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Redundancy among Manganese Peroxidases in Pleurotus ostreatus

机译:平菇中锰过氧化物酶的冗余

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Manganese peroxidases (MnPs) are key players in the ligninolytic system of white rot fungi. In Pleurotus ostreatus (the oyster mushroom) these enzymes are encoded by a gene family comprising nine members, mnp1 to -9 (mnp genes). Mn2+ amendment to P. ostreatus cultures results in enhanced degradation of recalcitrant compounds (such as the azo dye orange II) and lignin. In Mn2+-amended glucose-peptone medium, mnp3, mnp4, and mnp9 were the most highly expressed mnp genes. After 7 days of incubation, the time point at which the greatest capacity for orange II decolorization was observed, mnp3 expression and the presence of MnP3 in the extracellular culture fluids were predominant. To determine the significance of MnP3 for ligninolytic functionality in Mn2+-sufficient cultures, mnp3 was inactivated via the Δku80 strain-based P. ostreatus gene-targeting system. In Mn2+-sufficient medium, inactivation of mnp3 did not significantly affect expression of nontargeted MnPs or their genes, nor did it considerably diminish the fungal Mn2+-mediated orange II decolorization capacity, despite the significant reduction in total MnP activity. Similarly, inactivation of either mnp4 or mnp9 did not affect orange II decolorization ability. These results indicate functional redundancy within the P. ostreatus MnP gene family, enabling compensation upon deficiency of one of its members.
机译:锰过氧化物酶(MnPs)是白腐真菌木质素分解系统的关键参与者。在平菇(牡蛎蘑菇)中,这些酶由一个基因家族编码,该家族包含9个成员,即 mnp1 至- 9 mnp 基因)。对P. ostreatus培养物进行Mn 2 + 修饰可提高顽固性化合物(如偶氮染料橙II)和木质素的降解。在经过Mn 2 + 修饰的葡萄糖蛋白p培养基中, mnp3 mnp4 mnp9 的表达最高 mnp 基因。温育7天后,主要观察到橙色II脱色的最大容量, mnp3 表达和细胞外培养液中MnP3存在的时间点。为了确定MnP3在充足Mn 2 + 培养物中木质素分解功能的重要性,通过基于Δ ku80 的菌株P灭活了 mnp3 。 ostreatus基因靶向系统。在充足的Mn 2 + 培养基中, mnp3 的失活不会显着影响非靶向MnPs或其基因的表达,也不会显着减少真菌Mn 2+ 介导的橙II的脱色能力,尽管总MnP活性显着降低。同样, mnp4 mnp9 的失活也不会影响橙色II的脱色能力。这些结果表明P. ostreatus MnP基因家族内的功能冗余,能够在缺少其成员之一时进行补偿。

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