Links Between Heathland Fungal Biomass Mineralization, Melanization, and Hydrophobicity
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W. Deferme | J. Vangronsveld | T. Remans | R. Carleer | F. Rineau | I. Basak | J. Czech | Wouter Reyns | F. de Laender | M. Lenaers | Patrycja Krupinska | Talha Yildiz | Sherilyn Saro
[1] R. Koide,et al. The decomposition of ectomycorrhizal fungal necromass , 2016 .
[2] D. Wardle,et al. Carbon sequestration is related to mycorrhizal fungal community shifts during long-term succession in boreal forests. , 2015, The New phytologist.
[3] R. Koide,et al. Initial melanin and nitrogen concentrations control the decomposition of ectomycorrhizal fungal litter , 2014 .
[4] D. Epron,et al. The production and turnover of extramatrical mycelium of ectomycorrhizal fungi in forest soils: role in carbon cycling , 2013, Plant and Soil.
[5] J. Cairney. Extramatrical mycelia of ectomycorrhizal fungi as moderators of carbon dynamics in forest soil , 2012 .
[6] D. Manning,et al. Persistence of soil organic matter as an ecosystem property , 2011, Nature.
[7] Javier Loidi,et al. A biogeographical analysis of the European Atlantic lowland heathlands , 2010 .
[8] M. Unser,et al. ow-bond axisymmetric drop shape analysis for surface tension and contact ngle measurements of sessile drops , 2010 .
[9] B. Si,et al. A novel method for identifying hydrophobicity on fungal surfaces. , 2009, Mycological research.
[10] W. Borken,et al. Reappraisal of drying and wetting effects on C and N mineralization and fluxes in soils , 2009 .
[11] P. D. Ruiter,et al. Soil food web structure during ecosystem development after land abandonment , 2008 .
[12] H. Wösten,et al. Role of proteins in soil carbon and nitrogen storage: controls on persistence , 2007 .
[13] D. Cullen,et al. Extracellular oxidative systems of the lignin-degrading Basidiomycete Phanerochaete chrysosporium. , 2007, Fungal genetics and biology : FG & B.
[14] Davey L. Jones,et al. A comparison of methods to determine the biodegradable dissolved organic carbon from different terrestrial sources , 2006 .
[15] R. Ceulemans,et al. Mycorrhizal Hyphal Turnover as a Dominant Process for Carbon Input into Soil Organic Matter , 2006, Plant and Soil.
[16] Matthias C. Rillig,et al. Arbuscular mycorrhizae and terrestrial ecosystem processes , 2004 .
[17] R. Lal,et al. Soil Carbon Sequestration Impacts on Global Climate Change and Food Security , 2004, Science.
[18] T. H. Smits,et al. Characterization of the surface hydrophobicity of filamentous fungi. , 2003, Environmental microbiology.
[19] M. Torn,et al. Large contribution of arbuscular mycorrhizal fungi to soil carbon pools in tropical forest soils , 2001, Plant and Soil.
[20] E. Ron,et al. Natural roles of biosurfactants. , 2001, Environmental microbiology.
[21] M. Butler,et al. Fungal melanins : a review , 1998 .
[22] T. Unestam,et al. Extramatrical structures of hydrophobic and hydrophilic ectomycorrhizal fungi , 1995, Mycorrhiza.
[23] M. Paschke,et al. Saprophytic fungal-bacterial biomass variations in successional communities of a semi-arid steppe ecosystem , 1995, Biology and Fertility of Soils.
[24] T. Bruns,et al. ITS primers with enhanced specificity for basidiomycetes ‐ application to the identification of mycorrhizae and rusts , 1993, Molecular ecology.
[25] J. D. Desai,et al. Effect of melanin on enzymatic hydrolysis of cellulosic waste , 1984, Biotechnology and bioengineering.
[26] A. J. Griffiths,et al. Effect of copper on morphology of Aureobasidium pullulans. , 1980 .
[27] M. Fricker,et al. The role of wood decay fungi in the carbon and nitrogen dynamics of the forest floor , 2006 .
[28] Robert J. Scholes,et al. The Carbon Cycle and Atmospheric Carbon Dioxide , 2001 .