Road traffic contributes considerably to ground-level air pollution and is therefore likely to affect roadside ecosystems. Differences in growth and leaf traits among 13 hybrid aspen (Populus tremula × P. tremuloides) clones were studied in relation to distance from a motorway. The trees sampled were growing 15 and 30 m from a motorway and at a background rural site in southern Finland. Litter decomposition was also measured at both the roadside and rural sites. Height and diameter growth rate and specific leaf area were lowest, and epicuticular wax amount highest in trees growing 15m from the motorway. Although no significant distance × clone interactions were detected, clone-based analyses indicated differences in genotypic responses to motorway proximity. Leaf N concentration did not differ with distance from the motorway for any of the clones. Leaf litter decomposition was only temporarily retarded in the roadside environment, suggesting minor effects on nutrient cycling.
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http://dx.doi.org/10.1016/j.envpol.2011.03.022 | DOI Listing |
New Phytol
December 2024
Cary Institute of Ecosystem Studies, Millbrook, NY, 12545, USA.
Deadwood represents globally important carbon (C), nitrogen (N), and phosphorus (P) pools. Current wood nutrient dynamics models are extensions of those developed for leaf litter decomposition. However, tissue structure and dominant decomposers differ between leaf and woody litter, and recent evidence suggests that decomposer stoichiometry, in combination with litter quality, may affect nutrient release.
View Article and Find Full Text PDFMar Pollut Bull
December 2024
Institut de Sciences Exactes et Appliquées (ISEA EA7484), Université de la Nouvelle-Calédonie, 145 Avenue James Cook, Nouville, BP R4, 98851, Nouméa, Cedex, New Caledonia.
This study examined the dynamics of major elements and trace metals (TM) during litterfall decomposition in two mangrove forests-control and urban-along New Caledonia's coast. A litterbag experiment was carried out for 72 days for the two main species (Rhizophora stylosa, and Avicennia marina) of the island. Results showed that the urban runoff enhances the leaching of some major elements (K, Mg, Na) during litter decomposition.
View Article and Find Full Text PDFFront Plant Sci
December 2024
Satellite Application Center for Ecology and Environment, Ministry of Ecology and Environment, Beijing, China.
Plant litter decomposition is a significant ecosystem function that regulates nutrient cycling, soil fertility, and biomass production. It is heavily regulated by nutrient intake. The effects of exogenous nutrients on litter decomposition are not yet fully understood.
View Article and Find Full Text PDFFront Microbiol
November 2024
College of Plant Protection, Gansu Agricultural University, Lanzhou, China.
Members of the genera and are vital for litter decomposition in tropical and humid temperate forests. In this study, the difference in morphological features among , , and was confirmed by DNA data. and showed separate relationships with other species in the ITS and nLSU combined dataset utilized for the phylogeny of sect.
View Article and Find Full Text PDFSci Total Environ
December 2024
Aarhus University, Dept. of Ecoscience, Ny Munkegade 114-116, 8000 Aarhus C, Denmark; Helmholtz Centre for Environmental Research - UFZ, Brückstraße 3a, 39114 Magdeburg, Germany.
At the global level, stream ecosystems are influenced by multiple anthropogenic stressors such as eutrophication, habitat deterioration, and water scarcity. Multiple stressor effects on stream biodiversity are well documented, but multiple stressor effects on stream ecosystem processes have received only limited attention. We conducted one mesocosm (stream channel) and one microcosm (feeding trial) experiment to study how combinations of reduced flow, increased nutrient concentrations, and increased fine sediment coverage would influence fungal and macroinvertebrate decomposer assemblages and their active contribution to leaf decomposition.
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