In recent years, there has been an increase in demand of gluten free products that are suitable for people with celiac disease. The present study was carried out to produce gluten free flat bread and biscuits with goo...In recent years, there has been an increase in demand of gluten free products that are suitable for people with celiac disease. The present study was carried out to produce gluten free flat bread and biscuits with good quality. The ingredients under this study were cassava flour, rice flour, extruded soy protein (ESP) and pumpkin powder. Four levels of ESP were used for production of flat bread and biscuits: 2.5%, 5%, 7.5% and 10% for flat bread and 5%, 10%, 15% and 20% levels for biscuits. Results of flat bread samples showed that protein, fat, ash and fiber contents increased in all samples as increasing the level of ESP. Flat bread at level 10% ESP had the highest value of β-carotene. Alkaline water retention capacity (AWRC) at zero time and 24 h of flat bread storage had high values for levels 2.5% and 5% ESP. Water holding capacity (WHC) increased insignificantly by increasing the level of ESP. Color measurements revealed that the lightness decreased and the redness increased with increasing the level of ESP. Sensory evaluation of flat bread revealed that 2.5% followed by 5% ESP level had high score of overall acceptability. Physical properties of biscuits indicated that as the level of ESP increased the diameter, thickness, volume and specific volume decreased. Biscuits sample with 20% ESP had the highest values of protein, fat, ash and fiber but the lowest in total carbohydrates. Also β-carotene and vitamin A content increased in biscuit samples. Caloric values of biscuits in all treated samples were lower than control. Lightness decreased while redness increased with increasing the level of ESP. Data of texture profile analysis (TPA) showed that hardness and adhesiveness (g) increased as ESP level increased. Sensory evaluation of biscuits showed that addition of ESP at 20% level decreased significantly texture score from 9.51 to 6.61 (P < 0.05) but insignificantly affected the other sensory scores.展开更多
为探究大豆分离蛋白(Soy Protein Isolate,SPI)对鲜湿米粉凝胶品质的影响,将SPI以0%、2%、4%质量浓度比例与发酵籼米粉混合,对SPI-发酵籼米混合粉的性质及所制SPI-鲜湿米粉的凝胶品质进行测定,并分析了SPI-鲜湿米粉内部淀粉结构的变化...为探究大豆分离蛋白(Soy Protein Isolate,SPI)对鲜湿米粉凝胶品质的影响,将SPI以0%、2%、4%质量浓度比例与发酵籼米粉混合,对SPI-发酵籼米混合粉的性质及所制SPI-鲜湿米粉的凝胶品质进行测定,并分析了SPI-鲜湿米粉内部淀粉结构的变化。结果表明:随着SPI添加量的增加,SPI-发酵籼米混合粉的糊化黏度增大,崩解值减小,凝胶硬度增大,推断SPI的添加有利于发酵籼米淀粉的凝胶化;进一步测定发现,SPI-鲜湿米粉的硬度、咀嚼性、胶黏性增大,蒸煮吸水率上升,说明添加SPI可提升鲜湿米粉凝胶品质;FT-IR显示,R1047/1022 cm^(-1)峰强度比值增大、R1022/995 cm^(-1)峰强度比值减小,两者比值表示鲜湿米粉内部淀粉短程有序结构和氢键强度增加,即淀粉短程有序性升高,这可能与鲜湿米粉凝胶品质的提升相关。展开更多
文摘In recent years, there has been an increase in demand of gluten free products that are suitable for people with celiac disease. The present study was carried out to produce gluten free flat bread and biscuits with good quality. The ingredients under this study were cassava flour, rice flour, extruded soy protein (ESP) and pumpkin powder. Four levels of ESP were used for production of flat bread and biscuits: 2.5%, 5%, 7.5% and 10% for flat bread and 5%, 10%, 15% and 20% levels for biscuits. Results of flat bread samples showed that protein, fat, ash and fiber contents increased in all samples as increasing the level of ESP. Flat bread at level 10% ESP had the highest value of β-carotene. Alkaline water retention capacity (AWRC) at zero time and 24 h of flat bread storage had high values for levels 2.5% and 5% ESP. Water holding capacity (WHC) increased insignificantly by increasing the level of ESP. Color measurements revealed that the lightness decreased and the redness increased with increasing the level of ESP. Sensory evaluation of flat bread revealed that 2.5% followed by 5% ESP level had high score of overall acceptability. Physical properties of biscuits indicated that as the level of ESP increased the diameter, thickness, volume and specific volume decreased. Biscuits sample with 20% ESP had the highest values of protein, fat, ash and fiber but the lowest in total carbohydrates. Also β-carotene and vitamin A content increased in biscuit samples. Caloric values of biscuits in all treated samples were lower than control. Lightness decreased while redness increased with increasing the level of ESP. Data of texture profile analysis (TPA) showed that hardness and adhesiveness (g) increased as ESP level increased. Sensory evaluation of biscuits showed that addition of ESP at 20% level decreased significantly texture score from 9.51 to 6.61 (P < 0.05) but insignificantly affected the other sensory scores.
文摘为探究大豆分离蛋白(Soy Protein Isolate,SPI)对鲜湿米粉凝胶品质的影响,将SPI以0%、2%、4%质量浓度比例与发酵籼米粉混合,对SPI-发酵籼米混合粉的性质及所制SPI-鲜湿米粉的凝胶品质进行测定,并分析了SPI-鲜湿米粉内部淀粉结构的变化。结果表明:随着SPI添加量的增加,SPI-发酵籼米混合粉的糊化黏度增大,崩解值减小,凝胶硬度增大,推断SPI的添加有利于发酵籼米淀粉的凝胶化;进一步测定发现,SPI-鲜湿米粉的硬度、咀嚼性、胶黏性增大,蒸煮吸水率上升,说明添加SPI可提升鲜湿米粉凝胶品质;FT-IR显示,R1047/1022 cm^(-1)峰强度比值增大、R1022/995 cm^(-1)峰强度比值减小,两者比值表示鲜湿米粉内部淀粉短程有序结构和氢键强度增加,即淀粉短程有序性升高,这可能与鲜湿米粉凝胶品质的提升相关。