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Ruminal and Intestinal Degradability of Distillers Grains plus Solubles Varies by Source

机译:酒糟和豆粕的瘤胃和肠道降解能力因来源而异

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Currently in the dairy industry, there is a concern about the variability in the nutrient content among sources of distillers grains plus solubles (DG), but little research has evaluated the variability in metaboliz-able AA among sources. The ruminal degradability of crude protein (CP) in soybean meal (SBM), dried DG from 5 sources (DG1, DG2, DG3, DG4, and DG5), and 1 source of wet DG (WDG) were determined using 2 lactating ruminally cannulated Holstein cows. Feeds were incubated in the rumen for 3, 6, 12, 18, 24, and 36 h. Intestinal CP digestibility via pepsin and pancre-atin and AA profiles were measured on residue from 12-h ruminal incubation of feeds. Ruminal undegrad-able protein (RUP) was less for SBM (46.4%) than for DG. The WDG (53.6%) had less RUP than dried DG. The RUP concentrations of DG3 (59.1%) and DG5 (60.3%) were lower than DG1 (71.7%) and DG4 (67.5%), with DG1 having more than DG2 (63.7%) and DG4. Intestinal digestibility of RUP was greater for SBM (86.7%) than DG. The DG2 (76.8%) and DG3 (74.2%) had greater intestinal digestibility compared with DG1 (59.2%), DG4 (63.0%), and DG5 (68.1%). The intestinal digestibility in WDG (65.8%) was similar to all other DG except for DG1, which was lower. Total digestibility of CP was greater in SBM (93.9%) compared with DG. Among the DG sources, the CP in DG2 (85.3%) and DG3 (84.9%) was more digestible compared with DG1 (70.7%), DG4 (74.9%), and DG5 (80.8%) but not WDG (81.9%). Based on the milk protein score (MPS), which is an estimate of the proportion of milk protein that a protein source can sustain until the first limiting AA is depleted, Met was the first limiting AA in SBM and Lys in DG. The concentrations of essential AA in the RUP were not different among DG sources, but the greater MPS in WDG (0.306) compared with the dried DG (0.240) sources indicated that WDG may have been the more ideal RUP source; but, the MPS of the metabolizable protein indicated that the protein quality of WDG was similar to that in DG2, DG3, and DG5. In conclusion, protein degradability and digestibility differed greatly among DG sources, but these differences were actually not as prominent in the concentrations of metabolizable AA and MPS among these sources.
机译:当前,在乳品工业中,人们对酒糟加可溶物(DG)来源之间营养成分的变异性存在担忧,但是很少有研究评估这些来源中可代谢AA的变异性。使用2个经瘤胃插管的泌乳期测定了豆粕(SBM),5种来源(DG1,DG2,DG3,DG4和DG5)的干DG和1种湿DG(WDG)的干DG的瘤胃降解性荷斯坦奶牛。将饲料在瘤胃中孵育3、6、12、18、24和36小时。通过胃液12小时瘤胃温育后的残留物,测量通过胃蛋白酶和胰蛋白酶的肠CP消化率和AA曲线。 SBM的瘤胃不可降解蛋白(RUP)低于DG(46.4%)。 WDG(53.6%)的RUP低于干燥的DG。 DG3(59.1%)和DG5(60.3%)的RUP浓度低于DG1(71.7%)和DG4(67.5%),其中DG1高于DG2(63.7%)和DG4。 SBM的RUP肠消化率比DG高(86.7%)。与DG1(59.2%),DG4(63.0%)和DG5(68.1%)相比,DG2(76.8%)和DG3(74.2%)具有更高的肠消化率。 WDG的肠消化率(65.8%)与所有其他DG相似,但DG1较低。与DG相比,SBM中CP的总消化率更高(93.9%)。在DG来源中,与DG1(70.7%),DG4(74.9%)和DG5(80.8%)相比,DG2(85.3%)和DG3(84.9%)的CP更易消化,而WDG(81.9%)则较易消化。基于牛奶蛋白评分(MPS),这是蛋白质来源在第一个限制性AA耗尽之前可以维持的牛奶蛋白比例的估计,Met是SBM中的第一个限制性AA,而DG是Lys。 DG源中RUP中必需AA的浓度没有差异,但是与干燥DG(0.240)源相比,WDG中MPS(0.306)更大,表明WDG可能是更理想的RUP源。但是,可代谢蛋白质的MPS表明WDG的蛋白质质量与DG2,DG3和DG5相似。总之,DG来源之间的蛋白质降解性和消化率差异很大,但这些来源中可代谢的AA和MPS的浓度实际上并不明显。

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