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The relationship between lignin peroxidase and manganese peroxidase production capacities and cultivation periods of mushrooms

机译:木质素过氧化物酶与锰过氧化物酶生产能力与蘑菇栽培时期的关系

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摘要

Mushrooms are able to secrete lignin peroxidase (LiP) and manganese peroxidase (MnP), and able to use the cellulose as sources of carbon. This article focuses on the relation between peroxidase-secreting capacity and cultivation period of mushrooms with non-laccase activity. Methylene blue and methyl catechol qualitative assay and spectrophotometry quantitative assay show LiP secreting unvaryingly accompanies the MnP secreting in mushroom strains. The growth rates of hyphae are detected by detecting the dry hyphal mass. We link the peroxidase activities to growth rate of mushrooms and then probe into the relationship between them. The results show that there are close relationships between LiP- and/or MnP-secretory capacities and the cultivation periods of mushrooms. The strains with high LiP and MnP activities have short cultivation periods. However, those strains have long cultivation periods because of the low levels of secreted LiP and/or MnP, even no detectable LiP and/or MnP activity. This study provides the first evidence on the imitate relation between the level of secreted LiP and MnP activities and cultivation periods of mushrooms with non-laccase activity. Our study has significantly increased the understanding of the role of LiP and MnP in the growth and development of mushrooms with non-laccase activity.
机译:蘑菇能够分泌木质素过氧化物酶(LiP)和锰过氧化物酶(MnP),并且能够使用纤维素作为碳源。本文着眼于非漆酶活性蘑菇过氧化物酶分泌能力与培养期的关系。亚甲基蓝和甲基邻苯二酚的定性分析和分光光度法定量分析表明,在蘑菇菌株中,LiP的分泌始终伴随着MnP的分泌。菌丝的生长速率通过检测干菌丝质量来检测。我们将过氧化物酶的活性与蘑菇的生长速度联系起来,然后探究它们之间的关系。结果表明,LiP和/或MnP的分泌能力与蘑菇的培养期密切相关。 LiP和MnP活性高的菌株的培养期短。然而,这些菌株由于分泌的LiP和/或MnP水平低,甚至没有可检测的LiP和/或MnP活性而具有长的培养期。这项研究提供了有关分泌的LiP和MnP活性水平与非漆酶活性蘑菇的培养期之间的模仿关系的第一个证据。我们的研究显着增加了对LiP和MnP在非漆酶活性蘑菇的生长发育中的作用的了解。

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