A Comparative Study on Pleurotus ostreatus (Jacq.) P.Kumm. Cultivated on Different Agricultural Lignocellulosic Wastes

For the cultivation of Pleurotus ostreatus (Jacq.) P.Kumm. wheat stalk (WS), cotton stalk (CS), millet stalk (MS), and soybean stalk (SS) were used as the main material and oven-dried lentil straw (LS) was used as an additive material 100:10, 100:15, 100:20 w:w in weight for 100 g of main material (70% moisture). The shortest mycelium growing time (MGT) was 10.2 days, on the SS, while the longest was 18.8 days, on the CS. The shortest first harvest time (FHT) was 30 days, on SS + LS (90:10; w:w), and the longest was 46.4 days, on CS + LS (100:20; w:w). The shortest total harvest time (THT) was as 62.6 days, on SS + LS (100:20; w:w), and the longest was 83.8 days, on CS + LS (100:10; w:w) culture medium. The highest total harvest amount was 49.9 g, from SS + LS (100:20; w:w), while the lowest was 14.3 g, obtained from CS. The highest biologic efficiency degree (BED) and biologic conversion ratio (BCR) values were obtained from SS + LS (100:20; w:w), 166.18% and 16.53%, respectively. The highest first harvest amount percentage (FHAP) was on WS + LS (100:15; w:w), 62.83%; the highest second harvest amount percentage (SHAP) was obtained from SS + LS (100:15; w:w) compost medium, 38.60%; and the highest third harvest amount percentage (THAP) value was 26.92%, on the CS culture medium.

A Comparative Study on Pleurotus ostreatus (Jacq.) P.Kumm. Cultivated on Different Agricultural Lignocellulosic Wastes

For the cultivation of Pleurotus ostreatus (Jacq.) P.Kumm. wheat stalk (WS), cotton stalk (CS), millet stalk (MS), and soybean stalk (SS) were used as the main material and oven-dried lentil straw (LS) was used as an additive material 100:10, 100:15, 100:20 w:w in weight for 100 g of main material (70% moisture). The shortest mycelium growing time (MGT) was 10.2 days, on the SS, while the longest was 18.8 days, on the CS. The shortest first harvest time (FHT) was 30 days, on SS + LS (90:10; w:w), and the longest was 46.4 days, on CS + LS (100:20; w:w). The shortest total harvest time (THT) was as 62.6 days, on SS + LS (100:20; w:w), and the longest was 83.8 days, on CS + LS (100:10; w:w) culture medium. The highest total harvest amount was 49.9 g, from SS + LS (100:20; w:w), while the lowest was 14.3 g, obtained from CS. The highest biologic efficiency degree (BED) and biologic conversion ratio (BCR) values were obtained from SS + LS (100:20; w:w), 166.18% and 16.53%, respectively. The highest first harvest amount percentage (FHAP) was on WS + LS (100:15; w:w), 62.83%; the highest second harvest amount percentage (SHAP) was obtained from SS + LS (100:15; w:w) compost medium, 38.60%; and the highest third harvest amount percentage (THAP) value was 26.92%, on the CS culture medium.

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  • Zadrazil F. Bioconversion of ligninocellulose into ruminant feed with white rot fungi- review of work done at the FAL, Braunschweig. J Appl Anim Res 10: 105-124, 1996.
  • Zadrazil F. Changes in in vitro digestibility of wheat straw during fungal growth and after harvest of oyster mushrooms (Pleurotus spp) on laboratory and industrial scale. J Appl Anim Res 11: 37- 48, 1997.
  • Zadrazil F. Straw decomposition by fungi (Basidiomycetes) with its subsequent use as edible mushroom feed supplement or compost. Proc Int Symp Sci Cultiv Mushrooms 157, 1998.
  • Zadrazil F. Is conversion of ligninocellulosics into feed with white rot fungi realizable? Practical problems of scale-up and technology transfer. Mushroom Sci 15: 919-928, 2000.
  • Domsch KH, Zadrazil F. Biotechnological approaches to the development of microbiology foodstuff and fodder from unconventional raw materials. Anim Res Dev 16: 51-59, 1982.
  • Capelari M, Zadrazil F. Lignin degradation and in vitro digestibility of wheat straw treated with Brazilian tropical species of white rot fungi. Folia Microbiol 42: 481-487, 1997.
  • Braun A, Wolter M, Zadrazil F et al. Bioconversion by Lentinus tuberregium and its potential utilization as food, medicine and animal feed. Mushroom Sci 15: 549-558, 2000.
  • Chang ST. World production of cultivated edible and medicinal mushrooms in 1997 with emphasis on Lentinus edodes (Berk.) Sing. in China. Int J Med Mushrooms 1: 291-300, 1999.
  • Garcha HS, Khanna PK, Soni GL. Nutritional importance of mushrooms. In: Chang ST, Buswell JA, Chiu S (eds) Mushroom biology and mushroom products. Chinese University Press, Hong Kong, 1993. Xiujin L, Yunzhi P, Zhang R. Compositional changes of cottonseed hull substrate during P. ostreatus growth and the effects on the feeding value of the spent substrate. Bioresource Technology 80: 157-161, 2000.
  • Zervakis G, Balis C. Comparative study on the cultural characters of Pleurotus species under the different substrates and fruiting temperatures. Micol Neotrop Appl 5: 39-47, 1992.
  • Chang ST, Lau DW, Cho KY. The cultivation and nutritional value of Pleurotus sajor-caju. European Journal of Applied Microbiology and Biotechnology 12: 58-62, 1981.
  • Madan M, Vasudevan P, Sharma S. Cultivation of Pleurotus sajor- caju on different wastes. Biol Wastes 22: 241-250, 1987.
  • Patrabansah S, Madan M, Studies on cultivation biological efficiency and chemical analysis of Pleurotus sajor-caju (Fr.) Singer on different bio-wastes. Acta Biotechnol 17: 107-122, 1997.
  • Laborde J, Delmas J. Le pleurote une nouveau champignon comestible culture, ecologieet culture des champignions superierus (ed. J. Delmas). INRA Pres, Bordeaux 13-20, 1976.
  • Yıldız A, Demir R. Bazı bitkisel materyallerin Pleurotus ostreatus (Jacq. Ex. Fr.) Kum. var. salignus (Pers. Ex: Fr.) Konr. et Maubl.’ un gelişmesi ve ürün verimi üzerine etkileri. Tr J of Biology 22: 67-73, 1998.
  • Baysal E, Peker H, Yalinkiliç MK, et al. Cultivation of oyster mushroom on waste paper with some added supplementary materials. Bioresource Technology 89: 95-97, 2003.
  • Shah AZ, Ashraf M, Ishtiaq M. Comparative study on cultivation and yield performance of oyster mushroom (Pleurotus ostreatus) on different substrates (wheat straw, leaves, saw dust). Pakistan Journal of Nutrition 3: 158-160, 2004.
  • Khanna P, Bhandari KR, Soni GL et al. Evaluation of Pleurotus spp. for growth, nutritive value and antifungal activity. Indian J Microbiol 32: 197-200, 1992.
  • Ragunathan R, Gurusamy R, Palaniswamy M et al. Cultivation of Pleurotus spp. on various agro-residues. Food Chem 55: 139- 144, 1996.
  • Zadrazil F. Cultivation of Pleurotus. In the biology and cultivation of edible mushrooms. (Eds S.T. Chang & W.A. Hayes), Academic Press, New York pp. 521-558, 1978.
  • Klibansky MM, Mansur M, Gutierrez I et al. Production of Pleurotus ostreatus mushrooms on sugarcane agrowastes. Acta Biotechnol 13: 71-78, 1993.
  • Ragunathan R, Swaminathan K. Nutritional status of Pleurotus spp. grown on various agro-wastes. Food Chem 80: 371-375, 2003. Yildiz A, Karakaplan M. Evaluation of some agricultural wastes for the cultivation of edible mushrooms: Pleurotus ostreatus var. salignus. J Food Sci Technol 40: 290-292, 2003.
  • Delmas J, Mamoun M. Le Pleurote en corne d’abondance un champignon aujourd’hui cultivable en France. P. H. M.- Revue Horticol 240: 39-46, 1983.
  • Olivier JM. Les besoins des pleurote cultives. Bull Fnsacc 45: 33- 51, 1990.
  • Royse DU. Recycling of spent shiitake substrate for production of the oyster mushroom, Pleurotus sajor-caju Appl Microbiol Biotechnol 38: 179-182, 1992.
  • Laborde J, Lanzi G, Francescutti B et al. Indoor composting: General principles and large scale development in Italy. In: Chang, S. T., Buswell, J.A., Chiu, S.W. (Eds.), mushroom biology and mushroom products. The Chinese University Press, Hong Kong pp. 93-113, 1993. Sangwan MS, Saini LC. Cultivation of Pleurotus sajor caju (Fr.) Singer on agro- industrial wastes. Mushroom Research 4: 33-34, 1995.
Turkish Journal of Biology-Cover
  • ISSN: 1300-0152
  • Yayın Aralığı: Yılda 6 Sayı
  • Yayıncı: TÜBİTAK
Sayıdaki Diğer Makaleler

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