Turkey Tail, Yun Zhi · 2012 · Research Support, Non U.S. Gov'T
Medium relevanceNitrogen sources of Oligoporus placenta and Trametes versicolor evaluated in a 2(3) experimental plan.
Trametes versicolor
Key points
- Four full-factorial 2(3) experimental plans were applied to evaluate the nitrogen (N) sources of Oligoporus placenta and Trametes versicolor and their interaction with the atmospheric N(2)-assimilating bacterium Beijerinckia acida
- The effects of N from peptone, of sapwood and of N from gaseous N(2) on fungal, bacterial and fungal-bacterial activity were investigated
- The significance of each effect was tested according to t-test recommendation
- The activity of both fungi was enhanced by peptone rather than sapwood or gaseous N(2)
- Nevertheless, comparative studies under an N(2)-free gas mixture as well as under air revealed that the presence of N(2) affected bacterial growth and bacterial-fungal cocultivations
- Combining full-factorial experimental plans with an analytical set-up comprising gas chromatography, IRMS and enzymatic activity allowed synergistic effects to be revealed, fungal N sources to be traced, and symbiotic fungal-bacterial interactions to be investigated
Metadata-grounded summary
Citation abstract
Four full-factorial 2(3) experimental plans were applied to evaluate the nitrogen (N) sources of Oligoporus placenta and Trametes versicolor and their interaction with the atmospheric N(2)-assimilating bacterium Beijerinckia acida. The effects of N from peptone, of sapwood and of N from gaseous N(2) on fungal, bacterial and fungal-bacterial activity were investigated. The activities were determined by quantification of biomass, formation of CO(2), consumption of O(2) and laccase activity. The significance of each effect was tested according to t-test recommendation. The activity of both fungi was enhanced by peptone rather than sapwood or gaseous N(2). Nevertheless, comparative studies under an N(2)-free gas mixture as well as under air revealed that the presence of N(2) affected bacterial growth and bacterial-fungal cocultivations. Elemental analysis isotope ratio mass spectrometry (IRMS) of the bacterial and fungal biomass enabled estimation of N transfer and underlined gaseous N(2) as requisite for fungal-bacterial interactions. Combining full-factorial experimental plans with an analytical set-up comprising gas chromatography, IRMS and enzymatic activity allowed synergistic effects to be revealed, fungal N sources to be traced, and symbiotic fungal-bacterial interactions to be investigated.
Citation
Weisshaupt P, Pritzkow W, Noll M (2012). Nitrogen sources of Oligoporus placenta and Trametes versicolor evaluated in a 2(3) experimental plan. Fungal biology https://doi.org/10.1016/j.funbio.2011.10.002 PMID: 22208603
Open citation