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首页> 外文期刊>World Journal of Microbiology & Biotechnology >Effect of nitrogen source on lignocellulolytic enzyme production by white-rot basidiomycetes under solid-state cultivation
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Effect of nitrogen source on lignocellulolytic enzyme production by white-rot basidiomycetes under solid-state cultivation

机译:固氮条件下氮源对白腐担子菌生产木质纤维素酶的影响

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摘要

The effect of additional nitrogen sources on lignocellulolytic enzyme production by four species of white-rot fungi (Funalia trogii IBB 146, Lentinus edodes IBB 363, Pleurotus dryinus IBB 903, and P. tuberregium IBB 624) in solid-state fermentation (SSF) of wheat straw and beech tree leaves was strain- and substrate-dependent. In general, the yields of hydrolytic enzymes and laccase increased by supplementation of medium with an additional nitrogen source. This stimulating effect of additional nitrogen on enzyme accumulation was due to higher biomass production. Only xylanase specific activity of P. dryinus IBB 903 and laccase specific activity of L. edodes IBB 363 increased significantly (by 66% and 73%, respectively) in SSF of wheat straw by addition of nitrogen source to the control medium. Additional nitrogen (20 mM) repressed manganese peroxidase (MnP) production by all fungi tested. The study of the nitrogen concentration effect revealed that 10 mM peptone concentration was optimal for cellulase and xylanase accumulation by P. dryinus IBB 903. While variation of the peptone concentration did not cause the change in MnP yield, elevated concentrations of this nutrient (20-40 mM) led to a 2-3-fold increase of P. dryinus IBB 903 laccase activity. About 10-20 mM concentration of NH sub(4)NO sub(3) was optimal for cellulase and xylanase production by F. trogii IBB 146. However, neither the laccase nor the MnP yield was significantly changed by the additional nitrogen source.
机译:在4种固态发酵(SSF)中,额外的氮源对四种白腐真菌(真菌IBG 146,香菇IBB 363,杏鲍菇IBB 903和结核杆菌IBB 624)产生木质纤维素酶的影响。小麦秸秆和山毛榉树叶是依赖菌株和基质的。通常,通过向培养基中添加额外的氮源来增加水解酶和漆酶的产量。额外氮对酶积累的这种刺激作用是由于更高的生物量产生。通过向对照培养基中添加氮源,在小麦秸秆的SSF中,仅枯草假单胞菌IBB 903的木聚糖酶比活和香菇IBB 363的漆酶比活显着增加(分别增加66%和73%)。通过所有测试的真菌,额外的氮(20 mM)抑制了锰过氧化物酶(MnP)的产生。对氮浓度影响的研究表明,对于枯草杆菌IBB 903,纤维素酶和木聚糖酶积累最适的蛋白m浓度为10 mM。虽然蛋白concentration浓度的变化不会引起MnP产量的变化,但该营养素的浓度却有所提高(20- 40 mM)导致枯草假单胞菌IBB 903漆酶活性增加了2-3倍。大约10-20 mM的NH sub(4)NO sub(3)浓度最适合由trogii IBB 146生产纤维素酶和木聚糖酶。但是,漆酶和MnP产量均未因添加氮源而发生显着变化。

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