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首页> 外文期刊>Animal Feed Science and Technology >Ruminal and intestinal amino acid digestion of distiller's grain vary with grain source and milling process.
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Ruminal and intestinal amino acid digestion of distiller's grain vary with grain source and milling process.

机译:酒糟的瘤胃和肠道氨基酸消化率随粮源和碾磨过程的不同而不同。

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摘要

A study was conducted to evaluate the in situ ruminal degradability of crude protein (CP), amino acid (AA) profiles of ruminal undegradable protein (RUP), and in vitro intestinal digestibility of AA for dried distillers grains with solubles (DDGS) as affected by grain source (corn vs. wheat) and milling process (conventional vs. fractional). The feeds tested included wheat, wheat DDGS (WDDGS), corn, corn DDGS (CDDGS) and corn fractional DDGS (FDDGS). The feeds were evaluated in three ruminally cannulated beef heifers fed a diet containing 600 g/kg barley silage and 400 g/kg barley-based concentrate (dry matter [DM] basis). Polyester bags containing 5 g of ground feed (2-mm) were incubated in the rumen of each heifer for 0, 2, 4, 6, 12, 16, 24, and 48 h. Ruminal microbes were labeled using 15N to correct the bacterial contamination. The model y=a+b(1 - e-c(t-lag)) was fitted to determine degradation kinetics of DM and protein. Effective degradability (ED) was determined as: a+[bc/(c+k)], where k was assumed to be 0.06/h. In vitro intestinal digestibility of the RUP and AA were determined on the residue after 16 h of ruminal incubation using a modified 3-step method. The CP, neutral detergent fiber, acid detergent fiber, ether extract, and mineral contents of DDGS varied (P<0.01) with grain and milling process. Amino acid profiles of DDGS were different (P<0.05) from those of the original grain. Ruminal degradation of CP was lower (P<0.01) in DDGS than in the original grain, and lower (P<0.01) in FDDGS than in CDDGS, with no difference between WDDGS and CDDGS. However, ruminal degradation of essential AA (EAA) was higher (P<0.05) for WDDGS than for CDDGS, and it was lowest (P<0.01) for FDDGS. The AA profiles of RUP were different (P<0.05) between DDGS and the original grain as well as between DDGS types. Intestinal digestibility widely varied among individual AA and among feeds. The intestinal digestibility of total AA and EAA was not different between WDDGS and CDDGS, but it was lower (P<0.05) for FDDGS than for CDDGS. Estimated intestinal absorbable total AA and EAA were highest (P<0.05) for FDDGS, intermediate (P<0.05) for CDDGS, and lowest (P<0.05) for WDDGS. The results suggest that the AA availability of DDGS varies with the grain source used to produce ethanol and with the milling process prior to ethanol fermentation. Although FDDGS is a good RUP source, its CP digestibility coefficient in the total digestive tract of cattle is lower (P<0.05) than that of WDDGS and CDDGS.
机译:进行了一项研究以评估粗蛋白(CP)的瘤胃可降解性,瘤胃不可降解蛋白(RUP)的氨基酸(AA)概况以及AA对具有可溶物(DDGS)的干酒糟的体外肠道消化率按谷物来源(玉米与小麦)和制粉工艺(常规与零碎)进行比较。测试的饲料包括小麦,小麦DDGS(WDDGS),玉米,玉米DDGS(CDDGS)和玉米DDGS(FDDGS)。在三个饲喂含600 g / kg大麦青贮饲料和400 g / kg大麦基浓缩物(以干物质[DM]为基础的饲料)的反刍动物空心小母牛中对饲料进行了评估。将含有5 g地面饲料(2-mm)的聚酯袋在每个小母牛的瘤胃中孵育0、2、4、6、12、16、24和48小时。用 15 N标记瘤胃微生物,以纠正细菌污染。拟合模型y = a + b(1- e -c(t-lag))来确定DM和蛋白质的降解动力学。有效降解性(ED)确定为:a + [bc /(c + k)],其中k假定为0.06 / h。使用改良的3步法,在瘤胃温育16小时后,测定残留物中RUP和AA的体外肠道消化率。 DDGS的CP,中性清洁剂纤维,酸性清洁剂纤维,醚提取物和矿物质含量随谷物和碾磨过程而变化(P <0.01)。 DDGS的氨基酸谱与原始谷粒的氨基酸谱不同(P <0.05)。 DDGS的CP的瘤胃降解率比原始谷物低(P <0.01),FDDGS的CP的瘤胃降解率低于CDDGS(P <0.01),WDDGS和CDDGS之间没有差异。然而,WDDGS的必需AA的瘤胃降解(EAA)高于CDDGS(P <0.05),FDDGS的最低(P <0.01)。 DDGS与原始谷物之间以及DDGS类型之间RUP的AA谱均不同(P <0.05)。肠AA和饲料之间的肠消化率差异很大。 WDDGS和CDDGS之间的总AA和EAA的肠道消化率没有差异,但FDDGS的消化率低于CDDGS(P <0.05)。 FDDGS的估计肠道可吸收总AA和EAA最高(P <0.05),CDDGS的中间值(P <0.05),而WDDGS的最低值(P <0.05)。结果表明,DDGS的AA利用率随用于生产乙醇的谷物来源以及乙醇发酵前的研磨过程而变化。尽管FDDGS是良好的RUP来源,但其在牛总消化道中的CP消化率低于WDDGS和CDDGS(P <0.05)。

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