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Fibrolytic enzymes improve the nutritive value of high-moisture corn for finishing bulls

机译:纤维溶解酶改善高湿玉米的营养价值用于整理公牛队

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摘要

Exogenous fibrolytic enzymes (EFE) improve the energy availability of grains for nonruminant animals by reducing encapsulation of the endosperm nutrients within grain cell walls; however, these benefits are unknown in the treatment of corn-based silage for cattle. The objective of the present study was to evaluate the effects of adding EFE at ensiling on the nutritive value of high-moisture corn (HMC) and snaplage (SNAP) for finishing Nellore bulls. The EFE dose was 100 g/Mg fresh matter in both HMC and SNAP. Diets were 1) a SNAP + HMC control (without enzyme addition); 2) SNAP + HMC EFE (with enzymes); 3) a whole-plant corn silage (WPCS) + HMC control (without enzyme addition); and 4) WPCS + HMC EFE (with enzymes). In addition to the silages, the diets were also composed of soybean hulls, soybean meal, and mineral–vitamin supplement. The statistical design was a randomized complete block with a factorial arrangement of treatments, and the experiment lasted 122 d. For in situ and in vitro analyses, 2 cannulated dry cows were used. There was no interaction between the diets and EFE application (ADG, P = 0.92; DMI, P = 0.77; G:F, P = 0.70), and there was no difference between the SNAP and WPCS diets regarding the DMI (P = 0.53), ADG (P = 0.35), and feed efficiency (ADG:DMI, P = 0.83). Adding EFE to the HMC and SNAP at ensiling did not affect ADG but decreased DMI (P = 0.01), resulting in greater feed efficiency by 5.91% (P = 0.04) than that observed in animals fed diets without the addition of EFE. Addition of EFE to HMC resulted in reduced NDF content and increased in vitro and in situ DM digestibility compared with untreated HMC. No effects were found for the addition of EFE to SNAP. Fecal starch decreased with EFE application (P = 0.05). Therefore, the diet energy content (TDN, NEm, and NEg) calculated from animal performance increased (P = 0.01) with the addition of EFE to HMC. In conclusion, exchanging the NDF from WPCS with that from SNAP did not affect the performance of finishing cattle, whereas the addition of EFE to HMC at ensiling improved animal performance by increasing the energy availability of the grain.
机译:外源性纤维溶解酶(EFE)通过减少谷粒细胞壁内的胚乳营养物的包封来改善谷粒的谷物的能量可用性;然而,这些益处在治疗玉米青贮饲料中是未知的。本研究的目的是评估添加EFE在酶的高湿玉米(HMC)和Snaplage(Snap)的营养价值中添加EFE的效果。 EFE剂量在HMC和SNAP中为100g / mg新鲜物质。饮食为1)捕获+ HMC对照(没有酶添加); 2)Snap + HMC EFE(用酶); 3)全植物玉米青贮(WPC)+ HMC控制(没有酶加法); 4)WPCS + HMC EFE(用酶)。除了木质之外,饮食还由大豆船体,大豆膳食和矿物质 - 维生素补充剂组成。统计设计是一种随机完整的块,具有阶乘处理的处理,实验持续了122天。原位和体外分析,使用2个插管干奶牛。饮食和EFE施用之间没有相互作用(ADG,P = 0.92; DMI,P = 0.77; G:F,P = 0.70),对DMI的饮食没有差异(P = 0.53 ),ADG(P = 0.35),以及饲料效率(ADG:DMI,P = 0.83)。将EFE添加到HMC并在exiling时捕捉不影响ADG但减少DMI(P = 0.01),导致更高的饲料效率5.91%(P = 0.04),而不是在没有添加EFE的动物中喂食饮食中观察到的。与未处理的HMC相比,加入EFE至HMC以减少NDF含量和体外和原位DM消化率。没有发现添加EFE以捕捉的效果。粪便淀粉随EFE申请减少(P = 0.05)。因此,从动物性能计算的饮食能量含量(TDN,NEM和NEN)增加(p = 0.01),加入EFE至HMC。总之,从扫描中交换WPC的NDF不会影响整理牛的性能,而通过提高谷物的能量可用性,在减少改善的动物性能下加入EFE至HMC。

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