Javascript must be enabled to continue!
Aggregated filter‐feeding consumers alter nutrient limitation: consequences for ecosystem and community dynamics
View through CrossRef
Nutrient cycling is a key process linking organisms in ecosystems. This is especially apparent in stream environments in which nutrients are taken up readily and cycled through the system in a downstream trajectory. Ecological stoichiometry predicts that biogeochemical cycles of different elements are interdependent because the organisms that drive these cycles require fixed ratios of nutrients. There is growing recognition that animals play an important role in biogeochemical cycling across ecosystems. In particular, dense aggregations of consumers can create biogeochemical hotspots in aquatic ecosystems via nutrient translocation. We predicted that filter‐feeding freshwater mussels, which occur as speciose, high‐biomass aggregates, would create biogeochemical hotspots in streams by altering nutrient limitation and algal dynamics. In a field study, we manipulated nitrogen and phosphorus using nutrient‐diffusing substrates in areas with high and low mussel abundance, recorded algal growth and community composition, and determined in situ mussel excretion stoichiometry at 18 sites in three rivers (Kiamichi, Little, and Mountain Fork Rivers, south‐central United States). Our results indicate that mussels greatly influence ecosystem processes by modifying the nutrients that limit primary productivity. Sites without mussels were N‐limited with ∼26% higher relative abundances of N‐fixing blue‐green algae, while sites with high mussel densities were co‐limited (N and P) and dominated by diatoms. These results corroborated the results of our excretion experiments; our path analysis indicated that mussel excretion has a strong influence on stream water column N:P. Due to the high N:P of mussel excretion, strict N‐limitation was alleviated, and the system switched to being co‐limited by both N and P. This shows that translocation of nutrients by mussel aggregations is important to nutrient dynamics and algal species composition in these rivers. Our study highlights the importance of consumers and this imperiled faunal group on nutrient cycling and community dynamics in aquatic ecosystems.
Title: Aggregated filter‐feeding consumers alter nutrient limitation: consequences for ecosystem and community dynamics
Description:
Nutrient cycling is a key process linking organisms in ecosystems.
This is especially apparent in stream environments in which nutrients are taken up readily and cycled through the system in a downstream trajectory.
Ecological stoichiometry predicts that biogeochemical cycles of different elements are interdependent because the organisms that drive these cycles require fixed ratios of nutrients.
There is growing recognition that animals play an important role in biogeochemical cycling across ecosystems.
In particular, dense aggregations of consumers can create biogeochemical hotspots in aquatic ecosystems via nutrient translocation.
We predicted that filter‐feeding freshwater mussels, which occur as speciose, high‐biomass aggregates, would create biogeochemical hotspots in streams by altering nutrient limitation and algal dynamics.
In a field study, we manipulated nitrogen and phosphorus using nutrient‐diffusing substrates in areas with high and low mussel abundance, recorded algal growth and community composition, and determined in situ mussel excretion stoichiometry at 18 sites in three rivers (Kiamichi, Little, and Mountain Fork Rivers, south‐central United States).
Our results indicate that mussels greatly influence ecosystem processes by modifying the nutrients that limit primary productivity.
Sites without mussels were N‐limited with ∼26% higher relative abundances of N‐fixing blue‐green algae, while sites with high mussel densities were co‐limited (N and P) and dominated by diatoms.
These results corroborated the results of our excretion experiments; our path analysis indicated that mussel excretion has a strong influence on stream water column N:P.
Due to the high N:P of mussel excretion, strict N‐limitation was alleviated, and the system switched to being co‐limited by both N and P.
This shows that translocation of nutrients by mussel aggregations is important to nutrient dynamics and algal species composition in these rivers.
Our study highlights the importance of consumers and this imperiled faunal group on nutrient cycling and community dynamics in aquatic ecosystems.
Related Results
Phytoplankton nutrient limitation in Lake Rotorua
Phytoplankton nutrient limitation in Lake Rotorua
Lake Rotorua is one of 12 lakes jointly managed by the Rotorua Lakes Council, Te Arawa Lakes Trust and the Bay of Plenty Regional Council under the Rotorua Te Arawa Lakes Programme...
CFD Simulation and Optimization of a Cake Filtration System
CFD Simulation and Optimization of a Cake Filtration System
Abstract
This study presents a simulation of filter cake formation during the filtration of rice hull ash and liquid mixture using ANSYS Fluent software. Filter cake...
Estimated remaining carbon budgets under terrestrial nutrient limitation
Estimated remaining carbon budgets under terrestrial nutrient limitation
Nutrient limitation is a core regulation on the amount of carbon fixed by terrestrial vegetation. Hence, the addition of nutrients such as nitrogen and phosphorus in land model str...
Implementasi Bandpass Filter M-derifed pada pemancar radio FM
Implementasi Bandpass Filter M-derifed pada pemancar radio FM
Pemancar siaran radio FM adalah salah satu sistem komunikasi nirkabel, bekerja rentang frekuensi 88-108 MHz membutuhkan sebuah filter bandpass untuk menghindari adanya interferensi...
Assessing nutrient limitation in complex forested ecosystems: alternatives to large‐scale fertilization experiments
Assessing nutrient limitation in complex forested ecosystems: alternatives to large‐scale fertilization experiments
Quantifying nutrient limitation of primary productivity is a fundamental task of terrestrial ecosystem ecology, but in a high carbon dioxide environment it is even more critical th...
Feeding pattern in preterm neonates admitted in neonatology unit: a descriptive cross-sectional study
Feeding pattern in preterm neonates admitted in neonatology unit: a descriptive cross-sectional study
Background:
The components of breast feeding including sucking, swallowing, and breathing, develop at different gestational ages, and are incomplete in preterm. Other m...
Valuation of Ecosystem Services, Karnataka State, India
Valuation of Ecosystem Services, Karnataka State, India
Humans depend on the environment for their basic needs, such as food, fuel, minerals, water, air, etc. Burgeoning unplanned development activities to cater to the demands of the in...
Early Enteral Feeding Versus Delayed Enteral Nutrition: Effects On Morbidity After Intestinal Surgery; A Prospective Study
Early Enteral Feeding Versus Delayed Enteral Nutrition: Effects On Morbidity After Intestinal Surgery; A Prospective Study
Routine practice after bowel anastomoses has been to keep patient nil per oral till the return of bowel sound with a belief that this will prevent postoperative nausea and vomiting...

