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评估添加不同添加剂青贮的天然草的发酵特性、细菌群落及预测功能概况。

Evaluating the fermentation characteristics, bacterial community, and predicted functional profiles of native grass ensiled with different additives.

作者信息

Du Shuai, You Sihan, Jiang Xiaowei, Li Yuyu, Wang Ruifeng, Ge Gentu, Jia Yushan

机构信息

National Engineering Laboratory of Biological Feed Safety and Pollution Prevention and Control, Key Laboratory of Molecular Nutrition, Ministry of Education, Key Laboratory of Animal Nutrition and Feed, Ministry of Agriculture and Rural Affairs, Key Laboratory of Animal Nutrition and Feed Science of Zhejiang Province, Institute of Feed Science, Zhejiang University, Hangzhou, China.

Key Laboratory of Forage Cultivation, Processing and High Efficient Utilization, Ministry of Agriculture, Resources and Environment, Inner Mongolia Agricultural University, Hohhot, China.

出版信息

Front Microbiol. 2022 Oct 18;13:1025536. doi: 10.3389/fmicb.2022.1025536. eCollection 2022.

Abstract

Bioaugmentation of native grass ensiling with or or on the ensiling performance and bacterial community was investigated after 30 days of the fermentation process. The native grass was inoculated with distilled water, , and , and , and as the CON treatment, T1 treatment, T2 treatment, and T3 treatment, respectively. The addition of lactic acid bacteria was added at a total of 1 × 10 colony-forming unit/g of fresh weight. As expected, the markedly ( < 0.05) lower water-soluble carbohydrate content was tested in the T2 and T3 treatments compared to the CON and T1 treatments. Compared to the CON and T1 treatment, significantly ( < 0.05) higher crude protein content, and lower acid detergent fiber and neutral detergent fiber contents were found in the T2 and T3 treatments. Compared to the CON treatment, the pH significantly ( < 0.05) decreased in the lactic acid bacteria (LAB) inoculated silage, and the lowest pH was measured in the T3 treatment. Similarly, significantly higher lactic acid and acetic acid contents were also found in the T3 treatment compared to those in other treatments. After 30 days of ensiling, the Shannon and Chao1 indexes in silages decreased compared to that in the fresh materials (FMs). The principal coordinate analysis indicated that both FM and silage were distinctly separated in each treatment with no interactions on the confidence ellipse ( = 0.8933, = 0.001). At the phylum level, the dominant phylum was shifted from Proteobacteria to Firmicutes after the fermentation process. Interestingly, dominated the fermentation in the CON treatment and dominated the fermentation in all inoculated LAB silages at the genus level. Results of functional prediction analyses showed that the metabolism of amino acid, cofactors, and vitamins, and membrane transport was reduced, while the metabolism of nucleotide and majority carbohydrates was increased after ensiling. The complex LAB (, and ) exhibited the potential possibility to decrease pH and enhance the relative abundance of LAB in response to obtaining high-quality silage by the synergistic effects. These results suggested that the complex LAB could improve the ensiling performance of native grass silage, and lay a theoretical basis for inoculant application in native grass.

摘要

在发酵30天后,研究了用 、 或 对天然草青贮进行生物强化对青贮性能和细菌群落的影响。天然草分别接种蒸馏水、 、 以及 和 ,分别作为对照处理(CON处理)、T1处理、T2处理和T3处理。乳酸菌的添加量为每克鲜重1×10菌落形成单位。正如预期的那样,与CON处理和T1处理相比,T2处理和T3处理中的水溶性碳水化合物含量显著( < 0.05)降低。与CON处理和T1处理相比,T2处理和T3处理中的粗蛋白含量显著( < 0.05)更高,酸性洗涤纤维和中性洗涤纤维含量更低。与CON处理相比,接种乳酸菌(LAB)的青贮饲料的pH值显著( < 0.05)降低,T3处理中的pH值最低。同样,与其他处理相比,T3处理中的乳酸和乙酸含量也显著更高。青贮30天后,青贮饲料中的香农指数和Chao1指数与新鲜原料(FMs)相比有所下降。主坐标分析表明,在每个处理中,FM和青贮饲料都明显分开,在置信椭圆上没有相互作用( = 0.8933, = 0.001)。在门水平上,发酵过程后优势门从变形菌门转变为厚壁菌门。有趣的是,在属水平上,对照处理中的发酵以 为主导,而在所有接种LAB的青贮饲料中发酵以 为主导。功能预测分析结果表明,青贮后氨基酸、辅因子和维生素的代谢以及膜转运减少,而核苷酸和大多数碳水化合物的代谢增加。复合LAB( 、 和 )通过协同作用表现出降低pH值和提高LAB相对丰度以获得高质量青贮饲料的潜在可能性。这些结果表明,复合LAB可以提高天然草青贮饲料的青贮性能,为天然草接种剂的应用奠定了理论基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e86b/9623271/f5fd635106bc/fmicb-13-1025536-g0001.jpg

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