Application Status and Prospect of <i>Pinus massoniana</i> Sawdust as the Substrate for the Cultivation of Edible Fungi
- 1 Research Institute of Subtropical Forestry, Chinese Academy of Forestry, Hangzhou, China
- 2 Research Institute of Subtropical Forestry, Chinese Academy of Forestry, Hangzhou, China
Abstract
In this paper, the research status of using Pinus massoniana sawdust for the cultivation of edible fungi was analyzed and discussed. It was found that Pinus massoniana sawdust contained the material base of edible fungi with sufficient cellulose, hemicellulose and lignin and a small amount of nitrogen, phosphorus, potassium, calcium, magnesium, other mineral salts, and some vitamins for the growth of edible fungi. However, the Pinus massoniana wood contained a significant amount of terpenoids, which are detrimental to the growth of edible fungus and mycelial. The major and current detoxification methods for Pinus massoniana sawdust were analyzed, such as steaming method, distillation method, lime water immersion method, outdoor piling fermentation method, and chemical method. Their advantages and disadvantages were discussed and reviewed. Finally, the major issues in the application of Pinus massoniana sawdust as the cultivation substrate of edible fungi were analyzed, and the application prospect of Pinus massoniana sawdust as the substrate for the cultivation of edible fungi was also reviewed.
- Zhou, Z.X. (2011) Chinese Pinus massoniana. China Forestry Press, Beijing, 14.
- Deng, L.J. and Fu, J.P. (1996) A Brief Study on the Cultivation of Oyster Mushroom Using Pine Sawdust. Edible Fungi, 5, 18.
- Pan, Y.L. (1982) Studies on the Utilization of Pinus massoniana Sawdust for the Cultivation of Shiitake Mushroom. Guangxi Agricultural Science, 29-32.
- Wu, X.Q., Wei, H.L., Wu, Y.K., et al. (2008) New Efficient Antimildew Technology for the Cultivation of Shiitake Mushrooms Using Pine and Fir Sawdust. Zhejiang Edible Fungi, 16, 30-33.
- Qiu, G.G. (2003) Piling Technology for the Treatment of Japan Pine and Fir Sawdust. Edible Fungi or Fungi, No. 3, 39.
- Chen, Q. and Huang, C.Y. (2013) Current Situation of Japanese Edible Fungus Industry. Edible Fungi of China, 32, 67-69, 72.
- Fan, L.L. (2006) Technology for the Cultivation of Hair Fungus Using Pine and Fir Wood Chips. Guangxi Agricultural Sciences, 37.
- Wu, Q.P., Chen, S.Y., Que, S.H., et al. (2003) Method for Rapid Degradation of Pine Resin in Pine Sawdust. Patent No. CN200310112187.6, Application Date: 2003.11.19.
- Si, J.P., Xu, Y.K., Fu, G.W., et al. (2003) Experimental Study on the Cultivation of Shiitake Mushrooms with Bags of Magnolia officinalis Sawdust. Zhejiang Forestry Science and Technology, 23, 16-18.
- Qin, B.S. and Qin, Y.R. (2010) Status and Prospect of New Cultivation Substrate for Edible Fungi. Chinese Agricultural Science Bulletin, 26, 223-228.
- Yang, Z.Q. (2012) Sdudies on Genetic Variation of Timber Chemical Composition of Pinus masso. Journal of Fujian College of Forestry, 32, 188-192.
- Chen, Z.X., Liu, X.P. and Xiong, Z.P. (2011) Carbon Content and Caloric Value Analysis of Pinus massoniana. Central South Forest Inventory and Planning, 30, 54-58.
- An, N. and Ding, G.J. (2012) Studies on the Chemical Composition of Pine Resin of Pinus massoniana in Guangxi. Journal of Central South University of Forestry and Technology, 32, 59-62.
- An, N., Ding, G.J., Jia, H.Y., et al. (2015) Study on the Difference on the Fat Production and Pine Resin Composition of Pinus massoniana with Different Trunk Diameters. Journal of Central South University of Forestry, 35, 42-45.
- Yang, Z.Q. (2014) Analysis of the Fat Production and Rosin Components of Pinus massoniana with Different Ages. Forestry Science, 50, 147-151.