Current approaches on the roles of lactic acid bacteria in crop silage

Современные подходы к изучению роли молочнокислых бактерий в силосовании сельскохозяйственных культур
Rina Su, Dongmei Xu, Xusheng Guo, Fuhou Li, Jie Bai
2022-12-05

crop silagefunctional LABlactic acid bacteriaprobiotic metabolitessilage microbial communities
Lactic acid bacteria (LAB) play pivotal roles in the preservation and fermentation of forage crops in spontaneous or inoculated silages. Highlights of silage LAB over the past decades include the discovery of the roles of LAB in silage bacterial communities and metabolism and the exploration of functional properties. The present article reviews published literature on the effects of LAB on the succession, structure, and functions of silage microbial communities involved in fermentation. Furthermore, the utility of functional LAB in silage preparation including feruloyl esterase-producing LAB, antimicrobial LAB, lactic acid bacteria with high antioxidant potential, pesticide-degrading LAB, lactic acid bacteria producing 1,2-propanediol, and low-temperature-tolerant LAB have been described. Compared with conventional LAB, functional LAB produce different effects; specifically, they positively affect animal performance, health, and product quality, among others. In addition, the metabolic profiles of ensiled forages show that plentiful probiotic metabolites with but not limited to antimicrobial, antioxidant, aromatic, and anti-inflammatory properties are observed in silage. Collectively, the current knowledge on the roles of LAB in crop silage indicates there are great opportunities to develop silage not only as a fermented feed but also as a vehicle of delivery of probiotic substances for animal health and welfare in the future.
1
Compared with conventional LAB, functional strains can improve animal performance, health, and product quality through specialized effects.
2
Ensiled forages contain diverse probiotic metabolites with antimicrobial, antioxidant, aromatic, and anti-inflammatory properties, supporting silage as a future probiotic delivery vehicle.
3
Functional LAB strains include feruloyl esterase-producing, antimicrobial, antioxidant, pesticide-degrading, 1,2-propanediol-producing, and low-temperature-tolerant bacteria.
4
LAB influence the succession, community structure, and metabolic functions of microorganisms involved in silage fermentation.
5
Lactic acid bacteria are pivotal in preserving and fermenting forage crops in both spontaneous and inoculated silages.

Lactic acid bacteria in crop silage and the ensiled forage fermentation system

The roles, community effects, functional properties, and probiotic metabolite production of lactic acid bacteria during silage fermentation

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2022-12-05
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Authors
Rina Su
Dongmei Xu
Xusheng Guo
Fuhou Li
Jie Bai
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