Study on the effect of additives on microbial diversity, predicted functional profiles, and fermentation quality ofBroussonetia papyriferaandPennisetum sinesemixed ensilage in the karst region

Author:

Xu Duhan1,Li Maoya1,Wang Yuhan2,Long Jianhua3,Fan Xueying1,Lei Yao1,Li Ping1,Cheng Qiming1,Chen Yulian1,Chen Chao1

Affiliation:

1. College of Animal Science, Guizhou University , Guiyang 550025 , China

2. Guizhou Animal Disease Prevention and Control Center , Guiyang 550025 , China

3. Shibing County Agricultural and Rural Bureau office , Shibing 556200 , China

Abstract

AbstractIn 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.

Funder

National Key Research and Development

Publisher

Oxford University Press (OUP)

Subject

Applied Microbiology and Biotechnology

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