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Effect of compound feed pelleting and die diameter on rumen fermentation in beef cattle fed high concentrate diets

机译:复合饲料制粒和模头直径对高浓缩日粮肉牛瘤胃发酵的影响

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The effect of feeding a compound feed as meal (M) or pelleted at 3.5 (P3.5) or 10 (P10) mm i.d. on feed intake pattern and rumen fermentation in growing calves was investigated. Compound feeds were fed ad libitum with barley straw to six 3-mo-old rumen cannulated calves in a double 3 x 3 Latin square arrangement. In a first 9-wk phase (I) free access to concentrate was allowed, whereas in a second 6-wk phase (II) access was restricted to 09:00 h to I I :30 h and 17:00 h to 19:30h. Rumen samples were collected on two nonconsecutive days at 08:30h, 13:00 h and 17:00 h. Pelleting increased the degree of starch gelatinization from 0.113 in M to 0.205 and 0.154, in P3.5 and P10. In both phases, P10 slowed consumption of concentrate during morning feeding (P<0.01), although treatments did not affect total daily concentrate intake (97 gDM/kgLW(0.75) and 82 g DM/kg LW0.75) in phases I and II. In phase I, pH before morning distribution was lower than in phase 11 (6.5 versus 7.2). Four hours after feeding, there was a pH drop (P<0.001), which was higher in phase 11 (1.5 units) than in phase 1(0.7 units); in line with a higher concentrate intake (4.10 kg versus 1.89 kg). Calves fed P3.5 tended (P=0.052) to a lower pH than those on M in phase I, and those fed P10 had the least decrease in pH after feeding. No pH differences occurred between treatments in phase II, although pH recovery from 4 to 8 h after feeding tended to be more (P=0.073) for P10. Rumen lactic acid concentration increased after feeding (P<0.05 and P<0.001) in phases I and II, reaching 45.7 mg/l and 39.6 mg/l, respectively. In phase II, P3.5 animals reached a higher (P<0.01) concentration than M and P10 animals. Rumen ammonia concentration decreased (P<0.001) after feeding, reaching the lowest values 4h later (23.3 mg/l and 13.6 mg/l in phases land II). P3.5 showed lower ammonia concentration than M in phase I (P<0.05). Total volatile fatty acid (VFA) concentration increased (P<0.001) after feeding in both phases, decreasing the acetic to propionic ratio (P<0.001). In phase I, calves fed M tended (P=0.074) to have lower total VFA rumen concentration and higher acetic to propionic ratio (P<0.01) than those fed pellets. Results suggest that with pelleting at 3.5 mm, increased ruminal fermentation rate dominates regulation of substrate delivery and results in lower pH values that could eventually translate into higher risk of acidosis compared with unprocessed meal. Increasing the pellet diameter to 10 mm may decrease the rate of fermentation through a homogeneous daily intake pattern, without affecting total intake, even under conditions of restricted feeding
机译:以大米(M)或以3.5(P3.5)或10(P10)mm i.d喂食复合饲料的效果。研究了犊牛的采食方式和瘤胃发酵。将复合饲料与大麦秸秆随意喂入六只3个月大的瘤胃空心小牛,以3 x 3的拉丁方形排列。在第一个9周阶段(I)中,允许自由进入浓缩液,而在第二个6周阶段(II)中,进入时间被限制为09:00 h至II:30 h和17:00 h至19:30h 。在两个不连续的日期(08:30h,13:00h和17:00h)收集瘤胃样品。制粒使淀粉糊化度从M中的0.113增加到P3.5和P10中的0.205和0.154。在两个阶段中,P10均减缓了早晨喂养期间精矿的消耗(P <0.01),尽管在第一阶段和第二阶段中,治疗并不影响每日总精矿摄入量(97 gDM / kgLW(0.75)和82 g DM / kg LW0.75)。 。在阶段I中,早上分配前的pH值低于阶段11中的pH(6.5对7.2)。进食后四小时,pH下降(P <0.001),在第11阶段(1.5单位)比第1阶段(0.7单位)要高。与更高的精矿摄入量一致(4.10千克对1.89千克)。饲喂P3.5的小牛的pH值低于(P = 0.052)I期的M,饲喂P10的小牛的pH值下降最少。在阶段II的处理之间,没有发生pH差异,尽管进食后4至8 h的pH恢复趋于更大(P = 0.073)。一期和二期进食后瘤胃乳酸浓度增加(P <0.05和P <0.001),分别达到45.7 mg / l和39.6 mg / l。在第二阶段,P3.5动物的浓度高于M和P10动物(P <0.01)。饲喂后瘤胃氨气浓度降低(P <0.001),4h后达到最低值(陆相II期为23.3 mg / l和13.6 mg / l)。在阶段I中,P3.5显示出比M更低的氨浓度(P <0.05)。两相进料后总挥发性脂肪酸(VFA)浓度增加(P <0.001),从而降低了乙酸与丙酸的比例(P <0.001)。在阶段I中,饲喂M的犊牛趋向于(P = 0.074)与饲喂颗粒的犊牛相比,其总VFA瘤胃浓度较低,乙酸/丙酸比更高(P <0.01)。结果表明,以3.5 mm的颗粒进行沉淀时,瘤胃发酵速率的提高主导了底物传递的调节,并导致pH值降低,与未加工的餐食相比,pH值可能最终转化为酸中毒的风险更高。将颗粒直径增加到10 mm可能会通过均匀的每日摄入量模式降低发酵速率,即使在进食受限的情况下也不会影响总摄入量

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