全混合日粮对生长期和育肥期安格斯肉牛的生长性能、瘤胃发酵、营养消化和瘤胃微生物组的影响

Wei Li, Boping Ye, B. Wu, Xin Yi, Xiang Li, Runa A, Xiaojing Cui, Zhiyu Zhou, Yang Cheng, Xiaowen Zhu, Xiren Tang, Xinyue Fu, Ning Li, Hao Wu, Zhenming Zhou
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引用次数: 0

摘要

本研究调查了在安格斯肉牛的生长期(7 到 12 个月)和育肥期(13 到 30 个月),日粮中不同的精料水平对其生产性能、营养消化和新陈代谢的影响。对 15 头安格斯肉牛进行连续饲喂,并根据育肥期和日粮配方将其分为低精料 (L) 组和高精料 (H) 组。在每个为期 9 周的试验阶段,系统地测量了一系列参数,包括干物质摄入量 (DMI)、平均日增重 (ADG)、增重与饲料比 (G/F)、血液参数、瘤胃液成分和微生物多样性。在育肥阶段,精料水平的提高导致牛的干物质摄入量显著增加。虽然与生长阶段相比,ADG 略有增加,但这种增加在统计学上并不显著。牛对氮(N)的利用率下降,同时养分的表观消化率显著降低。瘤胃发酵产生了更多的能量物质;但是,纤维分解微生物(如 NK4A214_组、反刍球菌、乳杆菌和醋酸菌)的数量明显减少,而淀粉分解微生物(包括类杆菌和普雷沃特氏菌)的数量则显著增加。此外,与免疫系统相关的功能途径的数量也显著减少。这表明,高浓缩育肥并不一定会提高生长性能,而且可能会对代谢健康和营养消化产生负面影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of Total Mixed Ration on Growth Performance, Rumen Fermentation, Nutrient Digestion, and Rumen Microbiome in Angus Beef Cattle during the Growing and Fattening Phases
This study investigates the impact of varying concentrate levels in the diets of Angus beef cattle on their performance, nutrient digestion, and metabolism during the growth (7 to 12 months) and fattening (13 to 30 months) phases. Fifteen Angus steers were continuously fed and divided into low-concentrate (L) and high-concentrate (H) groups based on the fattening period and dietary formulations. Throughout each 9-week trial phase, a comprehensive range of parameters was systematically measured, including dry matter intake (DMI), average daily gain (ADG), gain-to-feed ratio (G/F), blood parameters, rumen fluid composition, and microbial diversity. In the fattening phases, an increase in concentrate levels resulted in a significant rise in the cattle’s DMI. Although there was a minor increase in ADG compared to the growing phases, this increase was not statistically significant. The efficiency of nitrogen (N) utilization in the cattle decreased, accompanied by a significant reduction in the apparent digestibility of nutrients. Ruminal fermentation produced more energy substances; however, there was a notable decrease in the abundance of fiber-decomposing microbes (such as the NK4A214_group, Ruminococcus, Papillibacter, and Acetitomaculum) and a significant increase in the abundance of starch-degrading microbes (including Bacteroidota and Prevotellaceae). Additionally, there was a significant reduction in the abundance of immune system-related functional pathways. This suggests that high-concentrate fattening does not necessarily lead to improved growth performance and may negatively affect metabolic health and nutrient digestion.
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