Department of Environmental Sciences, University of Virginia, Charlottesville, VA 22904.
Center for Watershed Sciences, University of California, Davis, CA 95616.
Proc Natl Acad Sci U S A. 2024 Jan 9;121(2):e2310052120. doi: 10.1073/pnas.2310052120. Epub 2024 Jan 2.
Cross-ecosystem subsidies are critical to ecosystem structure and function, especially in recipient ecosystems where they are the primary source of organic matter to the food web. Subsidies are indicative of processes connecting ecosystems and can couple ecological dynamics across system boundaries. However, the degree to which such flows can induce cross-ecosystem cascades of spatial synchrony, the tendency for system fluctuations to be correlated across locations, is not well understood. Synchrony has destabilizing effects on ecosystems, adding to the importance of understanding spatiotemporal patterns of synchrony transmission. In order to understand whether and how spatial synchrony cascades across the marine-terrestrial boundary via resource subsidies, we studied the relationship between giant kelp forests on rocky nearshore reefs and sandy beach ecosystems that receive resource subsidies in the form of kelp wrack (detritus). We found that synchrony cascades from rocky reefs to sandy beaches, with spatiotemporal patterns mediated by fluctuations in live kelp biomass, wave action, and beach width. Moreover, wrack deposition synchronized local abundances of shorebirds that move among beaches seeking to forage on wrack-associated invertebrates, demonstrating that synchrony due to subsidies propagates across trophic levels in the recipient ecosystem. Synchronizing resource subsidies likely play an underappreciated role in the spatiotemporal structure, functioning, and stability of ecosystems.
跨生态系统补贴对于生态系统的结构和功能至关重要,特别是在接受生态系统中,它们是食物网中有机物质的主要来源。补贴表明了连接生态系统的过程,并可以在系统边界上耦合生态动态。然而,这种流动在多大程度上可以引发跨生态系统的空间同步级联,即系统波动在不同地点之间的相关性,目前还不是很清楚。同步对生态系统具有不稳定性,这增加了理解同步传播的时空模式的重要性。为了了解是否以及如何通过资源补贴在海洋-陆地边界上产生跨生态系统的同步级联,我们研究了近岸礁石上的巨型海藻林与接收以海藻碎屑(碎屑)形式的资源补贴的沙滩生态系统之间的关系。我们发现,同步从礁石向沙滩级联,时空模式受活海藻生物量、波浪作用和海滩宽度波动的调节。此外,碎屑沉积使在沙滩之间移动以寻找与碎屑相关的无脊椎动物觅食的滨鸟的局部丰度同步,这表明由于补贴而产生的同步在接受生态系统中的营养级中传播。同步化的资源补贴可能在生态系统的时空结构、功能和稳定性中起着被低估的作用。