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Growth performance and gut health of Escherichia coli-challenged weaned pigs fed diets supplemented with a Bacillus subtilis direct-fed microbial

机译:大肠杆菌挑战性断奶猪的生长性能和肠道健康喂养补充枯草芽孢杆菌直接喂养微生物的饮食

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摘要

This study was conducted to investigate the effects of a direct-fed microbial (DFM) product (Bacillus subtilis strain DSM 32540) in weaned pigs challenged with K88 strain of Escherichia coli on growth performance and indicators of gut health. A total of 21 weaned pigs [initial body weight (BW) = 8.19 kg] were housed individually in pens and fed three diets (seven replicates per diet) for 21 d in a completely randomized design. The three diets were a corn-soybean meal-based basal diet without feed additives, a basal diet with 0.25% antibiotics (neo-Oxy 10-10; neomycin + oxytetracycline), or a basal diet with 0.05% DFM. All pigs were orally challenged with a subclinical dose (6.7 × 108 CFU/mL) of K88 strain of E. coli on day 3 of the study (3 d after weaning). Feed intake and BW data were collected on days 0, 3, 7, 14, and 21. Fecal scores were recorded daily. On day 21, pigs were sacrificed to determine various indicators of gut health. Supplementation of the basal diet with antibiotics or DFM did not affect the overall (days 0–21) growth performance of pigs. However, antibiotics or DFM supplementation increased (P = 0.010) gain:feed (G:F) of pigs during the post-E. coli challenge period (days 3–21) by 23% and 24%, respectively. The G:F for the DFM-supplemented diet did not differ from that for the antibiotics-supplemented diet. The frequency of diarrhea for pigs fed a diet with antibiotics or DFM tended to be lower (P = 0.071) than that of pigs fed the basal diet. The jejunal villous height (VH) and the VH to crypt depth ratio (VH:CD) were increased (P < 0.001) by 33% and 35%, respectively, due to the inclusion of antibiotics in the basal diet and by 43% and 41%, respectively due to the inclusion of DFM in the basal diet. The VH and VH:CD for the DFM-supplemented diet were greater (P < 0.05) than those for the antibiotics-supplemented diet. Ileal VH was increased (P < 0.05) by 46% due to the inclusion of DFM in the basal diet. The empty weight of small intestine, cecum, or colon relative to live BW was unaffected by dietary antibiotics or DFM supplementation. In conclusion, the addition of DFM to the basal diet improved the feed efficiency of E. coli-challenged weaned pigs to a value similar to that of the antibiotics-supplemented diet and increased jejunal VH and VH:CD ratio to values greater than those for the antibiotics-supplemented diet. Thus, under E. coli challenge, the test DFM product may replace the use of antibiotics as a growth promoter in diets for weaned pigs to improve feed efficiency and gut integrity.
机译:进行该研究以研究直接喂养的微生物(DFM)产品(DFM)产品(BACillus枯草芽孢杆菌菌株DSM 32540)在用K88大肠杆菌挑战的断奶猪中对肠道生长性能和肠道健康指标进行攻击。总共21只断奶猪[初始体重(BW)= 8.19 kg]在钢笔中单独容纳,并在完全随机设计中为21d喂食三种饮食(每次饮食7重复)。三种饮食是一种玉米大豆膳食的基础饮食,无饲料添加剂,基础饮食,抗生素0.25%(新氧化物10-10;新霉素+氧化素),或含有0.05%DFM的基础饮食。在研究第3天的第3天(在断奶后3d)时,所有猪都用亚临床剂量(6.7×108 cfu / ml)的大肠杆菌菌株的亚临床剂量(6.7×108 cfu / ml)。在第0,3,7,14和21天收集进料进口和BW数据。每天记录粪便分数。在第21天,处死猪以确定肠道健康的各种指标。用抗生素或DFM补充基础饮食并未影响猪的总体(日0-21)生长性能。然而,抗生素或DFM补充增加(p = 0.010)增益:在后E期间猪的饲料(g:f)。大肠杆菌挑战时期(第3-21天)分别分别为23%和24%。对于DFM补充饮食的G:F与抗生素补充饮食的饮食不同。猪的腹泻频率喂养抗生素或DFM的饮食往往低(P = 0.071),而不是喂养基础饮食的猪。由于在基础饮食中包含抗生素和43%,因此分别增加了Jejunal绒毛高度(VH)和vH到隐窝深度比(VH:CD)分别增加(p <0.001),分别增加了33%和35%,并且由于在基础饮食中包含DFM,分别为41%。 VH和VH:DFM补充饮食的CD更大(P <0.05),而不是抗生素补充饮食的饮食。由于在基础饮食中包含DFM,eLEL VH增加了46%的46%。相对于活BW的小肠,盲肠或结肠的空重量不受膳食抗生素或DFM补充的影响。总之,向基础饮食添加DFM将大肠杆菌攻击断奶猪的饲料效率提高到类似抗生素补充饮食的价值,并增加了Jejunal VH和VH:CD比率大于那些抗生素补充饮食。因此,在大肠杆菌挑战下,测试DFM产品可以替代抗生素作为随后猪的饮食中的生长启动子的使用,以提高饲料效率和肠道完整性。

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