Genetics and Microbiology Research Group, Department of Agrarian Production, Public University of Navarre, Pamplona, Navarre, Spain.
PLoS One. 2013 Sep 5;8(9):e73282. doi: 10.1371/journal.pone.0073282. eCollection 2013.
The basidiomycete Pleurotus ostreatus is an efficient producer of laccases, a group of enzymes appreciated for their use in multiple industrial processes. The aim of this study was to reveal the molecular basis of the superiority of laccase production by dikaryotic strains compared to their parental monokaryons.
METHODOLOGY/PRINCIPAL FINDINGS: We bred and studied a set of dikaryotic strains starting from a meiotic population of monokaryons. We then completely characterised the laccase allelic composition, the laccase gene expression and activity profiles in the dikaryotic strain N001, in two of its meiotic full-sib monokaryons and in the dikaryon formed from their mating.
CONCLUSIONS/SIGNIFICANCE: Our results suggested that the dikaryotic superiority observed in laccase activity was due to non-additive transcriptional increases in lacc6 and lacc10 genes. Furthermore, the expression of these genes was divergent in glucose- vs. lignocellulose-supplemented media and was highly correlated to the detected extracellular laccase activity. Moreover, the expression profile of lacc2 in the dikaryotic strains was affected by its allelic composition, indicating a putative single locus heterozygous advantage.
担子菌糙皮侧耳是漆酶的高效生产者,漆酶是一组酶,因其在多种工业过程中的应用而受到赞赏。本研究的目的是揭示与亲本单核体相比,双核体菌株产漆酶优势的分子基础。
方法/主要发现:我们从单核体的减数分裂群体中培育和研究了一组双核体菌株。然后,我们在双核体菌株 N001 及其两个减数全同胞单核体以及它们交配形成的双核体中,全面描述了漆酶等位基因组成、漆酶基因表达和活性谱。
结论/意义:我们的结果表明,观察到的漆酶活性中的双核体优势归因于漆酶 6 号和 10 号基因的非加性转录增加。此外,这些基因的表达在葡萄糖与木质纤维素补充培养基中存在差异,并且与检测到的细胞外漆酶活性高度相关。此外,双核体菌株中漆酶 2 的表达谱受其等位基因组成的影响,表明存在潜在的单基因座杂合优势。