Xu Duhan, Li Maoya, Wang Yuhan, Long Jianhua, Fan Xueying, Lei Yao, Li Ping, Cheng Qiming, Chen Yulian, Chen Chao
College of Animal Science, Guizhou University, Guiyang 550025, China.
Guizhou Animal Disease Prevention and Control Center, Guiyang 550025, China.
Lett Appl Microbiol. 2023 Apr 3;76(4). doi: 10.1093/lambio/ovad039.
In this research, we evaluated the effect of exogenous lactic acid bacteria and Amomum villosum essential oil (AVEO) on the chemical composition, microbial community composition, microbial functional diversity, and fermentation quality of Broussonetia papyrifera (BP) and Pennisetum sinese (PS) mixed silages. The BP:PS mixing ratios were 100:0, 70:30, 50:50, 30:70, and 0:100. After 3 and 30 days of ensiling at 22°C-25°C, microbial diversity and function, and fermentation quality, were assessed. Increasing PS content resulted in decreased ammoniacal nitrogen and pH, increased water-soluble carbohydrate content, increased relative abundance of Lactococcus and Acinetobacter, and reduced relative abundance of Caproiciproducens and Pseudomonas. A 50:50 BP:PS ratio effectively improved the fermentation quality compared to anaerobic fermentation with BP or PS alone, while AVEO treatment further improved fermentation quality by increasing Lactococcus relative abundance. Moreover, as fermentation proceeded, ensiling enhanced the 'Human diseases', 'Environmental information processing', and 'Cellular processes' functions at the first level, as well as the 'Two-component system' and 'ABC transporters' functions at the third level. Different additives affected the fermentation of BP and PS mixed silage by regulating microbial community succession and metabolic pathways during ensiling.
在本研究中,我们评估了外源乳酸菌和砂仁精油(AVEO)对构树(BP)和狼尾草(PS)混合青贮饲料的化学成分、微生物群落组成、微生物功能多样性及发酵品质的影响。BP与PS的混合比例分别为100:0、70:30、50:50、30:70和0:100。在22°C - 25°C条件下青贮3天和30天后,对微生物多样性与功能以及发酵品质进行评估。增加PS含量导致氨态氮和pH值降低、水溶性碳水化合物含量增加、乳酸乳球菌和不动杆菌的相对丰度增加,以及产己酸菌和假单胞菌的相对丰度降低。与单独使用BP或PS进行厌氧发酵相比,BP:PS比例为50:50能有效提高发酵品质,而AVEO处理通过增加乳酸乳球菌相对丰度进一步改善发酵品质。此外,随着发酵进行,青贮在一级水平上增强了“人类疾病”“环境信息处理”和“细胞过程”功能,在三级水平上增强了“双组分系统”和“ABC转运蛋白”功能。不同添加剂通过调节青贮过程中的微生物群落演替和代谢途径影响BP和PS混合青贮饲料的发酵。