Zhao Yuanyuan, Liu Dianpeng, Chen Yulian, Lei Yao, Li Maoya, Wang Jiachuhan, He Xiangjiang, Yang Yu, Zhang Xinyi, Liu Shengnan, Zhang Xiaoqing, Cheng Qiming, Chen Chao
College of Animal Science, Guizhou University, Guiyang, 550025, China.
Tongliao Academy of Agriculture and Animal Husbandry Sciences, Tongliao, 028000, China.
BMC Plant Biol. 2025 May 30;25(1):728. doi: 10.1186/s12870-025-06722-4.
At present, there are many researches on the nutritional quality and fermentation quality of forage silage by adding distillers' grain and fruit residue, but few researches on the succession and function prediction of microbiotic community. In this study, the potential of Moutai distillers' grain (MDG), Rosa roxburghii pomace (RP) and Lactobacillus acidophilus (LAB) to improve silage quality during anaerobic storage of alfalfa and sorghum was investigated. Harvested alfalfa and sorghum were ensiled without (CK) or with MDG, RP, LAB, LAB + MDG or LAB + RP for 45 days at 21-25 °C. Compared with the uninoculated control, alfalfa silage inoculated with LAB + MDG presented better nutrient retention, where the lactic acid (LA) content was increased by 84.62% and the ammonia nitrogen (AN) content was reduced by 38.52%. Similarly, in sorghum silage, both inoculation with LAB + MDG and inoculation with LAB + RP effectively increased nutrient retention, increased the LA content and reduced the AN content. The proportion of Lactobacillus increased in sorghum and alfalfa silage after 45 days of fermentation. Inoculation of alfalfa and sorghum with RP or LAB + MDG significantly increased the relative abundance of lactic acid bacteria in silage, especially Lactobacillus plantarum, which was the main dominant strain. The addition of MDG to the feeds not only effectively retained the crude protein (CP) content of the feeds for better retention of their nutritional value but also significantly reduced the contents of neutral detergent fiber (NDF) and acid detergent fiber (ADF), which improved the digestibility and utilization of the feeds. In addition, the addition of MDG further promoted the proliferation of Lactobacillus and increased their abundance in the silage, thus contributing to the improvement of fermentation quality and preservation of silage. In summary, MDG, LAB + MDG, and RP + LAB resulted in higher-quality silage, but the addition of MDG was more cost effective and therefore is recommended for application in production.
目前,关于添加酒糟和果渣对青贮饲料营养品质和发酵品质的研究较多,但对微生物群落演替及功能预测的研究较少。本研究考察了茅台酒糟(MDG)、刺梨渣(RP)和嗜酸乳杆菌(LAB)在苜蓿和高粱厌氧贮藏过程中改善青贮品质的潜力。将收获的苜蓿和高粱在21 - 25℃下不添加(CK)或添加MDG、RP、LAB、LAB + MDG或LAB + RP青贮45天。与未接种对照相比,接种LAB + MDG的苜蓿青贮具有更好的养分保留效果,其中乳酸(LA)含量增加了84.62%,氨态氮(AN)含量降低了38.52%。同样,在高粱青贮中,接种LAB + MDG和接种LAB + RP均有效提高了养分保留率,增加了LA含量,降低了AN含量。发酵45天后,高粱和苜蓿青贮中乳酸杆菌比例增加。用RP或LAB + MDG接种苜蓿和高粱显著增加了青贮中乳酸菌的相对丰度,尤其是植物乳杆菌,它是主要的优势菌株。在饲料中添加MDG不仅有效保留了饲料中的粗蛋白(CP)含量以更好地保留其营养价值,还显著降低了中性洗涤纤维(NDF)和酸性洗涤纤维(ADF)的含量,提高了饲料的消化率和利用率。此外,添加MDG进一步促进了乳酸杆菌的增殖并增加了其在青贮中的丰度,从而有助于改善青贮的发酵品质和保存效果。综上所述,MDG、LAB + MDG和RP + LAB均可制成更高品质的青贮饲料,但添加MDG成本效益更高,因此推荐在生产中应用。