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首页> 外文期刊>Fungal Genetics and Biology >Temporal transcriptome analysis of the white-rot fungus &ITObba&IT &ITrivulosa&IT shows expression of a constitutive set of plant cell wall degradation targeted genes during growth on solid spruce wood
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Temporal transcriptome analysis of the white-rot fungus &ITObba&IT &ITrivulosa&IT shows expression of a constitutive set of plant cell wall degradation targeted genes during growth on solid spruce wood

机译:白腐真菌& Itobba& Itrovulosa& Itrivulosa&它显示了植物细胞壁降解靶向基因在固体云杉木材的生长期间表达的表达

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摘要

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.
机译:底霉素白腐真菌obba rivulosa是Gelatoporia(Ceriporiopsis)Subvermispora的亲密关系,是一种高效的软木降级。 Dikaryotic O.Rivulosa菌株T241i(FBCC949)已被证明在植物细胞壁多糖的解聚之前选择性地从溢出物中取出木质素,从而具有生物技术应用的潜力,例如木材在纸浆和造纸工业中的预处理。在这项工作中,我们研究了云杉的转化云脉冲转化的时间过程,其衍生自Dikaryon T241i,以延长固态培养过程中的转录组水平变化的洞察。在8周的培养期间,O.Rivulosa表达了编码推定植物细胞壁降解酶的组成型基因。在2周的时间点检测靶向所有植物细胞壁聚合物的基因的高水平表达,之后大多数基因表达了表达减少。这种由O.Rivulosa Monokaryon的木质素的非选择性降解,并表明了白色腐毒真菌的单声道和达克拉内菌菌株相对于转化植物细胞壁聚合物的能力之间的高变化。

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