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单一使用B90或与功能性微生物联合使用时,全株大豆青贮饲料的发酵品质、氨基酸谱及微生物群落

Fermentation quality, amino acids profile, and microbial communities of whole-plant soybean silage in response to B90 alone or in combination with functional microbes.

作者信息

Jin Sijie, Tahir Muhammad, Huang Fuqing, Wang Tianwei, Li Huangkeyi, Shi Weixiong, Liu Yayong, Liu Weichun, Zhong Jin

机构信息

School of Life Sciences, Yunnan University, Kunming, China.

State Key Laboratory of Microbial Resources, Institute of Microbiology, Chinese Academy of Sciences, Beijing, China.

出版信息

Front Microbiol. 2024 Nov 27;15:1458287. doi: 10.3389/fmicb.2024.1458287. eCollection 2024.

Abstract

Promoting the availability of silage with a high protein content on farms can lead to profitable and sustainable ruminant production systems. Whole plant soybean ( L. Merrill, WPS) is a promising high-protein forage material for silage production. In this study, we investigated the fermentation quality, amino acids profile and microbial communities of WPS silage in response to inoculation of lactic acid bacteria (LAB) alone or in combination with non-LAB agents. Before preparing the treatments, the chopped WPS was homogenized thoroughly with 0.3% molasses (0.3 g molasses per 100 g fresh matter). The treatments included CK (sterilized water), LP ( B90), LPBS (LP combined with C5B1), and LPSC (LP combined with LO-1), followed by 60 days of fermentation. The inoculants significantly decreased the bacterial diversity and increased the fungal diversity of WPS silage after ensiling. As a result, the contents of lactic acid and acetic acid increased, while the pH value and propionic acid content decreased in the inoculated silages. The amino acids profile was not influenced by inoculants except phenylalanine amino acid, but LP and LPSC silages had substantial greater ( < 0.05) relative feed values of 177.89 and 172.77, respectively, compared with other silages. Taken together, the inoculation of LP alone or in combination with BS was more effective in preserving the nutrients of WPS silage and improve fermentation quality.

摘要

提高农场中高蛋白青贮饲料的可得性可带来盈利且可持续的反刍动物生产系统。全株大豆(L. Merrill,WPS)是一种很有前景的用于青贮饲料生产的高蛋白草料。在本研究中,我们调查了单独接种乳酸菌(LAB)或与非LAB制剂联合接种时WPS青贮饲料的发酵质量、氨基酸谱和微生物群落。在制备处理组之前,将切碎的WPS与0.3%的糖蜜(每100克新鲜物料含0.3克糖蜜)充分匀浆。处理组包括CK(灭菌水)、LP(B90)、LPBS(LP与C5B1联合)和LPSC(LP与LO - 1联合),随后进行60天的发酵。青贮后,接种剂显著降低了WPS青贮饲料的细菌多样性并增加了真菌多样性。结果,接种青贮饲料中乳酸和乙酸含量增加,而pH值和丙酸含量降低。除苯丙氨酸外,氨基酸谱不受接种剂影响,但与其他青贮饲料相比,LP和LPSC青贮饲料的相对饲料价值分别显著更高(<0.05),为177.89和172.77。综上所述,单独接种LP或与BS联合接种在保存WPS青贮饲料营养成分和改善发酵质量方面更有效。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a363/11631902/175a026eaba0/fmicb-15-1458287-g001.jpg

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