首页> 美国卫生研究院文献>Journal of Animal Science >Evaluation of different inclusion levels of dry live yeast impacts on various rumen parameters and in situ digestibilities of dry matter and neutral detergent fiber in growing and finishing beef cattle
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Evaluation of different inclusion levels of dry live yeast impacts on various rumen parameters and in situ digestibilities of dry matter and neutral detergent fiber in growing and finishing beef cattle

机译:对不同瘤胃参数的干燥活酵母影响的不同包容水平及干物质和中性洗涤剂纤维的原位消化率的评价及料理牛肉牛的原位消化力

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摘要

This study evaluated the effects of supplementing dry live yeast (LY; Saccharomyces cerevisiae) on in vitro gas production (IVGP) fermentation dynamics, pH, and CH4 concentration at 48 h, and in situ rumen parameters and digestibility of DM (DMD) and NDF (NDFD) of growing cattle during 3 feeding phases: grower (GRW) for 17 d (38% steamed-flaked corn; SFC), transition (TRANS) for 15 d (55.5% SFC: 1.2 Mcal/kg NEg), and finisher (FIN) for 13 d (73% SFC: 1.23 Mcal/kg NEg). Twenty British-crossbred, ruminally cannulated steers (183 kg ± 44 kg) 6 mo of age were blocked by weight into 5 pens containing Calan gate feeders and received a control (CON) diet (17.2% CP, 35.8% NDF, 86.7% DM) without LY on days −12 to 0. After that, animals were randomly assigned to treatments (TRT), 5 animals per TRT: CON or LY at inclusion rates of 5 g/d (LY1), 10 g/d (LY2), or 15 g/d (LY3) top dressed every morning at 0800 for 45 d. The DMD and NDFD were assessed during 7 separate collection days using in situ nylon bags containing 5 g of GRW, TRANS, or FIN diets, incubated at 1200 for 48 h. Protozoa counts (PC) were determined during 5 collection periods. Data were analyzed as a repeated measure within a randomized complete block design, assuming a random effect of the pen. For GRW, TRT altered the total gas production of the nonfiber carbohydrate (NFC; P = 0.045) and the fractional rate of degradation (kd) of the fiber carbohydrate (FC) pool (P = 0.001) in a cubic pattern (P ≤ 0.05): LY2 had the most gas production and fastest kd. TRT also influenced DMD (P = 0.035) and NDFD (P = 0.012) with LY2 providing the greatest digestibility. For TRANS, TRT tended to affect the NFC kd (P = 0.078) and influenced pH (P = 0.04) and DMD (P < 0.001) in which LY2 yielded the fastest kd, highest pH, and greatest DMD. For FIN, there was an effect of TRT on total gas production (P < 0.001) and kd (P = 0.004) of the NFC pool, FC kd (P = 0.012), in vitro CH4 concentration (P < 0.001), PC (P < 0.001), DMD (P = 0.039), and NDFD (P = 0.008). LY1 had the highest PC and provided the greatest DMD and NDFD. LY2 had the fastest kd of both the NFC and FC pools and had the least CH4 concentration. LY3 had the greatest NFC gas production. No specific dose–response pattern was observed, but 10 g/d provided the most beneficial result for all diets. We concluded that supplementation with LY affected IVGP as well as ruminal parameters and digestibilities.
机译:该研究评估了补充干燥活酵母(LY; Saccharomyces Cerevisiae)对体外气体生产(IVGP)发酵动力学,pH和CH 4浓度在48小时的影响,以及DM(DMD)和NDF的原位瘤胃参数和消化率(NDFD)在3次喂养阶段生长牛:种植者(GRW)17d(38%蒸碎片玉米; SFC),过渡(反式)15 d(55.5%SFC:1.2 MCAL / KG NEG)和终结器(鳍)13d(73%SFC:1.23 MCAL / kg NEG)。 2英国杂交的谣言腔内插管(183 kg±44kg)6 mo重量延伸成5串含有钙栅饲养剂,并接受了对照(CON)饮食(17.2%CP,35.8%NDF,86.7%DM。 )没有LY -12至0.之后,动物被随机分配给治疗(TRT),每TRT的5只动物:CON或LY以5g / d(LY1),10g / d(LY2)的夹杂物每天早晨,15克/天(LY3)顶部在0800持续45天。在7个单独的收集天内评估DMD和NDFD,使用含有5g GRW,反式或翅片饮食的原位尼龙袋,在1200℃下孵育48小时。原生动物计数(PC)在5个收集期间确定。分析数据作为随机完整块设计中的重复测量,假设笔的随机效果。对于GRW,TRT改变了非纤维碳水化合物(NFC; P = 0.045)的总气体生产和纤维碳水化合物(FC)池(P = 0.001)的降解(KD)的分数率(P≤0.05 ):Ly2具有最大的天然气生产和最快的KD。 TRT还影响DMD(P = 0.035)和NDFD(P = 0.012),LY2提供最大的消化率。对于反式,TRT倾向于影响NFC KD(P = 0.078)并影响pH(p = 0.04)和DMD(P <0.001),其中Ly2产生最快的Kd,最高pH和最大的DMD。对于鳍片,TRT对NFC池的总天然气生产(P <0.001)和KD(P = 0.004)的影响,FC KD(P = 0.012),体外CH4浓度(P <0.001),PC( P <0.001),DMD(P = 0.039)和NDFD(P = 0.008)。 LY1有最高的PC,并提供了最大的DMD和NDFD。 LY2有最快的NFC和FC池的KD,并且浓度最低。 LY3有最大的NFC天然气生产。没有观察到特异性剂量 - 反应模式,但10克/ D为所有饮食提供了最有益的结果。我们得出结论,利益受影响的IVGP以及瘤胃参数和消化力。

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