8
Ecological and evolutionary impacts of changing climatic variability.气候变化变异性的生态和进化影响。
Biol Rev Camb Philos Soc. 2017 Feb;92(1):22-42. doi: 10.1111/brv.12216. Epub 2015 Aug 20.
9
Environmental variability uncovers disruptive effects of species' interactions on population dynamics.环境变异性揭示了物种间相互作用对种群动态的干扰效应。
Proc Biol Sci. 2015 Aug 7;282(1812):20151126. doi: 10.1098/rspb.2015.1126.
10
Using predator-prey theory to predict outcomes of broadscale experiments to reduce apparent competition.运用捕食者-猎物理论预测大规模实验结果以减少似然竞争。
Am Nat. 2015 May;185(5):665-79. doi: 10.1086/680510. Epub 2015 Mar 6.

厄尔尼诺/南方涛动驱动的降雨脉冲通过与老鼠的明显竞争放大了猫头鹰对海鸟的捕食。

El Niño/Southern Oscillation-driven rainfall pulse amplifies predation by owls on seabirds via apparent competition with mice.

机构信息

Department of Biological Sciences, Simon Fraser University, Burnaby, British Columbia, Canada V5A 1S6

Channel Islands National Park, 1901 Spinnaker Drive, Ventura, CA 93001, USA.

出版信息

Proc Biol Sci. 2018 Oct 24;285(1889):20181161. doi: 10.1098/rspb.2018.1161.

DOI:10.1098/rspb.2018.1161
PMID:30355706
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6234882/
Abstract

Most approaches for assessing species vulnerability to climate change have focused on direct impacts via abiotic changes rather than indirect impacts mediated by changes in species interactions. Changes in rainfall regimes may influence species interactions from the bottom-up by increasing primary productivity in arid environments, but subsequently lead to less predictable top-down effects. Our study demonstrates how the effects of an EL Niño/Southern Oscillation (ENSO)-driven rainfall pulse ricochets along a chain of interactions between marine and terrestrial food webs, leading to enhanced predation of a vulnerable marine predator on its island breeding grounds. On Santa Barbara Island, barn owls () are the main predator of a nocturnal seabird, the Scripps's murrelet (), as well as an endemic deer mouse. We followed the links between rainfall, normalized difference vegetation index and subsequent peaks in mouse and owl abundance. After the mouse population declined steeply, there was approximately 15-fold increase in the number of murrelets killed by owls. We also simulated these dynamics with a mathematical model and demonstrate that bottom-up resource pulses can lead to subsequent declines in alternative prey. Our study highlights the need for understanding how species interactions will change with shifting rainfall patterns through the effects of ENSO under global change.

摘要

大多数评估物种对气候变化脆弱性的方法都侧重于通过非生物变化的直接影响,而不是通过物种相互作用变化介导的间接影响。降雨模式的变化可能会通过增加干旱环境中的初级生产力,从底层向上影响物种相互作用,但随后会导致更不可预测的自上而下的影响。我们的研究表明,厄尔尼诺/南方涛动 (ENSO) 驱动的降雨脉冲如何沿着海洋和陆地食物网之间的一系列相互作用链反弹,导致脆弱的海洋捕食者在其岛屿繁殖地的捕食增加。在圣巴巴拉岛, barn 猫头鹰 () 是一种夜间海鸟,即 Scripps's murrelet () 的主要捕食者,也是一种特有鹿鼠。我们跟踪了降雨量、归一化差异植被指数与随后老鼠和猫头鹰数量峰值之间的联系。在老鼠数量急剧下降之后,猫头鹰杀死的 murrelets 数量增加了约 15 倍。我们还使用数学模型模拟了这些动态,并表明底层资源脉冲会导致替代猎物随后减少。我们的研究强调了需要了解随着全球变化下 ENSO 的影响,物种相互作用将如何随着降雨模式的变化而变化。