Zhang Peng, Xiong Ying, Bi Luanluan, Zhong Haiyan, Ren Jiali, Zhou Bo
Hunan Key Laboratory of Forestry Edible Resources Safety and Processing, Changsha, Hunan, 410004, China.
Key Laboratory of Cultivation and Protection for Non-Wood Forest Trees of the Ministry of Education, Central South University of Forestry and Technology, Changsha, Hunan, 410004, China.
Bioresour Bioprocess. 2024 Sep 28;11(1):90. doi: 10.1186/s40643-024-00808-x.
The Camellia oleifera meal (COM), a primary byproduct of oil-tea processing, often being discarded or used as a low-grade fertilizer due to its low value. The underutilization has become a significant bottleneck hindering the high-quality development of the oil-tea industry. In this study, the production of antibiotic-free feed additives through the solid-state fermentation of COM by Acremonium terricola was investigated. Our findings revealed that a saponin concentration of 5 mg/mL significantly enhanced the production of cordycepic acid (70.4 mg/g), ergosterol (3.32 mg/g), and chitin (110 mg/g) by A. terricola. This concentration also promoted chitin production and the activities of peroxidase (POD) and Na/K-ATPase, thereby maintaining cellular homeostasis and energy balance in A. terricola. Solid-state fermented rice bran (RB), wheat bran (WB), and desaponificated COM (containing 2.6 mg/100 g of tea saponin) were all found to be beneficial for increasing the production of cordycepic acid and ergosterol. The blend of COM, RB, and WB in the ratio of 15:65:20 was particularly advantageous for the production and accumulation of cordycepic acid and ergosterol, yielding 1.54 and 1.43 times, 1.27 and 1.37 times, and 1.98 and 5.52 times more than those produced by WB, RB, and COM alone, respectively.Meantime, the difference in contents of sugar and protein in A. terricola cultures (ATCs) using combination were not significant compared to RB and WB. These results indicated that COM can partially replace foodstuffs or food by-products to prepare antibiotic-free feed additives by A. terricola.
油茶粕(COM)是油茶加工的主要副产品,由于其价值较低,常被丢弃或用作低等级肥料。这种未被充分利用的情况已成为阻碍油茶产业高质量发展的一个重要瓶颈。在本研究中,对土栖枝顶孢通过固态发酵油茶粕生产无抗生素饲料添加剂进行了研究。我们的研究结果表明,5毫克/毫升的皂苷浓度显著提高了土栖枝顶孢的虫草酸(70.4毫克/克)、麦角甾醇(3.32毫克/克)和几丁质(110毫克/克)的产量。该浓度还促进了几丁质的产生以及过氧化物酶(POD)和钠钾ATP酶的活性,从而维持了土栖枝顶孢的细胞内稳态和能量平衡。固态发酵的米糠(RB)、麦麸(WB)和脱皂苷油茶粕(含2.6毫克/100克茶皂苷)均被发现有利于增加虫草酸和麦角甾醇的产量。以15:65:20的比例混合的油茶粕、米糠和麦麸对虫草酸和麦角甾醇的生产和积累特别有利,其产量分别比单独使用麦麸、米糠和油茶粕高出1.54倍和1.43倍、1.27倍和1.37倍、1.98倍和5.52倍。同时,与米糠和麦麸相比,使用组合培养的土栖枝顶孢培养物(ATCs)中糖和蛋白质含量的差异不显著。这些结果表明,油茶粕可以部分替代食品或食品副产品,用于土栖枝顶孢制备无抗生素饲料添加剂。