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碱式水杨酸铋和包被硝酸钙铵对肉牛肠道甲烷生成、养分消化率和肝脏矿物浓度的影响。

Effects of bismuth subsalicylate and encapsulated calcium-ammonium nitrate on enteric methane production, nutrient digestibility, and liver mineral concentration of beef cattle.

机构信息

Department of Animal Sciences, North Florida Research and Education Center, University of Florida, Marianna, FL.

Department of Animal and Food Sciences, Texas Tech University, Lubbock, TX.

出版信息

J Anim Sci. 2020 Aug 1;98(8). doi: 10.1093/jas/skaa234.

Abstract

Two randomized block designs were performed to evaluate the effects of bismuth subsalicylate (BSS) and encapsulated calcium-ammonium nitrate (eCAN) on enteric methane production, nutrient digestibility, liver mineral concentration, and performance of beef cattle consuming bahiagrass hay (Paspalum notatum; ad libitum) and sugar cane molasses [1.07 kg/d; dry matter basis]. Experiment 1, used 25 crossbred steers [335 ± 46 kg of initial body weight (BW)] with a 2 × 2 + 1 factorial arrangement of treatments for two 20 d periods. Factors were nonprotein nitrogen (NPN) source (350 mg/kg BW of nitrate or 182 mg/kg BW of urea), BSS (0 or 58.4 mg/kg BW), and a negative control (NCTRL; bahiagrass hay and molasses only). Steers were re-randomized for a second period (n = 10/treatment total). Intake, apparent total tract digestibility and enteric methane were evaluated. Experiment 2 used 75 crossbred heifers in 25 pens (3 heifers/pen; 279 ± 57 kg of initial BW), consuming the same diet and treatments as experiment 1, to determine liver mineral concentration and growth performance over 56 d. Orthogonal contrasts were used to evaluate the effects of NPN (NCTRL vs. others), source of NPN (NS; urea vs. eCAN), BSS, and NS × BSS. For experiment 1, no interactions were observed for any variables, nor were there any effects of NPN on total tract digestibility of nutrients, except for crude protein. Digestibility of all nutrients was reduced (P ≤ 0.021) for steers consuming eCAN compared with urea. There was no effect (P > 0.155) of BSS on digestibility of nutrients; however, BSS reduced (P = 0.003) apparent S retention. Enteric CH4 emission (g/kg BW0.75) was decreased (P = 0.051) by 11% with the addition of eCAN compared with urea. For experiment 2, no NS × BSS interactions (P ≥ 0.251) were observed to affect liver mineral concentration; however, the addition of BSS decreased liver concentration of Cu (P = 0.002) while increasing Fe concentration (P = 0.016). There was an NS × BSS interaction (P = 0.048) where heifers consuming eCAN and BSS had lesser final BW compared with heifers consuming urea and BSS. While eCAN may be a viable resource for mitigating enteric CH4 production of forage-fed cattle, the negative effects on digestibility should be considered. Furthermore, BSS, at the amount provided, appears to have no negative effects on digestibility of nutrients in forage-fed cattle; however, there may be deleterious impacts on performance depending upon what nitrogen source is supplied.

摘要

进行了两个随机区组设计实验,以评估次水杨酸铋(BSS)和包被的硝酸铵钙(eCAN)对反刍动物甲烷生成、养分消化率、肝脏矿物质浓度以及采食巴西雀稗干草(Paspalum notatum;自由采食)和糖蜜[1.07 千克/天;干物质基础]的肉牛性能的影响。实验 1 中,使用了 25 头杂交阉牛[335 ± 46 千克初始体重(BW)],采用 2×2+1 因子设计,处理期为 20 天。因子是非蛋白氮(NPN)源(350 毫克/千克 BW 的硝酸盐或 182 毫克/千克 BW 的尿素)、BSS(0 或 58.4 毫克/千克 BW)和阴性对照(NCTRL;仅巴西雀稗干草和糖蜜)。牛在第二期(n=10/处理总数)中重新随机分组。评估了采食量、表观全肠道消化率和肠道甲烷。实验 2 使用 75 头杂交小母牛,分为 25 个围栏(每围栏 3 头小母牛;279 ± 57 千克初始 BW),以与实验 1 相同的饮食和处理,在 56 天内测定肝脏矿物质浓度和生长性能。采用正交对比来评估 NPN(NCTRL 与其他)、NPN 源(NS;尿素与 eCAN)、BSS 和 NS×BSS 的影响。对于实验 1,没有观察到任何变量的相互作用,也没有 NPN 对养分全肠道消化率的影响,除了粗蛋白。与使用尿素的牛相比,食用 eCAN 的牛所有养分的消化率均降低(P≤0.021)。BSS 对养分消化率没有影响(P>0.155);然而,BSS 降低了(P=0.003)表观 S 保留量。与使用尿素相比,添加 eCAN 可使肠道 CH4 排放量(g/kg BW0.75)降低 11%(P=0.051)。对于实验 2,没有观察到 NS×BSS 相互作用(P≥0.251)影响肝脏矿物质浓度;然而,BSS 降低了(P=0.002)铜在肝脏中的浓度,同时增加了(P=0.016)铁的浓度。存在 NS×BSS 相互作用(P=0.048),与食用尿素和 BSS 的小母牛相比,食用 eCAN 和 BSS 的小母牛最终 BW 较小。虽然 eCAN 可能是减少饲草牛肠道 CH4 生成的可行资源,但应考虑其对消化率的负面影响。此外,BSS 的用量不会对饲草牛的养分消化率产生负面影响;然而,这可能会根据所提供的氮源对性能产生有害影响。

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