Living organisms are constrained by both resource quantity and quality. Ecological stoichiometry offers important insights into how the elemental composition of resources affects their consumers. If resource quality decreases, consumers can respond by shifting their body stoichiometry, avoiding low-quality resources, or up-regulating feeding rates to maintain the supply of required elements while excreting excess carbon (i.e., compensatory feeding). We analyzed multitrophic consumer body stoichiometry, biomass, and feeding rates along a resource-quality gradient in the litter of tropical forest and rubber and oil-palm plantations. Specifically, we calculated macroinvertebrate feeding rates based on consumer metabolic demand and assimilation...
1. Ecological stoichiometry predicts important control of the relative abundance of the key elements...
Seabirds deposit large amounts of nutrient rich guano on their nesting islands. The increased nutrie...
1. Stoichiometric differences among organisms can affect trophic interactions and rates of nutrient ...
Living organisms are constrained by both resource quantity and quality. Ecological stoichiometry off...
Living organisms are constrained by both resource quantity and quality. Ecological stoichiometry off...
International audienceHow are resource consumption and growth rates of litter-consuming detritivores...
1. The high biodiversity and biomass of soil communities is crucial for litter decomposition in terr...
How are resource consumption and growth rates of litter-consuming detritivores affected by imbalance...
1. The high biodiversity and biomass of soil communities is crucial for litter decomposition in terr...
Stoichiometric relationships between consumers and resources in detritus-based ecosystems have recei...
Across resource quality gradients, primary consumers must regulate homeostasis and release of nutrie...
Stoichiometric relationships between consumers and resources in detritus-based ecosystems have recei...
1. Stoichiometric differences among organisms can affect trophic interactions and rates of nutrient ...
Ecological stoichiometry can be a powerful tool to understand food web consequences of altered bioge...
1. Ecological stoichiometry predicts important control of the relative abundance of the key elements...
Seabirds deposit large amounts of nutrient rich guano on their nesting islands. The increased nutrie...
1. Stoichiometric differences among organisms can affect trophic interactions and rates of nutrient ...
Living organisms are constrained by both resource quantity and quality. Ecological stoichiometry off...
Living organisms are constrained by both resource quantity and quality. Ecological stoichiometry off...
International audienceHow are resource consumption and growth rates of litter-consuming detritivores...
1. The high biodiversity and biomass of soil communities is crucial for litter decomposition in terr...
How are resource consumption and growth rates of litter-consuming detritivores affected by imbalance...
1. The high biodiversity and biomass of soil communities is crucial for litter decomposition in terr...
Stoichiometric relationships between consumers and resources in detritus-based ecosystems have recei...
Across resource quality gradients, primary consumers must regulate homeostasis and release of nutrie...
Stoichiometric relationships between consumers and resources in detritus-based ecosystems have recei...
1. Stoichiometric differences among organisms can affect trophic interactions and rates of nutrient ...
Ecological stoichiometry can be a powerful tool to understand food web consequences of altered bioge...
1. Ecological stoichiometry predicts important control of the relative abundance of the key elements...
Seabirds deposit large amounts of nutrient rich guano on their nesting islands. The increased nutrie...
1. Stoichiometric differences among organisms can affect trophic interactions and rates of nutrient ...