Evaluation of tropical forest substrates for cultivation and production of proteases by Pleurotus djamor

Authors

DOI:

https://doi.org/10.33448/rsd-v10i3.13385

Keywords:

Amazon; Edible mushroom; Enzymes; Lignocellulosic residue.

Abstract

Mushrooms of the genus Pleurotus are cultivated as food, for medicinal purposes and also because they are sources of enzymes of industrial interest. The present study aimed to evaluate mycelial growth and verify the activity of P. djamor proteases. This mushroom was grown on potato dextrose agar (BDA) with yeast extract (YE) 0.5% (w/v). In order to evaluate the speed of radial mycelial growth (VCR) and mycelial density, P. djamor was grown in five media with 0.5% YE (w/v): potato dextrose agar (BDA+YE), Sabouraud agar (SAB + YE), malt extract agar (MEA+YE), purple yam agar (PYA+YE) and cará-de-espinho agar (SYA+YE). Proteolytic activity was determined by the agar block method. For the vertical mycelial growth evaluation (VCM), cupuaçu (CE) and pineapple (PE), açaí seed (AS) and sawdust (SAW) exocarps were used, supplemented with rice bran (RB) or wheat bran (WB). Significant VCR was observed in SYA+YE (11.26 mm / day) and PYA+YE (10.97 mm / day). However, SAB+YE favored mycelial density, so it was the medium selected for obtaining inoculum for the tests to evaluate mycelial growth of P. djamor in lignocellulosic residues. Significant proteolytic activity was determined in BDA+YE (17.7 mm), MEA+YE (17.6 mm) and SAB+YE (17.0 mm). Strong mycelial density and significant CMV was determined in CE+WB (0.37 cm / day) and CE+RB (0.30 cm / day). Rainforest substrates are efficient for mycelial cultivation and protease production by P. djamor.

References

Balan, V., Munafo, J. P. J., Pattathill, S., Merritt, B. B., Venketachalam, S. & Ng, W. (2018). Protocols to Evaluate the Nutritional and Potential Health Benefits of Edible Mushrooms. Current Biotechnology, 7(1), 34-58.

Barh, A., Sharma, V. P., Annepu, S. K., Kamal, S., Sharma, S., & Bhatt P. (2019). Genetic improvement in Pleurotus (oyster mushroom): a review. 3 Biotech, 9(322), 1-14.

Benmrad, M. O., Mechri, S., Jaouadi, N. Z., Elhoul, M. B., Rekik, H., Sayadi, S., Bejar, S., Kechaou, N., & Jaouadi, B. (2019). Purification and Biochemical Characterization of a Novel Thermostable Protease from the Oyster Mushroom Pleurotus sajor-caju Strain CTM10057 with Industrial Interest. BMC Biotechnology, 19(43), 1-18.

Bumanlag, C. P. B., Kalaw, S. P., Dulay, R. M. R., & Reyes, R. G. (2018). Optimum Conditions for Mycelial Growth and Basidiocarp Production of Pleurotus djamour on Corn-based Media. International Journal of Biology, Pharmacy and Allied Sciences, 7(4), 558-575.

Castillo, T. A. (2009). Caracterização fisiológica, produção de biocompostos e biomassa em substrato agroflorestal amazônico de Pleurotus e Lentinus. 151 f. Tese (Doutorado em Biotecnologia) - Universidade Federal do Amazonas, Manaus.

Carrasco-González, J. A., Serna-Saldívar, S. O., & Gutiérrez-Uribe, J. A. (2017). Nutritional attributes of Pleurotus mushroom. Journal of Food Composition and Analysis, 58, 69-81.

Devi, S. K., Prabhu, N., Monika, S., Swapna, N. M., Vaishali, S., & Gajendran, T. (2020). Sequestration and purification of essential enzyme from Pleurotus florida compost waste and its application studies. Journal of Applied Biology & Biotechnology, 8(1), 64-68.

Fletcher, I. A. (2019). Effect of Temperature and Growth Media on Mycelium Growth of Pleurotus ostreatus and Ganoderma Lucidum Strains. Cohesive journal of microbiology and infectious disease, 2(5), 1-5.

Fonseca, R. B. T., Silva, T. A., Alecrim, M. M., Cruz, R. F., Filho & Teixeira, M. F. S. (2015). Cultivation and nutritional studies of an edible mushroom from North Brazil. African Journal of Microbiology Research, 9(30), 1814-1822.

Israel, C. M. (2005). Utilização do resíduo do processamento do palmiteiro para a produção de enzimas hidrolíticas por fungos do gênero Polyporus. Dissertação (Mestrado em Engenharia Ambiental) - Centro de Ciências Tecnológicas, Universidade Regional de Blumenau, Blumenau. 136 f.

Jegadeesh, R., Lakshmanan, H., Kab-Yeul, J., Sabaratnam, V., & Raaman, N. (2018). Cultivation of Pink Oyster mushroom Pleurotus djamor var. roseus on various agro-residues by low cost technique. Journal of Mycopathological Research, 53(3), 213-220.

Laursen, A. (2018). The Effect of Different Nitrogen Sources on Mycelial Growth of Oyster Mushroom, Pleurotus ostreatus. Online publication: http://stud.epsilon.slu.se, p. 1-60.

Machado, A. R. G., Teixeira, M. F.S., Kirsch, L. S., Campelo, M. C. L., & Oliveira, I. M. A. (2016). Nutritional value and proteases of Lentinus citrinus produced by solid state fermentation of lignocellulosic waste from tropical region. Saudi Journal of Biological Sciences, 23(5), 621-627.

Mahadevan, K., & Shanmugasundaram, K. (2018). Comparative effect of different culture media on mycelial growth performance of Pleurotus sapidus. Journal of Pharmacognosy and Phytochemistry, 7(4), 874-878.

Marino, R. H.; Abreu, L. D.; Mesquita, J. B., & Ribeiro, G. T. (2008). Crescimento e cultivo de diferentes isolados de Pleurotus ostreatus (Jacq.: Fr.) Kummer em serragem da casca de coco. Arquivos do Instituto Biológico, 75(1), 29-36.

Minitab, 2017. Minitab statistical software. LEAD Technologies, Inc. Version 18.0.

Oropeza-Guerrero, M. P., Santos-Sánchez, N. F., Salas-Coronado, R.; Valadez-Blanco, R.; Hernández-Carlos, B., & Guadarrama-Mendoza, P. C. (2018). Productivity and Antioxidant Activity of Wild, Reconstituted, and Hybrid Strains of the Pink Oyster Mushroom, Pleurotus djamor (Agaricomycetes), from Mexico. International Journal of Medicinal Mushrooms, 20(7), 607-621.

Osunde, O. M., Olayinka, A., Fashina, C. D., & Torimiro, N. (2019). Effect of Carbon-Nitrogen Ratios of Lignocellulosic Substrates on the Yield of Mushroom (Pleurotus pulmonarius). Open Access Library Journal, 6, 1-8.

Palheta, R. A., Vieira, J. N., Neves, K. C. S., & Teixeira, M. F. S. (2011). Crescimento micelial vertical de duas espécies de Pleurotus em resíduo agroindustrial da Amazônia utilizando planejamento fatorial. Caderno de Pesquisa Série Biologia, 23(3), 52-60.

Putzke, J., & Putzke M. T. L. (2019) Cogumelos (fungos Agaricales) no Brasil - Ordens Boletales (Boletaceae, Paxillaceae), Polypolares (Lentinaceae/ Pleurotaceae, Polyporaceae). Russalales (Russaleceae) e Agaricales (Cortrinariaceae, Inocybaceae, Pluteaceae e Strophariaceae), São Gabriel: e-book, 380 f.

Ragasa, C., Tan, M. C. S., Ting, J., Reyes, R. G., Brkljača, R., & Urban, S. (2016). Chemical constituents of Pleurotus djamor. Der Pharma Chemica, 8(2),343-346.

Raman, J., Jang, K. Y., Oh, Y. L., Oh, M., Im, J. H., Lakshmanan, H., & Sabaratnam, V. (2021). Cultivation and nutritional value of prominent Pleurotus spp.: An overview. Mycobiology, 49(1), 1-14.

Raman, J., Hariprasath, L., Jang, K. Y., Vikineswary, S. A., & Nanjian, R. (2018). Cultivation of Pink Oyster mushroom Pleurotus djamor var. roseus on various agro-residues by low cost technique. J. Mycopathol. Res., 56(3), 213-220.

Sabri, M. A., Shafiq, A., & Chechan, R A. (2020). Production of Spawn With High Quality from Novel Iraqi Strains of Edible Mushrooms. Plant Archives, 20(1), 2135-2142.

Sardar, H., Ali, M. A., Ayyub, C. M., Ahmad, R. (2015). Effects of Different Culture Media, Temperature and pH Levels on the Growth of Wild and Exotic Pleurotus Species. Pakistan Journal of Phytopathology, 27(2),139-145.

Salmones, D. (2018). Pleurotus djamor, un hongo con potencial aplicación biotecnológica para el neotrópico. Scientia Fungorum, 46, 73-85.

Satpal, S., Gopal, S., N, R. S., Ankit, K., Bhanu, P., Priyanka, B., & Kumar, R. (2017). Effect of Different Substrates on the Growth and Yield of Oyster Mushrooms (Pleurotus djamor). Research Article, 9(4), 3721-3723.

Sekan, A. S., Myronycheva, O. S., Karlsson, O., Grygansky, A. P., & Blume, Y. (2019) Green potential of Pleurotus spp. in biotechnology. PeerJ, 1-21.

Singh, S., & Singh G. (2018). Effect of Environment Conditions (pH , Temperature and Media) on Radial Growth of Oyster Mushroom (Pleurotus djamor). HortFlora Research Spectrum, 5(4), 7-11.

Souza, R. A. T., Fonseca, T. R. B., Kirsch, L. S., Silva, L. S. C., Alecrim, M. M., Filho, R. F. C., & Texeira, M. F. S. (2016). Nutritional composition of bioproducts generated from semi-solid fermentation of pineapple peel by edible mushrooms. African Journal of Biotechnology, 15(12), 451-457.

Sudha, G., Janardhanan, A., Moorthy, A., Chinnasamy, M., Gunasekaran, S., Thimmaraju, A., & Gopalan, J. (2016). Comparative Study on the Antioxidant Activity of Methanolic and Aqueous Extracts from the Fruiting Bodies of an Edible Mushroom Pleurotus djamor. Food Sci. Biotechnol. 25(2), 371-377.

Teixeira, M. F. S., Silva, T. A., Palheta, R. A., Carneiro, A. L. B., & Ataíde, H. M. (2011). Fungos da Amazonia: uma riqueza inexplorada (Aplicações Biotecnológicas). Manaus: Edua.

Theradinami, M., Thangeshwari, S., Arulsamy, M., & Parthasarathy, S. (2019). Composted Coirpith using Edible Fungi (Pleurotus spp.) for the Management of Rice Sheath Blight and Sheath Rot. Research Journal of Agricultural Sciences, 10(3), 521-525.

Toan, N.V., & Qui, L. N. M. (2018). Preparation and Improved Quality Production of Flour and the Made Biscuits from Shitake Mushroom (Lentinus edodes). Clinical Journal of Nutrition and Dietetics, 1(1), 1-9.

Wu, N., Tian, F., Moodley, O., Song, B., Jia, C., Ye, J., LV, R., Qin, Z., & Li, C. (2019). Optimization of agro-residues as substrates for Pleurotus pulmonarius production. AMB Expr, 9, 1-9.

Published

17/03/2021

How to Cite

BRITO , A. K. P. de; PIMENTA , L.; BARBOSA, E. E. P.; BATISTA, S. C. P. .; COELHO, M. do P. S. de L. V.; CASTILLO, T. A. .; MARTIM, S. R. .; TEIXEIRA, M. F. S. . Evaluation of tropical forest substrates for cultivation and production of proteases by Pleurotus djamor. Research, Society and Development, [S. l.], v. 10, n. 3, p. e31810313385, 2021. DOI: 10.33448/rsd-v10i3.13385. Disponível em: https://rsdjournal.org/index.php/rsd/article/view/13385. Acesso em: 23 apr. 2024.

Issue

Section

Agrarian and Biological Sciences