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In situ ruminal degradation characteristics of by-product feedstuffs for beef cattle consuming low-quality forage1

机译:食用低质饲草的肉牛副产品饲料原位瘤胃降解特性1

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Eight ruminally cannulated steers (BW = 753 ± 48 kg) were used to evaluate in situ N, NDF, and DM degradation characteristics of by-product feeds and their application for beef cows consuming low-quality forage. Experimental feedstuffs included (DM basis) 1) extruded-expelled cottonseed meal (ECSM; 33% CP and 55% NDF), 2) extruded-expelled cottonseed meal with linters (ECSML; 25% CP and 41% NDF), 3) dried distillers grains with solubles (DGS; 33% CP and 36% NDF), 4) solvent-extracted cottonseed meal (CSM; 43% CP and 29% NDF), and 5) a blend of 76% wheat middlings with 18% CSM (WMCSM; 23% CP and 40% NDF). Steers were fed chopped prairie hay (4.8% CP, 69% NDF; DM basis) ad libitum and received 0.38 kg/100 kg of BW of WMCSM daily. In situ degradation kinetics of N, NDF, and DM components included the following fractions: A (immediately soluble), B (potentially degradable), and C (undegradable). Calculated rumen degradable protein (RDP) for ECSM was the greatest among all feedstuffs (83.8%; P <0.01), which was composed of a large A fraction of N (41%). Similar RDP values were observed for DGS and ECSML (50.7 and 50.9%, respectively, P = 0.93). The B fraction N for ECSML was large (88.9%); however, most of this was unavailable for ruminal degradation. The amount of RDP in CSM and WMCSM was similar (78.2 and 73.5%, respectively; P = 0.12) though the A fraction of N was greater for WMCSM compared with CSM (P < 0.01). Degradability of NDF was greatest (P <0.01) for DGS (67.4%) and was similar (P = 0.48) for WMCSM and CSM (54.5 and 57.0%, respectively). The least degradability of NDF was calculated for ECSM (29.3%; P < 0.01), attributed to greater lignin content (13.3%, DM). Degradability of DM was greatest (P < 0.01) for CSM and WMCSM (63.7 and 59.4%, respectively) and least (P < 0.01) for ECSM (36.5%) and EC-SML (40.6%). Ruminal N degradation characteristics of ECSM were similar to more traditional supplements containing CSM and WMCSM. The RDP for ECSML and DGS N was less compared with other feedstuffs, indicating these feeds may need to be blended with other ingredients containing greater concentrations of degradable N, particularly in situations in which forage RDP is low. [PUBLICATION ABSTRACT]
机译:使用八头瘤胃空心牛(体重= 753±48千克)评估副产品饲料的原位N,NDF和DM降解特性,以及它们在低质饲草中的应用。实验饲料包括(以DM为基础)1)膨化棉籽粕(ECSM; 33%CP和55%NDF),2)膨化棉籽粕含短绒(ECSML; 25%CP和41%NDF),3)干燥含可溶物(DGS; 33%CP和36%NDF)的酒糟,4)溶剂萃取棉籽粕(CSM; 43%CP和29%NDF),和5)76%小麦中粉与18%CSM的混合物( WMCSM; CP为23%,NDF为40%)。牛随意喂入切碎的草原干草(4.8%CP,69%NDF;基于DM),每天饲喂0.38 kg / 100 kg BW的WMCSM。 N,NDF和DM成分的原位降解动力学包括以下部分:A(立即溶解),B(潜在可降解)和C(不可降解)。 ECSM的瘤胃可降解蛋白(RDP)计算值在所有饲料中最大(83.8%; P <0.01),其中N占很大一部分(41%)。对于DGS和ECSML,观察到了相似的RDP值(分别为50.7和50.9%,P = 0.93)。 ECSML的B分数N大(88.9%);但是,其中大多数都无法用于瘤胃降解。尽管CMC和WMCSM中RDP的数量相似(分别为78.2和73.5%; P = 0.12),但WMCSM中N的A分数高于CSM(P <0.01)。对于DGS(67.4%),NDF的可降解性最大(P <0.01),而对于WMCSM和CSM,NDF的可降解性相似(P = 0.48)(分别为54.5和57.0%)。计算得出ECSM的NDF降解性最低(29.3%; P <0.01),这归因于木质素含量较高(13.3%,DM)。对于CSM和WMCSM,DM的可降解性最大(P <0.01)(分别为63.7和59.4%),对于ECSM(36.5%)和EC-SML(40.6%)则最小(P <0.01)。 ECSM的瘤胃N降解特性与包含CSM和WMCSM的更传统的补充剂相似。与其他饲料相比,ECSML和DGS N的RDP较少,这表明这些饲料可能需要与其他可降解N含量较高的成分混合,特别是在草料RDP较低的情况下。 [出版物摘要]

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