Solid-state Fermentation of Cordyceps taii for Polysaccharide Production

被引:0
|
作者
Han P. [1 ,2 ]
Zhu X. [1 ]
Yang M. [1 ]
Huang G. [1 ]
机构
[1] College of Biological Science and Technology, Liupanshui Normal University, Liupanshui
[2] College of Life and Health, Dalian University, Dalian
关键词
condition optimization; Cordyceps taii; polysaccharide; rice; solid fermentation;
D O I
10.13386/j.issn1002-0306.2022090117
中图分类号
学科分类号
摘要
Rice was used as materials for Cordyceps taii fermentation, the content of Cordyceps taii polysaccharide was increased through optimizing fermentation conditions. Single-factor and multi-factor experiments were used to optimize the solid fermentation conditions of Cordyceps taii producing polysaccharide. The results of Plackett-Burman test showed that fermentation temperature, inoculation quantity and the ratio of material to water were main affecting factors for the content of Cordyceps taii polysaccharide. Then the steepest ascent experiment and Box-Behnken experiment were conducted to obtain the optimum conditions of Cordyceps taii producing polysaccharide as follows: Fermentation temperature 25 ℃, inoculation amount 8%, the ratio of material to water (g/mL) 1:1.5, the weight of substrate 10 g and the fermentation time 5 days. The content of Cordyceps taii polysaccharide was 5.31%±0.11%, and the error was 0.93%±1.8% comparing with the theoretical value. It would provide a theoretical basis for the industrial production of Cordyceps taii polysaccharide and a theoretical reference for other Cordyceps spp. producing polysaccharide by solid fermentation. © 2023 Chinese Journal of Polar Research. All rights reserved.
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页码:130 / 136
页数:6
相关论文
共 33 条
  • [1] QUAN Y, LIU Y X, LIU Z Y, Et al., Identification of the taxonomic status of Metarhizium guizhouense and Metarhizium taii[J], Guizhou Agricultural Sciences, 40, 5, (2012)
  • [2] LIU B C, FAN W D, LOU H Y, Et al., Study of the anti-tumor chemical constituents of Cordyceps sinensis mycelium[J], Jiangsu Agricultural Sciences, 45, 5, (2017)
  • [3] GUO X Y, GUO L L, CHEN F., Comparison of chemical constituents between Cordyceps taii and Ophiocordyceps sinensis[J], Journal of Chinese Medicinal Materials, 8, pp. 403-404, (1995)
  • [4] ZHONG H, GAN L X, ZHANG W M, Et al., Analysis of active components of Cordyceps taii and their effects on immune function in mice[J], Ac-ta Edulis Fungi, 3, pp. 55-58, (2008)
  • [5] MOHAMMED ASA, NAVEED M, JOST N., Polysaccharides
  • [6] classification, chemical properties, and future perspective applications in fields of pharmacology and biological medicine (A review of current applications and upcoming potentialities)[J], Journal of Polymers and The Environ, 29, 8, pp. 2359-2371, (2021)
  • [7] QI W, ZHOU X, WANG J, Et al., Cordyceps sinensis polysaccharide inhibits colon cancer cells growth by inducing apoptosis and autophagy flux blockage via mTOR signaling[J], Carbohydrate Polymers, 237, (2020)
  • [8] TANG J B, LU D, FAN M, Et al., Optimization of the water-soluble polysaccharide extraction from Rosa roxbunghii tratt and its antitumor activity[J], Food Science and Technology, 46, 7, pp. 185-193, (2021)
  • [9] MANOSROI A, PANYOSAK A, ROJANASAKUL Y, Et al., Characteristics and anti-proliferative activity of azelaic acid and its derivatives entrapped in bilayer vesicles in cancer cell lines[J], Journal of Drug Targeting, 15, 5, (2007)
  • [10] LEE H H, LEE S, LEE K, Et al., Anti-cancer effect of Cordyceps militaris in human colorectal carcinoma RKO cells via cell cycle arrest and mitochondrial apoptosis[J], Daru:journal of Faculty of Pharmacy, Tehran University of Medical Sciences, 23, 1, (2015)