Joint effects of warming and salinization on instream leaf litter decomposition assessed through a microcosm experiment |
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Wildfires alter stream ecosystem functioning through effects on leaf litter |
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Salamander loss alters montane stream ecosystem functioning and structure through top-down effects |
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Warming overrides eutrophication effects on leaf litter decomposition in stream microcosms |
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Alder stands promote N-cycling but not leaf litter mass loss in Mediterranean streams flowing through pine plantations |
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Temperature Sensitivity of Microbial Litter Decomposition in Freshwaters: Role of Leaf Litter Quality and Environmental Characteristics |
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Agricultural impacts on lowland tropical streams detected through leaf litter decomposition |
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Cross-species coprophagy in small stream detritivores counteracts low-quality litter: native versus invasive plant litter |
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Climate-induced plasticity in leaf traits of riparian plants |
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Functional consequences of alder and oak loss in stream ecosystems |
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Amphibian loss alters periphyton structure and invertebrate growth in montane streams |
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Microplastic concentration, distribution and dynamics along one of the largest Mediterranean-climate rivers: A whole watershed approach. |
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No evidence of biodiversity effects on stream ecosystem functioning across green and brown food web pathways |
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Impacts of detritivore diversity loss on instream decomposition are greatest in the tropics |
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Latitude dictates plant diversity effects on instream decomposition |
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Effects of gamma irradiation on instream leaf litter decomposition |
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Key plant species and detritivores drive diversity effects on instream leaf litter decomposition more than functional diversity: A microcosm study |
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Litter Quality Is a Stronger Driver than Temperature of Early Microbial Decomposition in Oligotrophic Streams: a Microcosm Study |
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Microplastics increase susceptibility of amphibian larvae to the chytrid fungus Batrachochytrium dendrobatidis |
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Shifts in Key Leaf Litter Traits Can Predict Effects of Plant Diversity Loss on Decomposition in Streams |
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Loss of Key Riparian Plant Species Impacts Stream Ecosystem Functioning |
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Litter decomposition can be reduced by pesticide effects on detritivores and decomposers: Implications for tropical stream functioning |
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High sensitivity of invertebrate detritivores from tropical streams to different pesticides |
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Extreme temperature events alter stream ecosystem functioning |
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A common fungicide impairs stream ecosystem functioning through effects on aquatic hyphomycetes and detritivorous caddisflies |
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Microplastics impair amphibian survival, body condition and function |
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Microplastics have lethal and sublethal effects on stream invertebrates and affect stream ecosystem functioning |
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Extreme climate events can slow down litter breakdown in streams |
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Agriculture impairs stream ecosystem functioning in a tropical catchment |
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Effects of two measures of riparian plant biodiversity on litter decomposition and associated processes in stream microcosms |
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Plant diversity loss affects stream ecosystem multifunctionality |
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Joint effects of temperature and litter quality on detritivore-mediated breakdown in streams |
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Interactions between large and small detritivores influence how biodiversity impacts litter decomposition |
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Responses of Aquatic Hyphomycetes to Temperature and Nutrient Availability: a Cross-transplantation Experiment |
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Leaf traits drive plant diversity effects on litter decomposition and fpom production in streams |
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Plant litter dynamics in the forest-stream interface: Precipitation is a major control across tropical biomes |
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Riparian plant litter quality increases with latitude |
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Stream nitrogen concentration, but not plant N-fixing capacity, modulates litter diversity effects on decomposition |
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Climate modulates the magnitude of the effects of flow regulation on leaf-litter decomposition |
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Leaf-litter breakdown as an indicator of the impacts by flow regulation in headwater streams: Responses across climatic regions |
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Contrasting habitats but comparable microbial decomposition in the benthic and hyporheic zone |
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Differences in water depth determine leaf-litter decomposition in streams: Implications on impact assessment reliability |
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Biotic and abiotic variables influencing plant litter breakdown in streams: a global study |
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In-stream litter decomposition along an altitudinal gradient: does substrate quality matter? |
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Stream temperature in the Basque Mountains during winter: thermal regimes and sensitivity to air warming |
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Drought and detritivores determine leaf litter decomposition in calcareous streams of the Ebro catchment (Spain) |
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Effects of flow scarcity on leaf-litter processing under oceanic climate conditions in calcareous streams |
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Effects of Fungal Inocula and Habitat Conditions on Alder and Eucalyptus Leaf Litter Decomposition in Streams of Northern Spain |
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Temperature affects leaf litter decomposition in low-order forest streams: field and microcosm approaches |
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Leaf litter decomposition of native and introduced tree species of contrasting quality in headwater streams: How does the regional setting matter? |
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Stream regulation by small dams affects benthic macroinvertebrate communities: From structural changes to functional implications |
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Evaluation of the ACR SmartButton thermometer and a low-cost protective case for continuous stream temperature measurement |
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Effects of pine plantations on structural and functional attributes of forested streams |
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Leaf-litter processing in headwater streams of northern Iberian Peninsula: moderate levels of eutrophication do not explain breakdown rates |
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Leaf-litter quality effects on stream ecosystem functioning: A comparison among five species |
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Aquatic Hyphomycete Communities Associated with Decomposing Alder Leaf Litter in Reference Headwater Streams of the Basque Country (northern Spain) |
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Headwater reservoirs weaken terrestrial-aquatic linkage by slowing leaf-litter processing in downstream regulated reaches |
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Inter- and Intra-Regional Variability of Leaf Litter Breakdown in Reference Headwater Streams of Northern Spain: Atlantic versus Mediterranean Streams |
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Leaf-litter decomposition in headwater streams: a comparison of the process among four climatic regions |
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