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Co-cultured Production of Lignin-Modifying Enzymes with White-Rot Fungi

机译:与白腐真菌共培养木质素修饰酶

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摘要

Co-cultivation was a potential strategy in lignocellulolytic biodegradation with producing high activity enzymes due to their synergistic action. The objective of this study was to investigate the rarely understood effects of co-culturing of two white-rot fungi on lignin-modifying enzymes (LMEs) production. Six species, Bjerkandera adusta, Phlebia radiata, Pleurotus ostreatus, Dichomitus squalens, Hypoxylon fragiforme and Pleurotus eryngii, were cultured in pairs to study the production of LMEs. The paired hyphal interaction observed showed that P. eryngii is not suitable for co-growth. The use of agar plates containing dye RBBR showed elevated decolourisation at the confrontation zone between mycelia. Laccase was significantly stimulated only in the co-culture of P. radiata with D. squalens under submerged cultivation; the highest value was measured after 4 days of incubation (120 U mg−1). The improved productions of MnP and LiP were simultaneously observed at the co-culture of P. ostreatus and P. radiata (MnP = 800 nkat L−1 after 4 days of incubation; LiP = 60 nkat L−1 after 7 days of incubation), though it was not a good producer of laccase. P. ostreatus appeared to possess specific potential to be used in co-cultured production of LMEs. The phenotype of LMEs production was not only dependent on the species used but also regulated by different nutritions available in the culture medium. The present data will provide evidence for illustrating the regulatory roles of C/N on LMEs production under the co-cultures’ circumstances.
机译:由于其协同作用,共培养是木质纤维素生物降解中产生高活性酶的潜在策略。这项研究的目的是调查两种白腐真菌共培养对木质素修饰酶(LMEs)产生的影响。成对培养了6个种,即Bjerkandera adusta,Phlebia radiata,Pleurotus ostreatus,Dhimitus squalens,Hypoxylon fragiforme和eryngii Perurotus,以研究LME的产生。观察到的配对菌丝相互作用表明,杏鲍氏假单胞菌不适合共同生长。使用含有染料RBBR的琼脂平板,在菌丝体之间的对峙区显示出较高的脱色率。浸没培养下,仅在辐射假单胞菌和角鲨的共培养中显着刺激漆酶。孵育4天后测出最高值(120 U mg -1 )。在培养4天后,平菇和辐射松的共培养中同时观察到MnP和LiP产量的提高(MnP = 800 nkat L -1 ; LiP = 60 nkat L <孵育7天后,sup> −1 ),尽管它不是漆酶的良好生产者。南美白对虾似乎具有特定的潜力,可用于LME的共培养生产。 LMEs产生的表型不仅取决于所使用的物种,而且还受培养基中可用的不同营养的调节。目前的数据将提供证据说明在共培养情况下,C / N对LMEs生产的调节作用。

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