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11.
In this study, sixteen wheat varieties for cultivation in China were examined for the flour characteristics using the farinograph, extensograph and rheofermentometer, uniaxial extensional rheology employing the extensograph and the Kieffer extensibility rig and biaxial extension by uniaxial compression of mixed dough with and without yeast, rested and fermented dough, and steamed bread quality including specific volume and texture properties. Three statistical analysis methods including Pearson correlation, principle component and stepwise multiple regression analysis were carried out to correlate dough properties with steamed bread quality. Biaxial extension viscosity was positively correlated with texture properties (hardness and chewiness) of steamed bread (r = 0.521–0.685, p < 0.05). Based on the correlation coefficients and the model (r2 = 0.852, p = 0.003) obtained using stepwise multiple regression analysis, the best predictors for specific volume of steamed bread were the maximum resistance to extension of rested dough (r = 0.664, p < 0.01) and total work for breakage of fermented dough (r = 0.662, p < 0.01). Principal component analysis of rheological properties of fermented dough and flour characteristics provided more useful information for discriminating wheat flour quality and help breeders to select most convenient wheat flour for the steamed bread making. 相似文献
12.
The effects of aging from t = 0–108 h at two different temperatures (4 and 25 °C) on the non-linear viscoelastic rheological properties and secondary protein structure of hard wheat flour dough (HWD) were investigated using large amplitude oscillatory shear tests (LAOS) coupled with Fourier transform infrared spectroscopy (FTIR) and SDS-PAGE. Storage (G') and loss (G'') moduli rapidly decreased during aging at 25 °C. Subjecting HWD to progressively longer aging times at 25 °C caused dramatic changes in the non-linear viscoelastic properties demonstrated by strain softening (negative values of e3/e1) and shear thinning (negative values of v3/v1) behavior. Elastic Lissajous curves of the unaged control dough showed clockwise turn and wider elliptical trajectories as dough aging proceeds especially at higher temperatures. Other non-linear LAOS parameters (G'M-G''L, η'M-η'L, S and T) supported that aging process at higher temperature caused a progressive change in dough structure from strain stiffening to strain softening behavior while dough samples aged at 4 °C showed fairly close behavior with the control dough sample. FTIR spectra indicated that the relative content of β-sheet and β-turn structures decreased while the content of α-helix structure increased for all dough samples as a result of dough aging. SDS-PAGE results supported the breakdown of high molecular weight (HMW) and low molecular weight (LMW) glutenin subfractions. Aging at the higher temperature of 25 °C decreased the HMW/LMW ratio from 0.77 to 0.59, while the ratio was 0.73 for the dough aged at 4 °C which is fairly close to the control sample. Our results show that the degradation rate of gluten/starch network was triggered by aging at higher temperature, longer aging time, and natural fermentation which resulted in increasing acidity and increase in endogenous proteolytic and amylolytic activity, and also increasing gluten solubility and break down of intermolecular disulfide bonds at acid pH. 相似文献
13.
Subajiny VELUPPILLAI Ketheeswary NITHYANANTHARAJAH Seevaratnam VASANTHARUBA Sandrasegarampillai BALAKUMAR Vasanthy ARASARATNAM 《水稻科学》2010,17(1):51-59
The feasibility of partially replacing wheat flour with malted rice flour in bread making was evaluated in several formulations, aiming to find a formulation for the production of malted rice-wheat bread with better nutritional quality and consumer acceptance. The whole grains of a local rice variety (Oryza sativa L. subsp. indica var. Mottaikaruppan) were steeped in distilled water (12 h, 30°C) and germinated for 3 days to obtain high content of soluble materials and amylase activity in bread making. The quality of bread was evaluated by considering the physical and sensorial parameters. When the wheat flour was substituted with malted rice flour, 35% substitution level and the malted rice flour from 3 days of germination was the best according to the physical and sensory qualities of bread. The quality of bread was improved by the addition of 20 g of margarine, 20 g of baking powder and 20 g of yeast in 1 kg of flour. Among different ratios of yeast and baking powder, 2:1 was the best. Bread improver containing amylases and oxidizing agents at the concentration of 40 g/kg was selected as the best concentration. When comparing the final formulation made in the bakery with wheat bread, malted rice-wheat bread contains more soluble dietary fiber (0.62%), insoluble dietary fiber (3.95%), total dietary fiber (4.57%) and free amino acid content (0.64 g/kg) than those in wheat bread (0.5%, 2.73%, 3.23% and 0.36 g/kg, respectively). 相似文献
14.
为更广泛利用黑小麦,用优质强筋小麦运旱115、运旱618的面粉分别与中筋黑小麦运黑101的面粉进行搭配,研究了不同复配粉的面筋指数变化规律和面包加工特性。结果表明,两个优质强筋小麦粉与中筋黑小麦运黑101复配,可以显著改善中筋黑小麦运黑101的面筋指数、抗延阻力、稳定时间;优质强筋小麦粉与运黑101面粉占比相等时,运旱115、运旱618对运黑101的面筋指数改进率较大,分别为10.57%、10.51%。综合分析对面包品质影响较大的硬度、胶黏性、咀嚼性等质构指标,发现运旱115与运黑101配粉比例为8∶2、5∶5时,运旱618与运黑101配粉比例为7∶3、6∶4时,运黑101面粉品质改善显著,用其制作的面包体积大、品质好。 相似文献
15.
Vicki J. Killion 《Journal Of Agricultural & Food Information》2013,14(1):77-82
ABSTRACT Maize gruel was prepared by traditional and improved methods. Improved maize gruel (IMGF) took less time (24 hours) than traditional maize gruel (TMGF) (72 hours) to prepare. TMGF was lower in protein (6.7%) than IMGF (11.4%). A higher yield was observed for IMGF (99.4%) than for TMGF (60%). IMGF substituted with okra meal flour at 40% yielded the highest protein (21.9%), fat (13.08%), crude fibre (9.04%), and ash (2.60%). Higher amylograph peak viscosity was noted for TMGF as compared to other ogi (maize gruel) samples. Sensory scores indicate that none of the samples were rejected, although lower scores were given to fortified ogi samples as the level of fortification was increased. The improvement in the nutritional attributes of maize gruel samples will reduce the problem of protein malnutrition. 相似文献
16.
面粉的两种主要成分淀粉和蛋白质对面制品的流变特性有显著的影响。概括了影响淀粉糊流变特性的几个主要因素:蒸煮温度、搅拌时间、搅拌速度、pH值以及淀粉糊浓度、盐和蔗糖的作用,同时讨论了面筋蛋白对面制品流变特性的影响机理。 相似文献
17.
陈松波 《仲恺农业技术学院学报》1990,(1)
在食品加工中,各单元操作已使用各种形式的操作单机。如和面机、搅拌机、打蛋机、绞肉机等。目前,像饮食行业和职工食堂等部门,由于加工批量不大,采用单机操作,则机械利用率低,且投资大,管理和使用不方便。如果用一台具有多种功能的加工机代替各种单机,是有一定的经济和实用价值的。因此,我国已开始研制多种功能食品加工机。为了交流信息,加速多功能食品加工机的发展,本文介绍一种具有和面、拌肉馅、打蛋花、打奶酪、绞肉末、挤面条等多种功能的食品机。 并扼要说明该机的整体结构和传动系统,及进行不同作业时所选用的各种附件的结构和工作原理。 相似文献
18.
This study aimed at elucidating SS-bonds of HMW-gliadins (HGL) from wheat with the focus on terminators of glutenin polymerisation. HGL from wheat flour extracts non-treated or treated with the S-alkylation reagent N-ethylmaleinimide (NEMI) were compared. HGL from wheat flour Akteur were isolated, hydrolysed with thermolysin and the resulting peptides pre-separated by gel permeation chromatography and analysed by liquid chromatography/mass-spectrometry using alternating electron transfer dissociation/collision-induced dissociation. Altogether, 22 and 28 SS-peptides from samples without and with NEMI treatment, respectively, were identified. Twenty-six peptides included standard SS-bonds of α- and γ-gliadins, high-molecular-weight and low-molecular-weight glutenin subunits. Eleven SS-bonds were identified for the first time. Fifteen peptides unique to HGL contained cysteine residues from gliadins with an odd number of cysteines (ω5-, α- and γ-gliadins). Thus, gliadins with an odd number of cysteines, glutathione and cysteine had acted as terminators of glutenin polymerisation. Decisive differences between samples without and with NEMI treatment were not obvious showing that the termination of polymerisation was already completed in the flour. The two HGL samples, however, were different in the majority of ten peptides that included disulphide-linked low-molecular-weight (LMW) thiols such as glutathione and cysteine with the former being enriched in the non-treated HGL-sample. 相似文献
19.
Dough rheological properties and noodle-making performance of non-waxy whole-wheat flour (WWF) with partial- or full-waxy (PW- or FW-) WWF substitution were studied. The substitution levels were 0, 250, 500, 750, and 1000 g/kg, respectively. FW-WWF reduced the peak viscosity and pasting temperature of WWF blends as its substitution level was increased due to its higher proportions of B-type starch granules and short amylopectin chains, while PW-WWF increased peak viscosity with the increasing substitution level because of its higher amylopectin content. As demonstrated by farinograph and rheometer measurements, FW-WWF interfered with gluten development because of the increased competition for water by arabinoxylans and amylopectin; however, PW-WWF enhanced dough strength due primarily to its increased protein content. Consequently, FW-WWF showed a detrimental effect on cooked noodle texture as the cooked noodle hardness was reduced by 50% at the 1000 g/kg substitution level. In contrast, PW-WWF enhanced noodle integrity and elasticity by increasing cooked noodle cohesiveness and resilience by 10.1% and 14.8%, respectively, at the 1000 g/kg substitution level. The results suggest that with waxy WWF substitution, the changes in starch composition, arabinoxylans, and protein content could modify the interactions among flour components and influence the quality characteristics of noodle products. 相似文献
20.