Gibreel Amera, Sandercock James R, Lan Jingui, Goonewardene Laksiri A, Zijlstra Ruurd T, Curtis Jonathan M, Bressler David C
Department of Agriculture, Food and Nutritional Science, University of Alberta, Edmonton, Alberta T6G 2H7, Canada.
Appl Environ Microbiol. 2009 Mar;75(5):1363-72. doi: 10.1128/AEM.01512-08. Epub 2008 Dec 29.
The objective of this study was to examine the ethanol yield potential of three barley varieties (Xena, Bold, and Fibar) in comparison to two benchmarks, corn and wheat. Very high gravity (VHG; 30% solids) fermentations using both conventional and Stargen 001 enzymes for starch hydrolysis were carried out as simultaneous saccharification and fermentation. The grains and their corresponding dried distiller's grain with solubles (DDGS) were also analyzed for nutritional and value-added characteristics. A VHG traditional fermentation approach utilizing jet-cooking fermentation revealed that both dehulled Bold and Xena barley produced ethanol concentrations higher than that produced by wheat (12.3, 12.2, and 11.9%, respectively) but lower than that produced by corn (13.8%). VHG-modified Stargen-based fermentation of dehulled Bold barley demonstrated comparable performance (14.3% ethanol) relative to that of corn (14.5%) and wheat (13.3%). Several important components were found to survive fermentation and were concentrated in DDGS. The highest yield of phenolics was detected in the DDGS (modified Stargen 001, 20% solids) of Xena (14.6 mg of gallic acid/g) and Bold (15.0 mg of gallic acid/g) when the hull was not removed before fermentation. The highest concentration of sterols in DDGS from barley was found in Xena (3.9 mg/g) when the hull was included. The DDGS recovered from corn had the highest concentration of fatty acids (72.6 and 77.5 mg/g). The DDGS recovered from VHG jet-cooking fermentations of Fibar, dehulled Bold, and corn demonstrated similar levels of tocopherols and tocotrienols. Corn DDGS was highest in crude fat but was lowest in crude protein and in vitro energy digestibility. Wheat DDGS was highest in crude protein content, similar to previous studies. The barley DDGS was the highest in in vitro energy digestibility.
本研究的目的是考察三种大麦品种(Xena、Bold和Fibar)与两个基准品种玉米和小麦相比的乙醇产量潜力。采用传统酶和Stargen 001酶进行淀粉水解的超高重力(VHG;30%固形物)发酵,同时进行糖化和发酵。还对谷物及其相应的带可溶物的干酒糟(DDGS)进行了营养和增值特性分析。采用喷射蒸煮发酵的VHG传统发酵方法表明,去皮的Bold和Xena大麦产生的乙醇浓度均高于小麦(分别为12.3%、12.2%和11.9%),但低于玉米(13.8%)。去皮Bold大麦基于VHG改良的Stargen发酵表现出与玉米(14.5%)和小麦(13.3%)相当的性能(14.3%乙醇)。发现几种重要成分在发酵后留存下来,并集中在DDGS中。当发酵前不去皮时,Xena(14.6毫克没食子酸/克)和Bold(15.0毫克没食子酸/克)的DDGS(改良Stargen 001,20%固形物)中检测到的酚类物质产量最高。当保留谷壳时,Xena的大麦DDGS中甾醇浓度最高(3.9毫克/克)。从玉米中回收的DDGS脂肪酸浓度最高(72.6和77.5毫克/克)。从Fibar、去皮Bold和玉米的VHG喷射蒸煮发酵中回收的DDGS生育酚和生育三烯酚水平相似。玉米DDGS粗脂肪含量最高,但粗蛋白和体外能量消化率最低。小麦DDGS粗蛋白含量最高,与先前研究结果相似。大麦DDGS体外能量消化率最高。