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首页> 外文期刊>Preparative biochemistry & biotechnology: An international journal for rapid communication >Enhancing laccase production by white-rot fungus trametes hirsuta SSM-3 in co-culture with yeast sporidiobolus pararoseus SSM-8
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Enhancing laccase production by white-rot fungus trametes hirsuta SSM-3 in co-culture with yeast sporidiobolus pararoseus SSM-8

机译:用酵母Sporidiobolus Pararoseus SSM-8在共同培养中增强白腐真菌rsm-3的漆酶生产Hirsuta SSM-3

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摘要

Due to wide application of laccase, many researchers have shown great interest in over production of white-rot fungi laccase by co-culture. In this study, a white-rot fungus Trametes hirsuta SSM-3, and a yeast Sporidiobolus pararoseus SSM-8 were isolated and identified from Mulberry fruit. The capacity of S. pararoseus to enhance laccase production was remarkable in T. hirsuta, yielding 31777 +/- 742 U/L, about 9.9 times higher than the result from the monoculture. The stimulatory factor in the S. pararoseus cells might be temperature-sensitive. The laccase production was enhanced by oil-extract of S. pararoseus and beta-carotene induction. The amylase activity was decreased rapidly when strain S. pararoseus SSM-8 was inoculated. The glucose deprivation was occurred both in the mono-culture and co-culture process, and S. pararoseus propagated slowly in co-culture all the time. Native-PAGE revealed an increase of laccase-1(lac-1) level and a laccase-3 (lac-3) in the co-culture. Therefore, it was concluded that competition for resources between the co-cultured microbes leaded to amylase decreasing and the enhanced production of laccase. This conclusion was helpful for the development of laccase fermentation industry because it provided an effective, simple and economic method to improve the yield of laccase.
机译:由于漆粉件的广泛应用,许多研究人员对共同文化的白腐真菌漆酶产生了极大的兴趣。在这项研究中,白腐真菌Trametes Hirsuta SSM-3,以及酵母孢子素氨碱基SSM-8被分离并从桑树果中鉴定。帕拉罗述的能力在于T. Hirsuta的显着卓越,产生31777 +/- 742 U / L,比单一种植体的结果高约9.9倍。 S. pararoseus细胞中的刺激因子可能是温度敏感的。通过帕拉酮和β-胡萝卜素诱导的油提取物提高了漆酶生产。当接种菌株S.菌株SSM-8时,淀粉酶活性迅速降低。在单培养和共培养过程中发生葡萄糖剥夺,并且帕拉酮在共同培养中缓慢繁殖。 Native-Page在共培养中揭示了LACCASE-1(LAC-1)水平和LACCASE-3(LAC-3)的增加。因此,得出结论是,共培养微生物之间的资源竞争导致淀粉酶降低和增强的漆酶生产。这一结论有助于开发漆粉件发酵行业,因为它提供了提高漆酶的产量的有效,简单,经济的方法。

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