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繁殖阶段和组织同位素一致性表明,北极海洋鸟类的生态位宽度在群体水平上具有灵活性。

Breeding stage and tissue isotopic consistency suggests colony-level flexibility in niche breadth of an Arctic marine bird.

机构信息

Department of Integrative Biology, University of Windsor, Windsor, ON, Canada.

Department of Integrative Biology, University of Guelph, 50 Stone Road East, Guelph, ON, N1H 2W1, Canada.

出版信息

Oecologia. 2022 Dec;200(3-4):503-514. doi: 10.1007/s00442-022-05267-9. Epub 2022 Oct 13.

Abstract

Organisms must overcome environmental limitations to optimize their investment in life history stages to maximize fitness. Human-induced climate change is generating increasingly variable environmental conditions, impacting the demography of prey items and, therefore, the ability of consumers to successfully access resources to fuel reproduction. While climate change effects are especially pronounced in the Arctic, it is unknown whether organisms can adjust foraging decisions to match such changes. We used a 9-year blood plasma δC and δN data set from over 700 pre-breeding Arctic common eiders (Somateria mollissima) to assess breeding-stage and inter-annual variation in isotopic niche, and whether inferred trophic flexibility was related to colony-level breeding parameters and environmental variation. Eider blood isotope values varied both across years and breeding stages, and combined with only weak relationships between isotopic metrics and environmental conditions suggests that pre-breeding eiders can make flexible foraging decisions to overcome constraints imposed by local abiotic conditions. From an investment perspective, an inshore, smaller isotopic niche predicted a greater probability to invest in reproduction, but was not related to laying phenology. Proximately, our results provide evidence that eiders breeding in the Arctic can alter their diet at the onset of reproductive investment to overcome increases in the energetic demand of egg production. Ultimately, Arctic pre-breeding common eiders may have the stage- and year-related foraging flexibility to respond to abiotic variation to reproduce successfully.

摘要

生物必须克服环境限制,优化其在生命史阶段的投资,以最大限度地提高适应性。人类引起的气候变化正在产生越来越多变的环境条件,影响猎物的种群动态,从而影响消费者成功获取资源以繁殖的能力。虽然气候变化的影响在北极地区尤为明显,但目前还不清楚生物是否能够调整觅食决策以适应这些变化。我们使用了 700 多只北极普通潜鸭(Somateria mollissima)在繁殖前 9 年的血浆 δC 和 δN 数据集,评估了繁殖阶段和年际同位素生态位的变化,以及推断的营养灵活性是否与群体繁殖参数和环境变化有关。潜鸭的血液同位素值在不同年份和繁殖阶段都有所不同,与环境条件的关系较弱,这表明繁殖前的潜鸭可以做出灵活的觅食决策,以克服当地非生物条件造成的限制。从投资的角度来看,近海、较小的同位素生态位预测了更大的繁殖投资概率,但与产卵期没有关系。从直接的角度来看,我们的研究结果提供了证据表明,在北极繁殖的潜鸭可以在开始繁殖投资时改变饮食,以克服产蛋过程中能量需求的增加。最终,北极繁殖前的普通潜鸭可能具有与阶段和年份相关的觅食灵活性,以应对生物变异性,从而成功繁殖。

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