Chen Chen, Xin Yafen, Li Xiaomei, Ni Haoran, Zeng Tairu, Du Zhaochang, Guan Hao, Wu Yushan, Yang Wenyu, Cai Yimin, Yan Yanhong
Department of Forage Breeding and Cultivation, College of Grassland Science and Technology, Sichuan Agricultural University, Chengdu, China.
Department of Forage Efficient Conversion and Utilization, Sichuan Zoige Alpine Wetland Ecosystem National Observation and Research Station, Southwest Minzu University, Chengdu, China.
Front Microbiol. 2022 Nov 21;13:1066753. doi: 10.3389/fmicb.2022.1066753. eCollection 2022.
To better evaluate the effects of cellulase (AC) and previously screened heat-resistant 149 (LP149) on lignocellulose degradation, fermentation quality, and microbial community during ensiling in humid and hot areas, this study used a small-scale fermentation system to prepare hybrid elephant grass silage at 30 and 45°C, respectively. Compared to control and commercial inoculant (LP), the addition of AC or strain LP149 decreased the contents of neutral detergent fiber, acid detergent fiber, and cellulose and increased the contents of glucose, fructose, and sucrose during fermentation. Furthermore, AC and LP149 treatments altered the microbial communities' structure during ensiling. AC treatment provided more substrate for microbial fermentation, resulting in an increase in bacterial alpha diversity. LP149 treatment increased the abundance and optimized the bacterial community compositions. In addition, AC and LP149 treatments had higher ( < 0.05) lactic acid and acetic acid contents and lower ( < 0.05) pH, butyric acid, and NH-N levels compared to the control. These results indicated that AC and strain LP149 are promising silage additives that can promote lignocellulose degradation and improve the fermentation quality of hybrid elephant grass in humid and hot areas.
为了更好地评估纤维素酶(AC)和先前筛选出的耐热菌株149(LP149)对湿热地区青贮过程中木质纤维素降解、发酵品质和微生物群落的影响,本研究采用小规模发酵系统,分别在30℃和45℃下制备杂交狼尾草青贮饲料。与对照和商业接种剂(LP)相比,添加AC或菌株LP149可降低发酵过程中中性洗涤纤维、酸性洗涤纤维和纤维素的含量,并增加葡萄糖、果糖和蔗糖的含量。此外,AC和LP149处理改变了青贮过程中微生物群落的结构。AC处理为微生物发酵提供了更多底物,导致细菌α多样性增加。LP149处理增加了细菌丰度并优化了细菌群落组成。此外,与对照相比,AC和LP149处理的乳酸和乙酸含量较高(<0.05),pH值、丁酸和NH-N水平较低(<0.05)。这些结果表明,AC和菌株LP149是有前景的青贮添加剂,可促进木质纤维素降解并改善湿热地区杂交狼尾草的发酵品质。