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1.
The objective of this research was to investigate physicochemical and biochemical characteristics of field-sprouted grain sorghum and its fermentation performance in ethanol production. Five field-sprouted grain sorghum varieties, which received abnormally high rainfall during harvest, were used in this study. Enzyme activities, microstructure, flour pasting properties, kernel hardness, kernel weight, kernel size, flour size and particle distribution of field-sprouted grain sorghum were analyzed. The effect of germination (i.e., sprouting) on conversion of grain sorghum to ethanol was determined by using a laboratory dry-grind ethanol fermentation procedure. Sprouted sorghum had increased α-amylase activity; degraded starch granules and endosperm cell walls; decreased kernel hardness, kernel weight, kernel size, and particle size; and decreased pasting temperature and peak and final viscosities compared with non-sprouted grain sorghum. The major finding is that the time required for sprouted sorghum to complete fermentation was only about half that of non-sprouted sorghum. Also, ethanol yield from sprouted sorghum was higher (416–423 L/ton) than that from non-sprouted sorghum (409 L/ton) on a 14% moisture basis.  相似文献   

2.
面条品质评价指标及评价方法的研究   总被引:6,自引:0,他引:6  
为了全面科学地评价小麦品种的面条加工特性,测定了29个北方小麦品种的面粉品质和鲜湿面条的制作品质,采用相关分析和多元回归分析方法,分析了面粉品质指标与鲜面条加工品质之间的关系.结果表明,面条的蒸煮损失率、拉伸强度、拉断力、延伸率与面条综合得分间的相关系数分别为-0.429、0.944、0.796和0.398,相关性很强,可以用作面条品质的辅助评价指标,即辅助综合得分来评价面条品质;面团的形成时间、稳定时间及弱化度与面条的综合得分和蒸煮损失率均呈极显著相关,面粉中的总淀粉含量与面条的综合得分呈显著相关,并且面粉白度、蛋白质含量、湿面筋含量、沉淀值、吸水率、形成时间、稳定时间、弱化度、总淀粉含量、直链淀粉含量、支链淀粉含量、支直链淀粉比等12项指标都不同程度地进入了面条的上述5个品质评价指标的回归方程,进一步说明用这5个指标来综合评价面条品质是可取的.根据面条各品质指标的相关性推出各品质指标在面条综合评价中所占的权重,再将利用回归方程算出的5个面条品质评价指标的数据进行标准化处理以消除量纲的影响后,即可计算出某个小麦品种所生产面条的综合评价分数.本研究即通过这一方法从29个供试小麦品种中优选出了6个优质面条用小麦品种,它们分别是洛展1号、泰山23、温麦4号、太空6号、淮麦16、温麦8号.  相似文献   

3.
为明确郑麦1860的品质及加工适用性,对2020-2021年河南省29个地点收获的郑麦1860的籽粒性状、磨粉品质、面团流变学特性、淀粉糊化特性和面条加工品质指标进行了测定与分析。结果表明,郑麦1860为优质中强筋面条小麦品种,特点是籽粒大、容重高、出粉率高,面条弹性好、色泽白亮、褐变较轻。在不同地点间郑麦1860的多数品质性状变异程度小,品质表现较稳定;相比较而言,其粉质参数、拉伸参数变异程度较大,淀粉糊化特性和面筋特性变异程度次之,籽粒品质性状、磨粉品质和面条加工参数变异程度较小。籽粒硬度、粒径、容重与出粉率呈显著正相关;容重、籽粒蛋白质含量、面粉灰分含量与面条总评分呈显著负相关;面粉色泽L*值、吸水率、峰值黏度、低谷黏度、终值黏度、回生值与面条总评分呈显著正相关。综上所述,籽粒蛋白质含量、面粉色泽和淀粉糊化特性是影响郑麦1860面条品质的主要因素。郑麦1860制作的面条感官评分高、品质稳定,在豫北、豫东和豫南等区域种植均适合制作优质面条。  相似文献   

4.
小麦淀粉与面条质量关系的研究进展   总被引:5,自引:0,他引:5  
小麦淀粉品质对白盐面条的质量(尤其是煮后的感官特性)有重要影响。直链与支链淀粉的含量及比例是影响面条质量的重要因素,是造成不同小麦品种淀粉糊化和膨胀特性及面条质量差异的物质基础。较低直链淀粉含量的小麦粉具有较好的糊化和膨胀特性,制作的面条煮制时吸水率高,烹调损失低,具有较高的感官评分。优质白盐面条的直链淀粉含量应在22%左右。峰值黏度、稀懈值、峰值时间是影响面条质量的重要糊化参数,这3项参数高的小麦粉适合制作优质面条。高膨胀势或膨胀体积的小麦粉制作的面条中等偏软,光滑且富有弹性,可以作为面条用小麦的重要选择标准。一般认为,直链淀粉含量较低、峰值黏度和稀懈值高、峰值时间长、膨胀势或膨胀体积高的小麦粉适合制作优质白盐面条。其中,直链淀粉含量、峰值黏度和膨胀势是优质面条小麦评价的关键品质性状。  相似文献   

5.
The closely linked genes puroindoline a (Pina) and puroindoline b (Pinb) control most of the variation in wheat (Triticum aestivum) grain texture. Mutations in either Pina or Pinb result in hard grain with wild type forms of both genes giving soft grain. Asian noodles are prepared from both hard and soft classes of wheat. Our objective was to examine color and texture characteristics of white salted noodles processed from flours of transgenic isolines of Hi-Line hard red spring wheat over expressing Pina-D1a, Pinb-D1a or both and a control giving a range in grain texture from very soft to hard. White salted noodles were prepared and color and texture characteristics were measured. The three softer textured transgenic isolines showed greater change in L* with time than Hi-Line. The noodles were more adhesive (more negative value), firmer, and chewier as the grain texture became successively softer when cooked at 5 min. These texture differences were not as apparent when noodles were cooked for an optimum time. Starch pasting properties did not explain the noodle textural differences. A possible explanation for the noodle texture differences may be related to starch damage which ranged from 2.2% for HGAB to 6.7% for Hi-Line, flour particle size differences and subsequent water absorption differences among the four genotypes. Over expression of puroindolines did not enhance quality of white salted noodles when prepared under these conditions.  相似文献   

6.
Four particle size distributions of whole-wheat flour (WWF) with mean particle sizes (MZ) of 125-μm, 96-μm, 72-μm, and 43-μm were obtained by superfine grinding. Starch damage and Farinograph water absorption were significantly affected by the reduction of particle size, while dough development time, stability, tolerance index and time to breakdown of WWF were little changed. The peak viscosity, trough, and final viscosity of WWF significantly decreased as particle size reduced. Although finer WWFs produced by superfine grinding caused more discoloration of whole-wheat noodle (WWN) after 24 h storage, they still showed brighter noodle appearance (higher L) than coarser WWFs. A significant increase in the cooking yield of WWN was noticed from the 125-μm WWF group to the 43-μm group, perhaps due to increasing damaged starch, while the 72-μm group exhibited the smallest cooking loss of WWN. Additionally, the hardness, cohesiveness, and resilience values of texture profile analysis (TPA) of cooked WWN significantly increased from the 125-μm group to the 72-μm group, and scanning electron microscope (SEM) analysis showed that the 72-μm group revealed the largest coverage of starch granules and degree of protein network connectivity among the WWF groups. The results demonstrated that the superfine grinding technique could improve the quality of WWN by significantly reducing the particle size of WWFs.  相似文献   

7.
The objective of this study was to investigate the feasibility of incorporating common buckwheat (Fagopyrum esculentum Moench) into instant noodle formulations. Australian Soft (AS) and Baker's flours were used to evaluate the effects of varying buckwheat contents (0–40%) on noodle quality. The results of texture analysis indicate that noodles made using AS flour produced softer texture whereas there was minimal effect for Baker's flour when buckwheat was incorporated. The colour, measured by L* values, decreased with increased addition of buckwheat for both flours. Fat uptake for noodle samples made from AS flour was only marginally affected, but increased for Baker's flour, when higher levels of buckwheat flour were added. The antioxidant rutin was detected in noodles made from both wheat flours, generally increasing with % buckwheat flour added. These findings indicate that the incorporation of 20% buckwheat into the formulation can be used to enhance the quality of instant noodles.  相似文献   

8.
针对餐饮业连锁经营和向食品制造转化的背景下,食品生产企业对小麦品种质量特性、原料质量稳定性,特别是面条制作适宜性提出新的要求,对关中平原大面积种植的小麦品种籽粒质量性状进行分析,并通过训练的专业感官评价人员对以其为原料、由面点师实验室制作的鲜面条的烹饪特性进行评价,同时统计分析小麦籽粒性状、面粉理化特性和面条感官评价结果之间的关系。结果表明,关中平原小麦千粒重、容重和硬度较高,面粉湿面筋含量高,面团延展性能良好,优质强筋小麦品种的比例明显提高。面粉的黏度参数,特别是峰值黏度,对面条的感官评价总分,面条质量要素中的色泽、硬度和黏性有较大影响,是评价鲜面条专用粉的重要参考指标。面条感官评价总分与峰值黏度呈显著正相关,与籽粒硬度、破损淀粉含量和面粉吸水率呈显著或极显著负相关。小麦品种(面粉)百农207、F50、F20、中麦578、西农583和郑麦366适宜制作优质鲜面条。  相似文献   

9.
小麦蛋白质与面条品质关系的研究进展   总被引:4,自引:1,他引:4  
刘锐  魏益民  张波 《麦类作物学报》2011,31(6):1183-1187
为促进我国面条工业生产并为面条专用小麦良种的选育提供科学依据,对近年来小麦蛋白质与面条品质关系的研究进行了综述。总体来看,蛋白质含量和质量从各个方面影响面条品质。蛋白质含量与面条白度、表观状态呈负相关,与面条质构特性,尤其是煮熟面条的硬度、弹性呈正相关。较高的麦谷蛋白含量可以提高面条的硬度、咀嚼性、粘合性和抗拉伸能力。在一定范围内,蛋白质质量(面筋含量和质量、沉降值、流变学特性)的提高有助于面条蒸煮品质的改善和感官评分的提高,但蛋白质质量过高(湿面筋含量〉35%,沉降值〉60mL,稳定时间〉16min)会导致面条外观品质变劣,评分下降;高分子量谷蛋白亚基5+10可能与较好的面条品质有关。一般认为,优质面条小麦的蛋白质品质指标为:蛋白质含量12%~14%;湿面筋含量28%~34%,沉淀值40~45mL,稳定时间5~15min。  相似文献   

10.
小麦面条加工品质研究进展   总被引:22,自引:11,他引:22  
本文从面条煮面品质鉴定方法、面条品质与小麦(面粉)品质的关系和小麦面条品质遗传改良等方法阐述了国内外小麦面条加工研究进展。面粉的理化特性对各类面条品质均有重要影响。对日本式加盐白面条而言,淀粉质量较蛋白质(面筋)含量与质量更为重要,淀粉质量对中国面条也有重要作用;面筋强度、淀粉糊化特性、面条色泽及其稳定性是小麦面条品质改良最基本的选择指标。自20世纪80年代以来,国外把面条品质遗传改良的重点放在对淀粉质量的改良上,把淀粉糊化峰值粘度、面粉膨胀体积、直链淀粉含量等做为日本加盐白面条品质改良的选择指标,利用面粉膨胀体积法、凝胶电泳和分子标记法对育种早代材料进行面条品质鉴定筛选。  相似文献   

11.
Amylose and resistant starch (RS) content in rice flour were manipulated. The experiment was conducted using a full factorial design. Rice flour with average amylose content of 20 and RS content of 0.5 g/100 g dry sample was fortified with pure amylose from potato and high RS modified starch to reach the final amylose content of 30, 40 and 50 and RS content of 2, 4 and 6 g/100 g dry sample. The fortified rice flours were examined for their gelatinisation properties, in-vitro enzymatic starch digestion and gel textural properties. It was found that amylose and RS significantly affect all the fortified rice flour properties (p < 0.05). High amylose and RS improved starch digestion properties, reducing the rate of starch digestion and lowering the glycaemic index (GI) values. Amylose had a more pronounced effect on the fortified rice starch properties than RS. In this study, the fortified rice flour which contained amylose and RS of approximately 74 and 9 g/100 g dry sample respectively was used to produce rice noodles. The noodles exhibited low GI values (GI < 55). However, amylose and RS affected the textures of rice noodles providing low tensile strength and break distance (extensibility).  相似文献   

12.
The physicochemical properties and in-vitro digestibility of extruded rice noodles with different amylose contents were characterized from a rheological point of view. Thermo-mechanical measurements showed that the rice flour with higher amylose contents exhibited greater stability to dual-mixing and higher degrees of starch gelatinization and retrogradation. In addition, greater elastic properties were clearly observed in the high amylose rice samples. The use of high amylose rice flour produced noodles with a harder texture, consequently contributing to reduced cooking loss. Furthermore, the rheological changes of extruded rice noodles were monitored in real time during the in-vitro starch digestion. The rice noodle digesta with higher amylose contents exhibited greater viscosities throughout the simulated oral-gastric-intestinal digestion steps. The flow behaviors of the rice noodle digesta consisted of the Power-law region and infinite shear plateau that were satisfactorily characterized by the Sisko model (R2 > 0.99).  相似文献   

13.
As consumers worldwide are concerned about health issues, the demand for non-fried instant noodle has increased rapidly in recent years. Korean instant noodle typically contains a high level of modified starch, especially modified potato starch such as acetylated potato starch (APS), for its unique eating quality. This often leads to high material cost. The objective of this research was to investigate the effect of three phosphate salts (PS) on the quality of Korean non-fried instant noodle made with reduced level of APS. The results showed that PS and APS had similar effects on noodle quality. All PS gave noodle a brighter and yellower appearance. Reducing APS level from 15% to 10% resulted in a much harder noodle, but adding PS into noodles with 10% APS yielded a softer texture. The RVA analysis of instant noodle formula dry mix showed that at the 10% APS level, all PS significantly increased noodle flour PV and FV. The RVA analysis of finished instant noodle powder indicated that at the 10% APS level, both PV and FV were significantly increased with 0.30% DSP or DKP, and 0.03% MSP was able to increase PV significantly. It was suggested that APS used in Korean non-fried instant noodle could be partially substituted by PS with minimal impact on finished product quality.  相似文献   

14.
The average particle size of ground grains is known to influence properties related to processing (e.g. water absorption and solubility) and nutritional value (e.g. starch digestion rate) of human foods and animal feeds. The purpose of this study was to identify the contributions made by individual size fractions of hammer-milled barley and sorghum grains to average bulk compositional, hydration, rheological, and enzyme susceptibility properties. Barley and sorghum grains were each hammer-milled through a 4 mm screen and subsequently fractionated on a set of eight sieves ranging from 0.125 mm to 2.8 mm. Individual fractions were characterised for (1) starch, aNDF, and water content, (2) water absorption index (WAI) and water solubility index (WSI), (3) viscosity profile during cooking and cooling in excess water, and (4) in vitro starch digestibility. Weighted average values based on fraction yields and property values for WAI, WSI, and starch digestibility were not significantly different from values obtained for non-fractionated ground grains of both barley and sorghum. Glucose yields from starch digestion varied about ten-fold between the smallest and largest particle fractions, and WAI and WSI had value ranges of 1.9–2.8 g/g (sorghum), 2.1–4.0 g/g (barley) and 1.3–4.5% (sorghum), 0.7–10.3% (barley), respectively. Viscosity profiles for milled sorghum grain fractions were dominated by starch swelling which became increasingly restricted as particle sizes increased. Viscosity profiles for milled barley grain fractions did not exhibit typical starch-based behaviour and were most likely dominated by soluble fibres. Taken together, the results show that there is considerable potential for designing combinations of hydration, rheological and digestibility properties of ground grains through informed selection of appropriate grains and particle size distributions.  相似文献   

15.
White, blue, black and purple red wheat bran powders were prepared by ultrafine grinding to the particle size distribution of 0.5–100 μm. The effects of wheat bran addition on the qualities of dry Chinese noodles were investigated. Rapid Visco Analyzer results suggested that peak viscosity, hot paste viscosity, cool paste viscosity, breakdown viscosity and setback viscosity of the blends decreased with the increasing bran levels from 2.0% to 6.0% (P < 0.05). Color of dough sheet (L*) decreased with the addition of wheat bran, while a* and b* values increased distinctly. Water absorption and firmness of the cooked noodles showed up trends with increasing addition of bran, while cooking loss showed a downtrend. Tensile strength and elongation rate decreased when bran addition was 2.0%, but increased when bran addition reached 4.0%–6.0%. Storage modulus (E′) and loss modulus (E″) showed decreasing trends with increases in bran addition at frequencies of 0.1–10 Hz. SEM revealed that bran presence could slightly decrease surface connectivity between starch granules and gluten. It is possible to produce fiber-rich noodles by using 2.0%–6.0% ultrafine-ground bran in wheat flour.  相似文献   

16.
Addition of a gluten-free flour such as sorghum has negative impact on the quality of wheat dough for bread making. One of the methods which can be used to promote the quality of sorghum-wheat composite dough is to extrude the sorghum flour before incorporation. In this regard, to produce a dough with appropriate bakery properties sorghum flour was extruded at 110 °C and 160 °C die temperature with 10%, 14% and 18% feed moisture. The effect of extruded sorghum flour incorporation (10%) on rheological (farinography and stress relaxation behavior), morphological and temperature profile of sorghum-wheat composite dough were evaluated. Extrusion cooking altered the sorghum-wheat composite dough properties through partial gelatinization of starch granules. Addition of extruded sorghum flour increased the water absorption and dough development time but it decreased the dough stability. Native sorghum-wheat composite dough showed viscoelastic liquid-like behavior whereas addition of sorghum flour extrudate changed dough to a more viscoelastic solid-like structure. Maxwell model was more appropriate than Peleg model to describe the viscoelasticity of the sorghum-wheat composite dough. Extrusion cooking decreased composite dough elasticity and viscosity. Sorghum extrudate increased the heating rate of composite dough crumb during baking. Addition of extruded sorghum flour formed a non-uniform and less compact dough structure. As a result, dough containing extruded sorghum flour had a good potential for producing a high-yielding bread in a short time of baking.  相似文献   

17.
Starch was isolated from 98 hard red winter (HRW) wheat and 99 hard red spring (HRS) wheats. Granule size/volume distributions of the isolated starches were analyzed using a laser diffraction particle size analyzer. There were significant differences in the size distribution between HRW and HRS wheats. The B-granules (<10 μm in diameter) occupied volumes in the range 28.5–49.1% (mean, 39.9%) for HRW wheat, while HRS wheat B-granules occupied volumes in the range 37.1–56.2% (mean, 47.3%). The mean granule sizes of the distribution peaks less than 10 μm in diameter also showed a significant difference (HRW, 4.32 vs. HRS, 4.49 μm), but the mean sizes of the distribution peaks larger than 10 μm were not significantly different (21.54 vs. 21.47 μm). Numerous wheat and flour quality traits also showed significant correlation to starch granule size distributions. Most notably, protein content was inversely correlated with parameters of B-granules. Crumb grain score appeared to be affected by starch granule size distribution, showing significant inverse correlations with B-granules. Furthermore, the linear correlations were improved when the ratio of B-granules to protein content was used, and the polynomial relation was applied. There also appeared to be an optimum range of B-granules for different protein content flour to produce bread with better crumb grain.  相似文献   

18.
Understanding the effects of different alleles at the puroindoline b (Pinb) locus on processing quality will provide crucial information for quality improvement. Seven near-isogenic lines (NILs) planted at two locations in the 2008 cropping season were used to determine the effect of puroindoline b alleles on milling performance and Chinese raw white noodle (CRWN) quality. The Pina-D1b/Pinb-D1a genotype possessed significantly higher values in grain hardness, protein content and starch damage than other genotypes, whereas the Pina-D1a/Pinb-D1d genotype had the lowest grain hardness and starch damage, with higher break flour yield, and less reduction flour yield, higher flour colour L*, and lower flour colour b*, than other genotypes. Farinograph parameters, except for water absorption, were not significantly affected by variation of puroindoline b alleles. Pina-D1a/Pinb-D1e had the highest peak viscosity, whereas the lowest value was observed in a Pina-D1b/Pinb-D1a genotype. For CRWN quality, higher noodle viscoelasticity was obtained in the genotype Pina-D1a/Pinb-D1e and Pina-D1a/Pinb-D1g, whereas Pina-D1a/Pinb-D1d had a lower smoothness score. Genotypes with Pina-D1a/Pinb-D1e and Pina-D1a/Pinb-D1g produced the best total noodle score. It was concluded that genotype Pina-D1a/Pinb-D1d had better milling qualities, whereas Pina-D1a/Pinb-D1e and Pina-D1a/Pinb-D1g had slightly superior CRWN qualities in comparison with other genotypes.  相似文献   

19.
The in vitro starch digestibility of five gluten-free breads (from buckwheat, oat, quinoa, sorghum or teff flour) was analysed using a multi-enzyme dialysis system. Hydrolysis indexes (HI) and predicted glycaemic indexes (pGI) were calculated from the area under the curve (AUC; g RSR/100g TAC*min) of reducing sugars released (RSR), and related to that of white wheat bread. Total available carbohydrates (TAC; mg/4 g bread “as eaten”) were highest in sorghum (1634 mg) and oat bread (1384 mg). The AUC was highest for quinoa (3260 g RSR), followed by buckwheat (2377 g RSR) and teff bread (2026 g RSR). Quinoa bread showed highest predicted GI (95). GIs of buckwheat (GI 80), teff (74), sorghum (72) and oat (71) breads were significantly lower. Significantly higher gelatinization temperatures in teff (71 °C) and sorghum flour (69 °C) as determined by differential scanning calorimetry (DSC) correlated with lower pGIs (74 and 72). Larger granule diameters in oat (3–10 μm) and sorghum (6–18 μm) in comparison to quinoa (1.3 μm) and buckwheat flour (3–7 μm) as assessed with scanning electron microscopy resulted in lower specific surface area of starch granules. The data is in agreement with predictions that smaller starch granules result in a higher GI.  相似文献   

20.
The in vitro starch digestibility of five gluten-free breads (from buckwheat, oat, quinoa, sorghum or teff flour) was analysed using a multi-enzyme dialysis system. Hydrolysis indexes (HI) and predicted glycaemic indexes (pGI) were calculated from the area under the curve (AUC; g RSR/100g TAC*min) of reducing sugars released (RSR), and related to that of white wheat bread. Total available carbohydrates (TAC; mg/4 g bread “as eaten”) were highest in sorghum (1634 mg) and oat bread (1384 mg). The AUC was highest for quinoa (3260 g RSR), followed by buckwheat (2377 g RSR) and teff bread (2026 g RSR). Quinoa bread showed highest predicted GI (95). GIs of buckwheat (GI 80), teff (74), sorghum (72) and oat (71) breads were significantly lower. Significantly higher gelatinization temperatures in teff (71 °C) and sorghum flour (69 °C) as determined by differential scanning calorimetry (DSC) correlated with lower pGIs (74 and 72). Larger granule diameters in oat (3–10 μm) and sorghum (6–18 μm) in comparison to quinoa (1.3 μm) and buckwheat flour (3–7 μm) as assessed with scanning electron microscopy resulted in lower specific surface area of starch granules. The data is in agreement with predictions that smaller starch granules result in a higher GI.  相似文献   

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