Seabird nutrient subsidy alters size and resource use of functionally important mangrove macroinvertebrates

IF 2.7 3区 环境科学与生态学 Q2 ECOLOGY
Ecosphere Pub Date : 2024-12-18 DOI:10.1002/ecs2.70121
Jenni1fer Appoo, Nicholas A. J. Graham, Christopher W. Jones, Sébastien Jaquemet, Nancy Bunbury
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引用次数: 0

Abstract

Invertebrates have a central role in food webs and ecosystem functioning. By boosting productivity, allochthonous nutrient inputs influence the food webs of recipient communities. Understanding how allochthonous nutrient subsidies affect invertebrates is crucial, particularly in highly productive coastal areas. Here, we examine how mangrove macroinvertebrates are impacted by nutrient-rich guano delivered by nesting seabird populations at Aldabra Atoll in the Indian Ocean. We compare nitrogen and carbon stable isotope ratios and nitrogen composition of basal resources and macroinvertebrate consumers in mangroves with and without nesting seabirds. Seabird-derived nutrient enrichment increased the nitrogen content of basal food sources and herbivorous littorinid gastropods and sesarmid crabs. In mangroves with breeding seabirds, mean carapace widths of sesarmid and omnivorous portunid crabs were 6% and 11% larger, respectively. Isotopic niches of littorinid gastropods and sesarmid crabs were larger and had higher overlap at seabird compared to non-seabird sites. Epiphytic macroalgae and guano comprised >50% of resource contributions to littorinid gastropods and sesarmid crabs at seabird sites. This differed markedly from non-seabird sites where the main resource contributions were 77% mangrove leaves for littorinid gastropods, 36% sediment organic matter, and 41% mangrove leaves for sesarmid crabs. The increased sizes of mangrove crabs suggest that seabird nutrient enrichment can promote mangrove crab fisheries productivity and benefit the provisioning of mangrove ecosystem services. By shifting resource use of functionally important macroinvertebrates, we discuss how seabirds modify trophic interactions, with potential consequences for mangrove ecosystem processes and resilience.

Abstract Image

海鸟营养补贴改变了功能重要的红树林大型无脊椎动物的大小和资源利用
无脊椎动物在食物网和生态系统功能中起着核心作用。通过提高生产力,外来营养投入影响了接收社区的食物网。了解外来营养补贴如何影响无脊椎动物是至关重要的,特别是在高产的沿海地区。在这里,我们研究了印度洋阿尔达布拉环礁筑巢的海鸟种群所产生的富含营养的鸟粪是如何影响红树林大型无脊椎动物的。我们比较了有和没有筑巢海鸟的红树林中基础资源和大型无脊椎动物消费的氮和碳稳定同位素比率和氮组成。海鸟源营养物的富集增加了基础食物源和草食性滨海腹足类和芝麻蟹的氮含量。在有海鸟繁殖的红树林中,芝麻蟹和杂食性机会蟹的平均甲壳宽度分别增加6%和11%。滨海腹足类和芝麻蟹的同位素生态位在有海鸟的地方比没有海鸟的地方更大,重叠程度更高。附生大藻和鸟粪占海鸟栖地滨生腹足类和籽蟹资源贡献的50%。这与非海鸟样地明显不同,在非海鸟样地,主要资源贡献为77%的滨海腹足类红树林叶片,36%的沉积物有机质和41%的芝麻蟹红树林叶片。红树林蟹的大小增加表明海鸟营养丰富可以提高红树林蟹的渔业生产力,并有利于红树林生态系统服务的提供。通过改变功能重要的大型无脊椎动物的资源利用,我们讨论了海鸟如何改变营养相互作用,以及对红树林生态系统过程和恢复力的潜在影响。
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来源期刊
Ecosphere
Ecosphere ECOLOGY-
CiteScore
4.70
自引率
3.70%
发文量
378
审稿时长
15 weeks
期刊介绍: The scope of Ecosphere is as broad as the science of ecology itself. The journal welcomes submissions from all sub-disciplines of ecological science, as well as interdisciplinary studies relating to ecology. The journal''s goal is to provide a rapid-publication, online-only, open-access alternative to ESA''s other journals, while maintaining the rigorous standards of peer review for which ESA publications are renowned.
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