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首页> 外文期刊>Journal of Animal Science >Effects of copper and zinc sources and inclusion levels of copper on weanling pig performance and intestinal microbiota
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Effects of copper and zinc sources and inclusion levels of copper on weanling pig performance and intestinal microbiota

机译:铜和锌源的含量及铜含量对牛仔猪的性能和肠道微生物

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A 42-d experiment was conducted to evaluate the effect of Cu and Zn source and Cu level on pig performance, mineral status, bacterial modulation, and the presence of antimicrobial-resistant genes in isolates of Enterococcus spp. At weaning, 528 pigs (5.9 +/- 0.50 kg) were allotted to 48 pens of a randomized complete block design in a 2 x 2 factorial arrangement with two Cu and Zn sources (SF: sulfate and HCl: hydroxychloride) and two Cu levels (15 and 160 mg/kg). As a challenge, the pigs were reared in dirty pens used by a previous commercial batch. Two-phase diets were offered: the pre-starter (PS) phase from day 1 to 14 and the starter phase (ST) from day 14 to 42. At days 14 and 42, pigs were individually weighed and blood samples from one pig per pen were taken. At the end of the experiment, one pig per pen was euthanized to collect the samples. Feeding high levels of Cu increased body weight (BW) from 16.6 to 17.7 kg (P < 0.001). Furthermore, average daily gain, gain to feed (G:F) ratio, average daily feed intake (ADFI), and mineral status were enhanced with Cu at 160 mg/kg (P < 0.05) compared with Cu at 15 mg/kg. There was no effect of the interaction between source x level on any of the growth performance responses except for ADFI (P = 0.004) and G:F (P = 0.029) at the end of the ST period and for G:F (P = 0.006) for entire nursery period (day 0 to 42). At the end of the ST period, pigs fed Cu at 160 mg/kg as HCl had not only higher ADFI but also lower G:F than those fed Cu as SF at 160 mg/kg. Meanwhile, for the entire nursery period, G:F did not differ between pigs fed Cu at 160 mg/kg as HCl or SF. In colonic digesta, the relative abundance of Streptococcus, Enterobacter, Escherichia, among others, decreased (P-adjust < 0.05), while Lachnospira and Roseburia tended (P-adjust < 0.10) to increase in pigs fed Cu at 160 mg/kg as HCl compared with those fed Cu SF at 160 mg/kg. An increase (P-adjust < 0.05) in Methanosphaera and Roseburia was observed in pigs fed Cu at 160 mg/kg. From colon digesta, Enterococcus spp. was isolated in 40 samples, being E. faecalis the most dominating (65%) regardless of the experimental diet. Genes of ermB (7.5%) and tetM (5%) were identified. No genes for Cu (tcrB) or vancomycin (vanA, vanB, vanC1, and vanC2) were detected. In conclusion, European Union permissible levels of Cu (160 mg/kg), of both sources, were able to increase performance, mineral status, and bacterial modulation compared with nutritional level. Different effects on growth performance, mineral tissue content, and microbial modulation were observed between Cu and Zn sources.
机译:进行了42d实验以评估Cu和Zn源和Cu水平对猪效率,矿物质,细菌调节以及肠球菌SPP分离株中抗菌基因的影响。在断奶时,用两个Cu和Zn源(SF:硫酸盐和HCl:羟氯化物)和两个Cu水平,将528只猪(5.9 +/- 0.50千克)分配到48串的随机完整块设计中,以2×2分数布置(SF:硫酸盐:羟氯化物)和两个铜水平(15和160 mg / kg)。作为一项挑战,猪被以前商业批次使用的脏钢笔饲养。提供了两相饮食:从第1-14天和第14天和起子期(ST)的预启动剂(PS)相和40天,在第14天和42天,单独称量猪和每粒子的血液样品笔被采取。在实验结束时,每笔笔的一个猪被安乐死以收集样品。喂养高水平的Cu增加体重(BW)从16.6升至17.7千克(P <0.001)。此外,平均每日增益,增益(G:F)比率,平均每日进料摄入(ADFI)和矿物质,与15mg / kg的Cu以160mg / kg(P <0.05)增强Cu。除了ST期结束时ADFI(P = 0.004)和G:F(P = 0.029)和G:F之外,源X水平与G:F(P = 0.029)之间的任何生长性能响应没有影响0.006)对于整个幼儿园(第0天至42)。在ST周期结束时,在160mg / kg的猪饲喂铜,因为HCl不仅高于G:F,而不是在160mg / kg下的Sf。同时,对于整个幼儿园,G:F在饲喂于160mg / kg作为HCl或SF的猪的猪之间没有差异。在结肠疾病中,链球菌,肠杆菌,大肠杆菌等的相对丰度降低(P-Squary <0.05),而Lachnospira和Roseburia倾向于(p-Square <0.10),以160mg / kg喂养Cu的猪饲料增加HCl与160mg / kg的喂养Cu Sf相比。在120mg / kg的猪进料Cu的猪中观察到甲基鏻和Roseburia的增加(p-square <0.05)。来自Colon Digesta,肠球菌SPP。在40个样品中被隔离,是粪便最主要的主导(65%),无论实验饮食如何。确定ERMB(7.5%)和TETM(5%)的基因。检测到Cu(TCRB)或Vancomycin(Vana,VANB,VANG1和VANC2)没有基因。总之,欧盟允许水平的两种来源的Cu(160 mg / kg)能够增加与营养水平相比的性能,矿物质和细菌调节。在Cu和Zn源之间观察到不同影响生长性能,矿物组织含量和微生物调节。

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