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Colonial waterbirds provide persistent subsidies to swamp forests along an estuarine island food chain
Colonial waterbirds provide persistent subsidies to swamp forests along an estuarine island food chain
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Colonial waterbirds provide persistent subsidies to swamp forests along an estuarine island food chain
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Colonial waterbirds provide persistent subsidies to swamp forests along an estuarine island food chain
Colonial waterbirds provide persistent subsidies to swamp forests along an estuarine island food chain

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Colonial waterbirds provide persistent subsidies to swamp forests along an estuarine island food chain
Colonial waterbirds provide persistent subsidies to swamp forests along an estuarine island food chain
Journal Article

Colonial waterbirds provide persistent subsidies to swamp forests along an estuarine island food chain

2023
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Overview
Birds are excellent vectors of allochthonous matter and energy due to their high mobility, with more intense flow when waterbirds congregate in breeding colonies, feeding in surrounding aquatic and terrestrial areas, and promoting nutritional pulses to nutrient-poor environments. In southern Brazil, a swamp forest on an estuarine island is used by waterbirds for breeding, providing an opportunity to investigate the potential effects of transport of matter between nutrient-rich environments. Soil, plants, invertebrates, and blood from terrestrial birds were collected and stable isotopes compared to similar organisms in a control site without heronries. Values of δ15N and δ13C from waterbirds were higher in the colony in comparison to the control site (spatial effect). The enrichment of 15N and 13C provided during the active colony period persisted after the breeding period, especially for δ15N, which was higher in all compartments (temporal effect). Moreover, the enrichment of 15N occurred along the entire trophic chain (vertical effect) in the colony environment, including different guilds of invertebrates and land birds. The enrichment in 13C seems to lose strength and was mostly explained by factors such as trophic guild rather than site, especially in birds. Bayesian mixture models with terrestrial vs. estuarine endpoints demonstrated that all organisms from both colony and control environments had assimilated estuarine matter. Finally, detritivorous invertebrates showed greater assimilation when compared to other guilds. This study demonstrates that adjacent nutrient-rich environments, such as palustrine forests and estuaries, are nutritionally enriched in several dimensions from nearby autochthonous subsidies that are maintained throughout the year.