Fungal species vary in the rate and way in which they decay wood. Thus, understanding fungal community dynamics within dead wood is crucial to understanding decomposition and carbon cycling. Mycelia compete for wood territory, by employing antagonistic mechanisms involving changes in morphology, and production of volatile and diffusible chemicals. This is metabolically costly, and may affect the rate of use of the resource. The metabolic rate during pairwise interactions between wood decay ascomycetes and basidiomycetes was determined by measuring CO2 production. CO2 evolution altered over time, but changes were combination-specific. In only two combinations e when the dominant competitor overgrew the opponent’s territory as mycelia...
As the key medium for decomposing wood fibers, fungi play a vital role in promoting the carbon cycle...
University of Minnesota Ph.D. dissertation. August 2014. Major: Natural Resources Science and Manage...
Understanding the effects of changing abiotic conditions on assembly history in wood decay communiti...
AbstractFungal species vary in the rate and way in which they decay wood. Thus, understanding fungal...
1.?The outcome of interactions between wood decay basidiomycete fungi is affected by the size of ter...
The efficiency by which fungi decompose organic matter contributes to the amount of carbon that is r...
Understanding the mechanisms underlying wood decay basidiomycete community dynamics is crucial for f...
A microcosm experiment was used to test for the effects of interactions between particular plant and...
Fungal community structure and development in decaying woody resources are largely dependent on inte...
Decomposition of wood is an important component of global carbon cycling. Most wood decomposition mo...
Theory predicts that the energetic cost of competition between fungal mycelia might accelerate or re...
The terrestrial carbon cycle is largely driven by photosynthetic plants and decomposer organisms tha...
AbstractUnderstanding the effects of changing abiotic conditions on assembly history in wood decay c...
Fire is an important disturbance agent in boreal forests where it creates a wide variety of charred ...
As the key medium for decomposing wood fibers, fungi play a vital role in promoting the carbon cycle...
University of Minnesota Ph.D. dissertation. August 2014. Major: Natural Resources Science and Manage...
Understanding the effects of changing abiotic conditions on assembly history in wood decay communiti...
AbstractFungal species vary in the rate and way in which they decay wood. Thus, understanding fungal...
1.?The outcome of interactions between wood decay basidiomycete fungi is affected by the size of ter...
The efficiency by which fungi decompose organic matter contributes to the amount of carbon that is r...
Understanding the mechanisms underlying wood decay basidiomycete community dynamics is crucial for f...
A microcosm experiment was used to test for the effects of interactions between particular plant and...
Fungal community structure and development in decaying woody resources are largely dependent on inte...
Decomposition of wood is an important component of global carbon cycling. Most wood decomposition mo...
Theory predicts that the energetic cost of competition between fungal mycelia might accelerate or re...
The terrestrial carbon cycle is largely driven by photosynthetic plants and decomposer organisms tha...
AbstractUnderstanding the effects of changing abiotic conditions on assembly history in wood decay c...
Fire is an important disturbance agent in boreal forests where it creates a wide variety of charred ...
As the key medium for decomposing wood fibers, fungi play a vital role in promoting the carbon cycle...
University of Minnesota Ph.D. dissertation. August 2014. Major: Natural Resources Science and Manage...
Understanding the effects of changing abiotic conditions on assembly history in wood decay communiti...