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粗柄羊肚菌菌核形成对其木质素分解酶产生的影响。

Influence of sclerotia formation on ligninolytic enzyme production in Morchella crassipes.

作者信息

Kanwal Harpreet Kaur, Reddy M Sudhakara

机构信息

Department of Biotechnology, Thapar University, Patiala, Punjab, India.

出版信息

J Basic Microbiol. 2014 Jul;54 Suppl 1:S63-9. doi: 10.1002/jobm.201200802. Epub 2013 May 26.

Abstract

Morels are wild edible ascomycetous mushrooms that are highly prized because of their medicinal and nutritional qualities. Ligninolytic enzymes are considered as one of the most important enzymes in fungi due to their involvement in fruiting body formation during artificial cultivation on different substrates. In the life cycle of morels, sclerotia are the intermediate stage to form a fruiting body from mycelia. We have studied the production of ligninolytic enzymes by Morchella crassipes MR8 growing on different substrates and during sclerotia formation. This fungus is able to produce ligninolytic enzymes such as laccase (Lac), lignin peroxidase (LiP), and manganese-dependent peroxidase (MnP) when grown on different substrates. Maximum Lac activity was observed when grown in wheat grains whereas maximum activities of MnP and LiP were observed when grown in rice straw. Laccase enzyme was produced in high titers during sclerotia formation and maturation when grown in combinations of soil and substrates. A large number of sclerotia was observed in soil and wheat grains, along with high titers of laccase. Cellulase activity was observed to be constant during sclerotia formation and maturation. The present study results suggest that laccase enzyme might play an important role in sclerotia formation in morels.

摘要

羊肚菌是野生可食用的子囊菌蘑菇,因其药用和营养品质而备受推崇。木质素分解酶被认为是真菌中最重要的酶之一,因为它们参与了在不同基质上人工栽培期间子实体的形成。在羊肚菌的生命周期中,菌核是从菌丝体形成子实体的中间阶段。我们研究了粗柄羊肚菌MR8在不同基质上生长以及菌核形成过程中木质素分解酶的产生情况。这种真菌在不同基质上生长时能够产生木质素分解酶,如漆酶(Lac)、木质素过氧化物酶(LiP)和锰依赖性过氧化物酶(MnP)。在小麦粒中生长时观察到最大的漆酶活性,而在稻草中生长时观察到锰过氧化物酶和木质素过氧化物酶的最大活性。当在土壤和基质组合中生长时,在菌核形成和成熟过程中产生了高滴度的漆酶。在土壤和小麦粒中观察到大量菌核,同时漆酶滴度也很高。在菌核形成和成熟过程中观察到纤维素酶活性保持恒定。本研究结果表明,漆酶可能在羊肚菌菌核形成中起重要作用。

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