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2005, ISBN 9781402033483, x, 329
Contains detailed protocols for direct use in the field or laboratory Protocols are presented in an easy to follow step-by-step format. 
Biodegradation | Plant litter | Biology, life sciences | Plant ecology | Life Sciences | Microbial Ecology | Microbiology | Ecosystems | Plant Sciences | Plant Ecology
Book
1992, ISBN 9783540544005, Volume 94., xiv, 225
Book
FEMS Microbiology Reviews, ISSN 0168-6445, 07/2011, Volume 35, Issue 4, pp. 620 - 651
Abstract Research on freshwater fungi has concentrated on their role in plant litter decomposition in streams. Higher fungi dominate over bacteria in terms of... 
ecosystem functions | sulfate | laccase | glutathione | metallothionein | aquatic fungi | phytochelatin | Ecosystem functions | Sulfate | Aquatic fungi | Metallothionein | Phytochelatin | Glutathione | Laccase | WHITE-ROT FUNGI | POLYCYCLIC AROMATIC-HYDROCARBONS | ANTIBODY-BASED IMMUNOASSAY | XENOESTROGEN TECHNICAL NONYLPHENOL | MICROBIOLOGY | AQUATIC HYPHOMYCETE SPORA | SACCHAROMYCES-CEREVISIAE | LEAF-LITTER DECOMPOSITION | ELEVATED ATMOSPHERIC CO2 | COAL-MINE EFFLUENT | HELISCUS-LUGDUNENSIS | Biodegradation, Environmental | Stress, Physiological - physiology | Fresh Water - microbiology | Spores, Fungal - growth & development | Ecology | Mitosporic Fungi - metabolism | Biomass | Biodiversity | Water Pollutants - metabolism | Eutrophication | Food Chain | Mitosporic Fungi - genetics | Environment | Mitosporic Fungi - physiology | Water Microbiology | Mitosporic Fungi - enzymology | Oxidases | Biological products | Ecosystems | Physiological aspects | Universities and colleges | Sulfates | Xenobiotics | Freshwaters | Biodegradation | Biotechnology | Pollution load | Terrestrial environments | Detoxification | Decomposition | Freshwater ecology | Freshwater | Anthropogenic factors | Spores | Substrates | Aquatic microorganisms | Aquatic hyphomycetes | Fungi | Microorganisms | Biotransformation | Oxidation | Intracellular | Pollutants
Journal Article
Freshwater Biology, ISSN 0046-5070, 10/2014, Volume 59, Issue 10, pp. 2172 - 2182
Summary Detritivores preferentially consume certain aquatic hyphomycete species while rejecting others. Fungal identity may therefore be a crucial factor... 
diversity | consumption | fungi | shredders | species identity | Consumption | Fungi | Species identity | Shredders | Diversity | ASELLUS-AQUATICUS | LEAVES | LEAF-LITTER | GAMMARUS-PSEUDOLIMNAEUS | FEEDING PREFERENCES | BIOMASS | MARINE & FRESHWATER BIOLOGY | GROWTH | PALATABILITY | Life Sciences | Microbiology and Parasitology | Vegetal Biology | Mycology
Journal Article
Fungal Ecology, ISSN 1754-5048, 02/2016, Volume 19, pp. 1 - 4
Journal Article
Fungal Ecology, ISSN 1754-5048, 04/2016, Volume 20, pp. 261 - 261
Journal Article
2008, Fungal diversity research series, Volume 20., viii, 373
Book
Fungal Ecology, ISSN 1754-5048, 02/2016, Volume 19, pp. 100 - 111
Ecological stoichiometry investigates how the ratios of elements in organisms shape their ecology and nutrient and energy fluxes in ecosystems. Despite their... 
Decomposers | Fungal elemental composition | Ecological stoichiometry | Fungal homeostasis | Nutrient-recycling | Detritus | FOOD QUALITY | N-P STOICHIOMETRY | GROWTH-RATE | STREAM | PARTICULATE ORGANIC-MATTER | FATTY-ACIDS | PHOSPHORUS-CONTENT | ELEMENTAL STOICHIOMETRY | LIFE-HISTORY | ECOLOGY | MYCOLOGY | LEAF-LITTER DECOMPOSITION | Environmental Sciences
Journal Article