Osorio-Terán Amada Isabel, Mendoza German D, Miranda-Romero Luis A, Martínez-Gomez Daniel, Hernández-García Pedro A, Rangel-Ramírez Velia Verónica, Lee-Rangel Héctor A
Departamento de Producción Agrícola y Animal, Universidad Autónoma Metropolitana-Xochimilco, Mexico City CP 04960, Mexico.
Universidad del Papaloapan, Campus Loma Bonita, Oaxaca CP 68400, Mexico.
Vet Sci. 2025 Mar 24;12(4):298. doi: 10.3390/vetsci12040298.
The objective of this study was to determine the effects of dietary calcium propionate (CaPr) and monensin (MON) on lamb growth performance, ruminal volatile fatty acids (VFAs), methane (CH) production, and ruminal bacteria and archaea populations. Forty crossbred ram lambs (initial weight 23.4 ± 2.8 kg) were randomly assigned to one of four diets (n = 10 per treatment): (a) control diet (CONT); (b) MON diet, which contained 30 mg/kg dry matter (DM) of monensin + CONT; (c) CaPr diet, which contained 10 g/kg DM of CaPr + CONT; and (d) MCA diet, which contained both additives (30 mg/kg DM of monensin plus 10 g/kg DM of CaPr) + CONT. Dietary MON or CaPr in lamb diets did not affect ( ≥ 0.05) dry matter intake (DMI), average daily gain (ADG), or DMI/ADG. The main effect ( ≥ 0.05) of CaPr supplementation was observed in acetate concentration and CH production. The addition of calcium propionate increased ( < 0.05) , , and , whereas CaPr reduced ( < 0.05) methanogenic archaea. The addition of MON and CaPr did not affect lamb performance; however, CaPr improved fermentation kinetics towards more efficient routes, reflected by a reduction in the proportion of methane and methanogenic archaea.
本研究的目的是确定日粮中添加丙酸钙(CaPr)和莫能菌素(MON)对羔羊生长性能、瘤胃挥发性脂肪酸(VFA)、甲烷(CH)产量以及瘤胃细菌和古菌数量的影响。40只杂交公羔羊(初始体重23.4±2.8千克)被随机分配到四种日粮中的一种(每个处理n = 10):(a)对照日粮(CONT);(b)MON日粮,包含30毫克/千克干物质(DM)的莫能菌素+ CONT;(c)CaPr日粮,包含10克/千克DM的CaPr + CONT;(d)MCA日粮,包含两种添加剂(30毫克/千克DM的莫能菌素加10克/千克DM的CaPr)+ CONT。羔羊日粮中添加MON或CaPr对干物质采食量(DMI)、平均日增重(ADG)或DMI/ADG没有影响(P≥0.05)。在乙酸盐浓度和CH产量方面观察到添加CaPr的主要效应(P≥0.05)。添加丙酸钙增加了(P<0.05)……,而CaPr减少了(P<0.05)产甲烷古菌。添加MON和CaPr对羔羊性能没有影响;然而,CaPr改善了发酵动力学,使其朝着更高效的途径发展,这表现为甲烷和产甲烷古菌比例的降低。 (注:原文中部分内容缺失,已按原样翻译)