Studies on cultivation, nutrition and extracellular ligninolytic enzymes of Flammulina velutipes strains collected from Indian Himalayas
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Abstract
Seven different strains of Flammulina velutipes collected from the North East and North West Himalayas were evaluated for total protein and ligninolytic enzymes on wheat straw and malt extract liquid broth medium respectively. Nutritional analyses of 6 strains were also done followed with yield evaluation. Maximum mycelia protein was observed in strain DMRX-166 on the 20th day in malt extract medium and DMRX-768 and DMRX-769 in wheat straw medium. Minimum laccase production was observed in strain (DMRO-253). Laccase appearance starts on the 5 day of incubation and continuously increased upto 20th37th day. Highest peroxidase activity was observed in DMRX-897 in wheatstraw medium on 15 day followed by DMRO-253. In general, more peroxidase activity observed in wheat straw media as compared to malt extracts media. On the 15th day strain no. DMRX-1618 produced maximum ligninase activity (175 U/ml) followed by DMRX-1446 on malt extract medium. Wheat straw broth medium favored early lignin peroxidase activity on the 10th day in 3 strains while 4 strains produce more lignin peroxidase on the 20th day. Least lignin peroxidase activity was recorded inDMRX-897 in the malt extract medium. Manganese peroxidase was observed in DMRO-253 in malt extract medium. Nutritional analysis showed highest protein content in DMRX-1446 while highest vitaminC and D2th were found in DMRX-767. The current study elucidated enzyme and nutritional relationship with time will help for developing efficient cultivation practices in Flammulina in near future.
References
Bourbonnais, R. and M.G. Paice. 1990. Oxidation of non-phenolic substrates. An expanded role for laccase in lignin biodegradation. FEBS Letters 267 (1): 99–102. Retrieved from http://www.ncbi.nlm.nih.gov/pubmed/2365094
Camarero, S., P. Bocchini., G.C. Galletti and A.T. Martinez. 2001. Compositional changes of wheat lignin by a fungal peroxidase analyzed by pyrolysis-GC-MS. Journal of Analytical and Applied Pyrolysis 58: 413–423. https://doi.org/10.1016/S0165-2370(00)00115-7
Farhangrazi, Z.S., B.R. Copeland., T. Nakayama., T. Amachi., I. Yamazaki and L.S. Powers. 1994. Oxidation-Reduction Properties of Compounds I and II of Arthromyces ramosus Peroxidase. Biochemistry 33 (18): 5647–5652. https://doi.org/10.1021/bi00184a038
Gold, M.H and M. Alic. 1993. Molecular biology of the lignin-degrading basidiomycete Phanerochaete chrysosporium. Microbiological Reviews 57 (3): 605–22. Retrieved from http://www.ncbi.nlm.nih.gov/pubmed/8246842
Janusz, G., A. Czuryło., M. Frąc., B. Rola., J. Sulej., A. Pawlik and J. Rogalski. 2015. Laccase production and metabolic diversity among Flammulina velutipes strains. World Journal of Microbiology & Biotechnology 31(1): 121–33. https://doi.org/10.1007/s11274-014-1769-y.
Leifa, F., A. Pandey and C.R. Soccol. 2001. Production of Flammulina velutipes on Coffee Husk and Coffee Spent-ground. Brazilian Archives of Biology and Technology, 44(2): 205–212.
Maganhotto de Souza Silva, C. M., Soares de Melo, I., and P. Roberto de Oliveira. 2005. Ligninolytic enzyme production by Ganoderma spp. Enzyme and Microbial Technology, 37(3): 324–329. https://doi.org/10.1016/j.enzmictec.2004.12.007
Martinez, A. 2002. Molecular biology and structure-function of lignin-degrading heme peroxidases. Enzyme and Microbial Technology. Retrieved from http://www.sciencedirect.com/science/article/pii/S014102290100521X
Mata, G., and J.M. Savoie. 1998. Extracellular enzyme activities in six Lentinula edodes strains during cultivation in wheat straw. World Journal of Microbiology and Biotechnology 14(4): 513–519. https://doi.org/10.1023/A:1008886521091
Melo, M. R., L.D. Paccola-Meirelles., N.K. Ishikawa and T. de J. Faria. 2009. Influence of Flammulina velutipes mycelia culture conditions on antimicrobial metabolite production. Mycoscience 50(1): 78–81. https://doi.org/10.1007/S10267-008-0447-Z
Muñoz, C., F. Guillén., A.T. MartÃnez and M.J. MartÃnez. 1997. Induction and Characterization of Laccase in the Ligninolytic Fungus Pleurotus eryngii. Current Microbiology 34 (1): 1–5. https://doi.org/10.1007/s002849900134
Nakamura, K. 1981. Mushroom cultivation in Japan. Asaki Publication House, Japan.
Nishizawa, K., Y. Amano., K. Nozaki., T. Kanda., K. Nishizawa., N. Hosokawa and M. Shiroishi. 2003. Some characteristics of three groups in Flammulina velutipes classified by analysis of esterase isozymes. Mycoscience 44(1): 19–23. https://doi.org/10.1007/S10267-002-0076-X
Otsuka Saito, K., R. Ikeda., K. Endo., Y. Tsujino., M. Takagi and E. Tamiya. 2012. Isolation of a novel alkaline-induced laccase from Flammulina velutipes and its application for hair coloring. Journal of Bioscience and Bioengineering 113 (5): 575–579. https://doi.org/10.1016/j.jbiosc.2012.01.001
Patrick, F., G. Yesusaa., S. Mtui., A.M. Mshandete and A.K. Kivaisi. 2014. Ligninolytic enzymes activities of Pleurotus sapidus P969 during vegetative growth and fruit development on sugarcane residues- based substrates. The International Journal of Biotechnology 3(34): 58–71.
Perez-Boada, M., F.J. Ruiz-Dueñas., R. Pogni., R. Basosi., T. Choinowski., M. MartÃnez., and A.T. MartÃnez. 2005. Versatile Peroxidase Oxidation of High Redox Potential Aromatic Compounds: Site-directed Mutagenesis, Spectroscopic and Crystallographic Investigation of Three Long-range Electron Transfer Pathways. Journal of Molecular Biology 354(2): 385–402. https://doi.org/10.1016/j.jmb.2005.09.047
Pribnow, D., M.B. Mayfield., V.J. Nipper., J.A. Brown and M.H. Gold. 1989. Characterization of a cDNA Encoding a Manganese Peroxidase, from the Lignin-degrading Basidiomycete Phanerochaete chrysosporium 264(9): 5036–5040.
Rogalski, J., T.K. Lundell., A. Leonowicz and A.I. Hatakka. 1991. Influence of aromatic compounds and lignin on production of ligninolytic enzymes by Phlebia radiata. Phytochemistry 30(9): 2869–2872. https://doi.org/10.1016/S0031-9422(00)98215-3
Royse, D. J., and P. Emeritus. 2014. A global perspective on the high five: Agaricus, Pleurotus, Lentinula, Auricularia & Flammulina. In 8th International Conference on Mushroom Biology and Mushroom Products (ICMBMP8) (pp. 1–6).
Ruiz DueNas, F. J., M. Morales., E. Garcia., Y. Miki., M.J. MartÃnez and A.T. MartÃnez . 2009. Substrate oxidation sites in versatile peroxidase and other basidiomycete peroxidases. Journal of Experimental Botany 60(2): 441–52. https://doi.org/10.1093/jxb/ern261
Song, N.-K., C.S. Jeong and H.S. Choi. 2000. Identification of Nitric Oxide Synthase in Flammulina velutipes. Mycologia 92(6): 1027. https://doi.org/10.2307/3761467
Tien, M., and T.K. Kirk. 1984. Lignin-degrading enzyme from Phanerochaete chrysosporium: Purification, characterization, and catalytic properties of a unique H202-requiring oxygenase. Biochemistry 81: 2280–2284.
Tsujiyama, S., T. Nitta and T. Maoka. 2011. Biodegradation of polyvinyl alcohol by Flammulina velutipes in an unsubmerged culture. Journal of Bioscience and Bioengineering 112(1): 58–62. https://doi.org/10.1016/j.jbiosc.2011.03.004
Vrsanska, M., S. Voberkova., V. Langer., D. Palovcikova., A. Moulick., V. Adam and P. Kopel. 2016. Induction of Laccase, Lignin Peroxidase and Manganese Peroxidase Activities in White-Rot Fungi Using Copper Complexes. Molecules 21(11): 1553. https://doi.org/10.3390/molecules21111553
Wang, N. L. 1995. Edible Fungi Cyclopedia of China. Agriculture Printing House.
Watling, R. and N.M. Gregory. 1980. Nova Hedw, 32, Watling R and Gregory NM.
Yang, X. M. 1986. Cultivation of Edible Mushroom in China. Agriculture Printing House, 489–510.
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