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Role of Organic Acids in the Manganese-Independent Biobleaching System of Bjerkandera sp. Strain BOS55

机译:有机酸在Bjerkandera sp。的不依赖锰的生物漂白系统中的作用。菌株BOS55

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摘要

Bjerkandera sp. strain BOS55 is a white rot fungus that can bleach EDTA-extracted eucalyptus oxygen-delignified kraft pulp (OKP) without any requirement for manganese. Under manganese-free conditions, additions of simple physiological organic acids (e.g., glycolate, glyoxylate, oxalate, and others) at 1 to 5 mM stimulated brightness gains and pulp delignification two- to threefold compared to results for control cultures not receiving acids. The role of the organic acids in improving the manganese-independent biobleaching was shown not to be due to pH-buffering effects. Instead, the stimulation was attributed to enhanced production of manganese peroxidase (MnP) and lignin peroxidase (LiP) as well as increased physiological concentrations of veratryl alcohol and oxalate. These factors contributed to greatly improved production of superoxide anion radicals, which may have accounted for the more extensive biobleaching. Optimum biobleaching corresponded most to the production of MnP. These results suggest that MnP from Bjerkandera is purposefully produced in the absence of manganese and can possibly function independently of manganese in OKP delignification. LiP probably also contributed to OKP delignification when it was present.
机译:Bjerkandera sp。 BOS55菌株是一种白色腐烂真菌,可以漂白EDTA萃取的桉树氧脱木质素牛皮纸浆(OKP),而无需锰。在无锰条件下,与不接受酸的对照培养物相比,添加1至5 mM的简单生理有机酸(例如,乙醇酸,乙醛酸,草酸等)刺激了白度的提高和果皮脱木素的2-3倍。已显示有机酸在改善非锰依赖性生物漂白中的作用并非归因于pH缓冲作用。相反,刺激归因于锰过氧化物酶(MnP)和木质素过氧化物酶(LiP)的产生增加,以及藜芦醇和草酸盐的生理浓度增加。这些因素大大提高了超氧阴离子自由基的产生,这可能是造成更广泛的生物漂白的原因。最佳的生物漂白最适合生产MnP。这些结果表明,来自Bjerkandera的MnP是在没有锰的情况下有目的地生产的,并且可能在OKP脱木质素中独立于锰起作用。 LiP可能还有助于OKP脱木质素。

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