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饲喂米曲霉对西门塔尔杂交阉牛肠道和粪便甲烷排放及生产性能的影响。

Effects of feeding Aspergillus oryzae on intestinal and fecal methane emissions, and performance of simmental crossbred steers.

作者信息

Zhang Hongrui, Sun Kaijia, Fu Tong, Zhang Liyang, Lian Hongxia, Li Gaiying, Gao Tengyun

机构信息

Key Laboratory of Ruminant Molecular and Cellular Breeding, College of Animal Science and Technology, Ningxia University, Yinchuan, 750000, China.

Inner Mongolia Muquan Yuanxing Feed Co., Ltd., Hohhot, 010000, P. R. China.

出版信息

Trop Anim Health Prod. 2025 Aug 8;57(7):356. doi: 10.1007/s11250-025-04582-6.

Abstract

This study aimed to assess the impact of Aspergillus oryzae supplementation on CH emissions and the production performance of beef cattle. Sixteen healthy Simmental crossbred steers (552.4 ± 35.5 kg) were randomly assigned to either a control group (CG, basal diet) or an A. oryzae group (AO, basal diet + 6 g A. oryzae per head daily). CH emissions from enteric fermentation and manure, growth performance, nutrient and energy digestibility, rumen fermentation variables, and microbial populations were evaluated. A. oryzae supplementation did not affect average daily gain (ADG) or dry matter intake (DMI), though ADG increased by 11.1%. AO steers exhibited a 36.4% increase (P < 0.05) in apparent NDF digestibility, a reduction (P < 0.05) in NH-N, and elevated rumen fungi and Butyrivibrio fibrisolvens populations while reducing protozoa and methanogens. CH emissions from enteric fermentation and maure decreased by (P < 0.05) 18.8% and 56.6%, respectively. It was concluded that supplementation with A. oryzae effectively lowered CH emissions in both enteric fermentation and manure without compromising beef cattle growth rate.

摘要

本研究旨在评估添加米曲霉对肉牛甲烷排放和生产性能的影响。16头健康的西门塔尔杂交阉牛(552.4±35.5千克)被随机分为对照组(CG,基础日粮)或米曲霉组(AO,基础日粮+每头每日6克米曲霉)。评估了来自肠道发酵和粪便的甲烷排放、生长性能、养分和能量消化率、瘤胃发酵变量以及微生物种群。添加米曲霉虽使平均日增重(ADG)提高了11.1%,但对平均日增重或干物质采食量(DMI)没有影响。AO组阉牛的中性洗涤纤维(NDF)表观消化率提高了36.4%(P<0.05),氨态氮(NH-N)减少(P<0.05),瘤胃真菌和溶纤维丁酸弧菌数量增加,同时原生动物和产甲烷菌数量减少。来自肠道发酵和粪便的甲烷排放分别减少了18.8%和56.6%(P<0.05)。得出的结论是,添加米曲霉可有效降低肠道发酵和粪便中的甲烷排放,且不影响肉牛生长速度。

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