Miia R. Mäkelä
Miia R. Mäkelä
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Citado por
Citado por
Lignin‐modifying enzymes in filamentous basidiomycetes–ecological, functional and phylogenetic review
TK Lundell, MR Mäkelä, K Hildén
Journal of basic microbiology 50 (1), 5-20, 2010
Plant-polysaccharide-degrading enzymes from basidiomycetes
J Rytioja, K Hildén, J Yuzon, A Hatakka, RP de Vries, MR Mäkelä
Microbiology and Molecular Biology Reviews 78 (4), 614-649, 2014
Comparative genomics reveals high biological diversity and specific adaptations in the industrially and medically important fungal genus Aspergillus
RP de Vries, R Riley, A Wiebenga, G Aguilar-Osorio, S Amillis, ...
Genome biology 18 (1), 1-45, 2017
Production of organic acids and oxalate decarboxylase in lignin-degrading white rot fungi
M Mäkelä, S Galkin, A Hatakka, T Lundell
Enzyme and Microbial technology 30 (4), 542-549, 2002
Carbohydrate-binding modules of fungal cellulases: occurrence in nature, function, and relevance in industrial biomass conversion
A Varnai, MR Mäkelä, DT Djadadi, J Rahikainen, A Hatakka, L Viikari
Adv Appl Microbiol 88, 103-165, 2014
Diversity of fungal feruloyl esterases: updated phylogenetic classification, properties, and industrial applications
A Dilokpimol, MR Mäkelä, MV Aguilar-Pontes, I Benoit-Gelber, KS Hildén, ...
Biotechnology for Biofuels 9 (1), 1-18, 2016
Genomics, lifestyles and future prospects of wood-decay and litter-decomposing basidiomycota
TK Lundell, MR Mäkelä, RP de Vries, KS Hildén
Advances in botanical research 70, 329-370, 2014
Effect of copper, nutrient nitrogen, and wood-supplement on the production of lignin-modifying enzymes by the white-rot fungus Phlebia radiata
MR Mäkelä, T Lundell, A Hatakka, K Hildén
Fungal biology 117 (1), 62-70, 2013
Closely related fungi employ diverse enzymatic strategies to degrade plant biomass
I Benoit, H Culleton, M Zhou, M DiFalco, G Aguilar-Osorio, E Battaglia, ...
Biotechnology for biofuels 8 (1), 107, 2015
Plant biomass degradation by fungi
MR Mäkelä, N Donofrio, RP de Vries
Fungal Genetics and Biology 72, 2-9, 2014
Aromatic metabolism of filamentous fungi in relation to the presence of aromatic compounds in plant biomass
MR Mäkelä, M Marinović, P Nousiainen, AJM Liwanag, I Benoit, J Sipilä, ...
Advances in applied microbiology 91, 63-137, 2015
Investigation of inter-and intraspecies variation through genome sequencing of Aspergillus section Nigri
TC Vesth, JL Nybo, S Theobald, JC Frisvad, TO Larsen, KF Nielsen, ...
Nature Genetics 50 (12), 1688-1695, 2018
Oxalate decarboxylase: biotechnological update and prevalence of the enzyme in filamentous fungi
MR Mäkelä, K Hildén, TK Lundell
Applied microbiology and biotechnology 87 (3), 801-814, 2010
Expression and molecular properties of a new laccase of the white rot fungus Phlebia radiata grown on wood
MR Mäkelä, KS Hildén, TK Hakala, A Hatakka, TK Lundell
Current genetics 50 (5), 323-333, 2006
Mitochondrial Genome of Phlebia radiata Is the Second Largest (156 kbp) among Fungi and Features Signs of Genome Flexibility and Recent Recombination Events
H Salavirta, I Oksanen, J Kuuskeri, M Mäkelä, P Laine, L Paulin, T Lundell
PLoS One 9 (5), e97141, 2014
Oxalate decarboxylase of the white-rot fungus Dichomitus squalens demonstrates a novel enzyme primary structure and non-induced expression on wood and in liquid cultures
MR Mäkelä, K Hilden, A Hatakka, TK Lundell
Microbiology 155 (8), 2726-2738, 2009
Uncovering the abilities of Agaricus bisporus to degrade plant biomass throughout its life cycle
A Patyshakuliyeva, H Post, M Zhou, E Jurak, AJR Heck, KS Hildén, ...
Environmental microbiology 17 (8), 3098-3109, 2015
Transcriptional analysis of selected cellulose-acting enzymes encoding genes of the white-rot fungus Dichomitus squalens on spruce wood and microcrystalline cellulose
J Rytioja, K Hildén, A Hatakka, MR Mäkelä
Fungal Genetics and Biology 72, 91-98, 2014
Occurrence and function of enzymes for lignocellulose degradation in commercial Agaricus bisporus cultivation
MA Kabel, E Jurak, MR Mäkelä, RP De Vries
Applied Microbiology and Biotechnology 101 (11), 4363-4369, 2017
Lignocellulose-converting enzyme activity profiles correlate with molecular systematics and phylogeny grouping in the incoherent genus Phlebia (Polyporales, Basidiomycota)
J Kuuskeri, MR Mäkelä, J Isotalo, I Oksanen, T Lundell
BMC microbiology 15 (1), 1-18, 2015
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