TY - JOUR
T1 - Temporal transcriptome analysis of the white-rot fungus Obba rivulosa shows expression of a constitutive set of plant cell wall degradation targeted genes during growth on solid spruce wood
AU - Marinović, Mila
AU - Aguilar-Pontes, Maria Victoria
AU - Zhou, Miaomiao
AU - Miettinen, Otto
AU - de Vries, Ronald P
AU - Mäkelä, Miia R
AU - Hildén, Kristiina
N1 - Copyright © 2017 Elsevier Inc. All rights reserved.
PY - 2018/3
Y1 - 2018/3
N2 - The basidiomycete white-rot fungus Obba rivulosa, a close relative of Gelatoporia (Ceriporiopsis) subvermispora, is an efficient degrader of softwood. The dikaryotic O. rivulosa strain T241i (FBCC949) has been shown to selectively remove lignin from spruce wood prior to depolymerization of plant cell wall polysaccharides, thus possessing potential in biotechnological applications such as pretreatment of wood in pulp and paper industry. In this work, we studied the time-course of the conversion of spruce by the genome-sequenced monokaryotic O. rivulosa strain 3A-2, which is derived from the dikaryon T241i, to get insight into transcriptome level changes during prolonged solid state cultivation. During 8-week cultivation, O. rivulosa expressed a constitutive set of genes encoding putative plant cell wall degrading enzymes. High level of expression of the genes targeted towards all plant cell wall polymers was detected at 2-week time point, after which majority of the genes showed reduced expression. This implicated non-selective degradation of lignin by the O. rivulosa monokaryon and suggests high variation between mono- and dikaryotic strains of the white-rot fungi with respect to their abilities to convert plant cell wall polymers.
AB - The basidiomycete white-rot fungus Obba rivulosa, a close relative of Gelatoporia (Ceriporiopsis) subvermispora, is an efficient degrader of softwood. The dikaryotic O. rivulosa strain T241i (FBCC949) has been shown to selectively remove lignin from spruce wood prior to depolymerization of plant cell wall polysaccharides, thus possessing potential in biotechnological applications such as pretreatment of wood in pulp and paper industry. In this work, we studied the time-course of the conversion of spruce by the genome-sequenced monokaryotic O. rivulosa strain 3A-2, which is derived from the dikaryon T241i, to get insight into transcriptome level changes during prolonged solid state cultivation. During 8-week cultivation, O. rivulosa expressed a constitutive set of genes encoding putative plant cell wall degrading enzymes. High level of expression of the genes targeted towards all plant cell wall polymers was detected at 2-week time point, after which majority of the genes showed reduced expression. This implicated non-selective degradation of lignin by the O. rivulosa monokaryon and suggests high variation between mono- and dikaryotic strains of the white-rot fungi with respect to their abilities to convert plant cell wall polymers.
KW - Cell Wall/metabolism
KW - Gene Expression Profiling
KW - Gene Expression Regulation, Fungal
KW - Hydrolases/biosynthesis
KW - Lignin/metabolism
KW - Plant Cells/metabolism
KW - Polyporales/enzymology
KW - Wood/microbiology
U2 - 10.1016/j.fgb.2017.07.004
DO - 10.1016/j.fgb.2017.07.004
M3 - Article
C2 - 28754284
SN - 1087-1845
VL - 112
SP - 47
EP - 54
JO - Fungal Genetics and Biology
JF - Fungal Genetics and Biology
ER -