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85 results for “trophic cascade”
Dataset on how mesopredator-mediated trophic cascade can break persistent phytoplankton blooms in coastal waters
<p>Managing eutrophied systems using only nutrient decreases to impose bottom-up control can be economically and ecologically challenging. Top-down controls through increased consumption have sometimes effectively controlled phytoplankton blooms. However, mechanistic insights, especially on possible trophic cascades, are less understood in brackish, species-poor coastal waters, where large cladocera are absent. In this study, we set up large mesocosms for three consecutive years during the growing season. One set of mesocosms contained mesopredators (gobies and shrimps), whereas the other mesocosms had no such mesopredator present. The results were standardized to monitoring data from the ecosystem to track possible differences between treatments and the system. We found that mesopredator mesocosms showed lower turbidity, phytoplankton biomass, and nutrients compared to no-mesopredator mesocosms, and compared to the ecosystem. This decrease allowed macrophytes to colonize water depths only sparsely colonized in the ecosystem. Rotifer biomass increased in mesopredator mesocosms compared to the ecosystem and to the no-mesopredator mesocosms. Likewise, copepod biomass that potentially grazes upon rotifers and other microzooplankton decreased in mesopredator mesocosms. No-mesopredator mesocosms were colonized by an omnivorous mesograzer (<em>Gammarus</em> <em>tigrinus</em>), potentially creating additional pressure on macrophytes and increasing grazing-mediated nutrient release. Zooplankton was not able to control the non-nutrient-limited phytoplankton. We propose a new mechanism, where a higher mesopredator density will increase grazing on phytoplankton by promoting microzooplankton capable of grazing on picophytoplankton. This proposed mechanism would contrast with freshwater systems, where a decrease of zooplanktivorous fish would promote larger phytoplankton grazer like cladocerans. Biomanipulation in such species-poor eutrophic coastal waters may be more successful, due to fewer trophic pathways, that can cause complex top-down controls like in other systems. Stocking eutrophic coastal waters with gobies and shrimps may be an alternative biomanipulative approach rather than selectively removing large piscivorous or omnivorous fish from eutrophic coastal waters.</p>
Data for: Fishing triggers trophic cascade in terms of variation, not abundance, in an allometric trophic network model
<p>Trophic cascade studies often rely on linear food chains instead of complex food webs and are typically measured as biomass averages, not as biomass variation. We study trophic cascades propagating across a complex food web including a measure of biomass variation in addition to biomass average. We examined whether different fishing strategies induce trophic cascades and whether the cascades differ from each other. We utilized an allometric trophic network (ATN) model to mechanistically study fishing-induced changes in food web dynamics. Different fishing strategies did not trigger traditional, reciprocal trophic cascades, as measured in biomass averages. Instead, fishing triggered a variation cascade that propagated across the food web, including fish, zooplankton and phytoplankton species. In fisheries that removed a large amount of top-predatory and cannibalistic fish, the biomass oscillations started to decrease after fishing was started. In fisheries that mainly targeted large planktivorous fish, the biomass oscillations did not dampen but slightly increased over time. Removing species with specific ecological functions might alter the food web dynamics and potentially affect the ecological resilience of aquatic ecosystems.</p>
Data from: An experimental test of how parasites of predators can influence trophic cascades and ecosystem functioning
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Destabilizing effects on a classic tri-trophic oyster-reef cascade
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Learned predators enhance biological control via organizational upward and trophic top‐down cascades
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Predation alters community structure through multiple trophic cascades
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Data from: Hidden role of trophic cascade effects for soil carbon sequestration in alpine tundra
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Data from: Congruence, but no cascade - pelagic biodiversity across 3 trophic levels in Nordic lakes
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Data from: Selection past impacts the strength of an aquatic trophic cascade
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Apex predators can structure ecosystems through trophic cascades: linking the frugivorous behaviour and seed-dispersal patterns of mesocarnivores
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A novel trophic cascade between cougars and feral donkeys shapes desert wetlands
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Algal growth, bumblebee colony and individual development, bee behavior and yield of oilseed rape under a trophic cascade and extreme weather
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Data from: Cascading effects of a top predator on intraspecific competition at intermediate and basal trophic levels
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Trophic cascade within and across ecosystems: the role of anti-predatory defenses, predator type, and detritus quality
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Trophic cascades alter eco-evolutionary dynamics and body size evolution
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Prey naiveté alters the balance of consumptive and non-consumptive predator effects and shapes trophic cascades in freshwater plankton
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Data for: Fishing triggers trophic cascade in terms of variation, not abundance, in an allometric trophic network model
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Data from: Effects of a trophic cascade on a multi-level facilitation cascade
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Data from: Ocean warming undermines the recovery resilience of New England kelp forests following a fishery-induced trophic cascade
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Data from: Changes in behavior are unable to disrupt a trophic cascade involving a specialist herbivore and its food plant
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Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.