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1.
不同品种绿豆淀粉的功能特性比较研究   总被引:1,自引:1,他引:1       下载免费PDF全文
以9个品种绿豆淀粉为研究对象,研究了绿豆淀粉的化学组成及糊化特性、溶解度、膨胀度和冻融稳定性等功能特性,并分析了直链淀粉含量与功能特性的相关性。结果表明,不同品种绿豆淀粉直链淀粉含量不同,其分布范围为33.10%~44.08%;不同品种淀粉糊化特性参数间有明显差异;潍绿4号和中绿1号绿豆淀粉峰值粘度显著高于其他品种(p0.05),安绿8号具有最低破损值(p0.05),毛绿豆和安绿092具有较低的回生值。绿豆淀粉的溶解度和膨胀度与温度有关,均随温度的增加而增大。不同品种绿豆淀粉糊经一次冻融后析水率均较高,随冻融循环次数的增加,析水率均逐渐增大。相关性分析表明,直链淀粉含量与淀粉糊的最终粘度和回生值之间存在显著正相关(r=0.674,r=0.725;p0.05),与膨胀度之间具有极显著负相关关系(r=-0.805,p0.01)。  相似文献   

2.
Presently, rice cultivars are categorized according to amylose content into three groups: low, medium and high amylose content cultivars. The correlation of amylose content with gelatinization properties, retrogradation, and pasting properties of eleven cultivars of Thai rice were investigated. Rice flour was prepared from milled rice by the wet grinding process. Onset (To), peak (Tp) and conclusion (Tc) temperatures of gelatinization, (determined by DSC) were found to be highly positively correlated with amylose levels. This correlation could be used for prediction of amylose content of rice flour. Low amylose starch could also be characterized by low degree of retrogradation (%R). The data obtained from RVA‐viscograms (peak viscosity, breakdown, setback, and pasting temperature) can be used only for characterization of the group of low amylose starches (waxy rice). It was demonstrated that low amylose rice starch provided the highest peak viscosity and breakdown and the lowest setback and pasting temperature among the groups investigated.  相似文献   

3.
两种大米淀粉及其磷酸酯淀粉理化特性的比较研究   总被引:1,自引:1,他引:1  
对比分析2种大米(籼米和粳米)的全粉、淀粉和取代度均为0.068的磷酸酯淀粉的理化特性.粳米的全粉、淀粉和磷酸酯淀粉的膨胀力分别为7.5,10.7,21.6 g/g,分别高于籼米的全粉、淀粉和磷酸酯淀粉的膨胀力(5.8,8.9,17.4 g/g).2种大米淀粉经磷酸酯化后透光率增高,相应淀粉的透光率次之,全粉的透光率最低,籼米的全粉、淀粉和磷酸酯淀粉的透光率分别低于粳米的全粉、淀粉和磷酸酯淀粉的透光率.经快速黏度分析仪测定的糊化特性结果表明,淀粉或变性淀粉膨胀力高,其峰值黏度和崩解值也高,此外,蛋白质含量和直链淀粉含量也极大的影响了淀粉的糊化特性.使用动态流变仪测定的流变特性表明,在相同的温度下,籼米的全粉、淀粉和变性淀粉的储能模量(G')分别比粳米的全粉、淀粉和变性淀粉的储能模量(G')高,对于相同的大米品种,全粉的储能模量(G')最高,变性淀粉的储能模量(G')最低.  相似文献   

4.
夏谷区主栽谷子品种淀粉理化特性研究   总被引:2,自引:0,他引:2  
从夏谷区主栽品种中选取9个谷子品种作为供试材料,对其淀粉的颗粒形态及大小、化学组成、碘蓝值、透光率、冻融稳定性、糊化特性、溶解度与膨胀势及凝沉特性等理化性质进行系统研究。结果表明:小米淀粉颗粒均为单粒,由0.48~2.25μm与3.50~29.32μm两种不同粒径范围的颗粒组成,多呈多角形,少数呈卵圆形,具有清晰可见的偏光十字,品种间淀粉颗粒形态差异明显。直链淀粉含量为2.91%~15.80%,碘蓝值为0.601~0.809,透光率为4.4%~22.3%,析水率为0.77%~62.23%,品种间差异显著。不同品种小米淀粉的糊化特性、溶解度与膨胀势及淀粉糊的凝沉特性也有着明显的差异。因此,可根据不同的加工目的选择不同的谷子品种。  相似文献   

5.
H. J.  An J. M.  King 《Journal of food science》2006,71(7):C437-C441
ABSTRACT:  Pasting characteristics were examined for conventionally or ohmically heated rice starch and rice flours. Brown rice flour showed the greatest cooking stability and least retrogradation potential. Brown rice flour also showed the greatest pasting temperature and lowest peak viscosity, whereas commercial starch had the lowest pasting temperature. Nonstarch components of the brown rice flour, such as fat and protein, may have acted as stabilizers delaying water access into the granules and reducing swelling of the starch. Ohmic heating reduced pasting temperature for commercial rice starch, resulting in a starch that swelled faster. Furthermore, ohmic heating produced better cooking stability in white rice flour 1 and 2 than in the native sample, and caused white rice flour 2 to have less potential for retrogradation than the conventionally heated sample. At lower electric field strength (20 V/cm), ohmic heating resulted in the greatest cooking stable starches compared to higher voltages (40 and 70 V/cm) because more starch granules were disrupted from a longer cooking time, so there were fewer intact granules for pasting. Ohmic heating has been shown to alter rice starch and flour pasting characteristics with an added influence of lipids, proteins, and amylose contents.  相似文献   

6.
Abstract: Rice starch is one of the major cereal starches with novel functional properties. Significant progress has been made in recent years on the characterization of rice starches separated from different rice cultivars. Studies have revealed that the molecular structure and functional properties are affected by rice germplasm, isolation procedure, climate, agronomic conditions, and grain development. Morphological studies (microscopy and particle size analysis) have reflected significant differences among rice starch granule shapes (polyhedral, irregular) and in granule size (2 to 7 μm). Nonwaxy and long‐grain rice starches show greater variation in granular size than the waxy starches. Rice starch granules are smaller than other cereal starches with amylose contents varying from virtually amylose‐free in waxy to about 35% in nonwaxy and long‐grain rice starches. Amylose content appears to be the major factor controlling almost all physicochemical properties of rice starch due to its influence on pasting, gelatinization, retrogradation, syneresis, and other functional properties. Waxy rice starches have high swelling and solubility parameters, and larger relative crystallinity values than nonwaxy and long‐grain starches. However, nonwaxy rice starches have a higher gelatinization temperature than the waxy and long‐grain starches. The bland taste, nonallergenicity, and smooth, creamy, and spreadable characteristics of rice starch make it unique and valuable in food and pharmaceutical applications. This review provides recent information on the variation in the molecular structure and functional properties of different rice starches.  相似文献   

7.
复配粉理化性质与米线质构性质关系的研究   总被引:1,自引:1,他引:1  
将粳米粉与绿豆淀粉按照一定比例进行混合,得到粳米粉和绿豆淀粉的复配粉体系,并测定了复配粉体系的溶胀性质、糊化性质、凝胶质构性质和拉伸性质,研究了复配米粉体系的拉伸性质与米线质构性质的关系。结果表明:随着绿豆淀粉添加量比例的增加,复配米粉体系的总直链淀粉含量、可溶性直链淀粉含量和不溶性直链淀粉含量明显增加,峰值黏度、谷值黏度、末值黏度、硬度也显著性增加,咀嚼性、拉伸强度和表观弹性模量显著增加,85℃下的溶解度和膨润力显著上升;糊化温度显著降低;衰减值和回生值分别比粳米粉高了33.73 RVU和50.60 RVU;与单一体系相比,由复配粉体系制成的米线呈现较好的硬度、弹性、韧性、蒸煮性和物理性质。当绿豆淀粉∶粳米粉为1∶1时,其制得的米粉的质构性质最好。  相似文献   

8.
Physicochemical and functional properties of starches isolated from fifteen grain amaranth cultivars (Amaranthus spp.) produced in China were analysed in this study. Amaranth starches had low but diverse amylose contents, ranging from 4.7% to 12.5%. Wide variation was also found in physicochemical properties, such as swelling power, water solubility index, pasting, thermal and textural properties. Amylose content was significantly correlated with functional properties, including pasting, thermal and textural properties and appeared to be the important determinant for these properties. Correlations among pasting, thermal and textural parameters were also significant. Principal component analysis using 17 variables extracted four principal components that explained 88% of the total variance. The first component represented amylose content, pasting and gel textural properties and explained 59% of the total variance, while the second component represented the thermal properties and accounted for an additional 14.5% of the total variance.  相似文献   

9.
Grain quality attribute tests based on physicochemical, textural, pasting, and in vitro digestion properties of eight different rice cultivars were studied. Basmati varieties showed higher values of amylose content, iodine absorption, blue value, hardness, cohesiveness, pasting temperature, and set back, whereas swelling power, solubility, adhesiveness, peak viscosity, and breakdown values were found to be higher in non-basmati varieties. The release of maltose from basmati rice flour (23.12–25.86 mg/g rice flour) was found to be slower as compared to non-basmati ones (27.43–28.36 mg/g rice flour). Amylose content showed significant correlations with different quality parameters at 5% level of significance.  相似文献   

10.
《Food chemistry》2003,80(1):99-108
Morphological, thermal and rheological properties of starches separated from five rice cultivars (PR-106, PR-114, IR-8, PR-103 and PR-113), varying in amylose content, were studied. Amylose contents of starches separated from PR-103, IR-8, PR-106, PR-114 and PR-113 were 7.83, 15.62, 16.05, 16.13 and 18.86%, respectively. The granular size, measured using a Scanning Electron Microscope, varied from 2.4 to 5.4 μm in all rice starches. PR-103 starch, with lowest average granular size, amylose content and solubility, had the highest swelling power, while PR-113 starch, with the highest average granular size and amylose content had the lowest swelling power. PR-103 starch showed highest transition temperatures, enthalpies of gelatinization, peak height index, range and enthalpies of retrogradation. The retrogradation (%) was observed to be highest in PR-113 starch and lowest in PR-103 starch. The changes in rheological parameters of rice starches during heating were measured using a Dynamic rheometer. PR-113 rice starch showed the highest G′, G″ and breakdown in G′ values, whereas PR-103 starch showed the lowest values for these parameters. Turbidity value of gelatinized pastes from all rice starches progressively increased up to the 3rd day during refrigerated storage, PR-103 starch paste showed the lowest turbidity value and PR-113 starch showed the highest value. The syneresis (%) of starch pastes, from different rice cultivars during storage at 4 °C, was also measured. The syneresis of starch pastes from all rice cultivars, except PR-103, increased with storage. PR-103 starch paste showed negligible syneresis during storage.  相似文献   

11.
Starches isolated from four Kidney bean cultivars (French Yellow, Contender, Master Bean, Local Red) grown in temperate climate were studied for their physico‐chemical, morphological, thermal, pasting, textural and retrogradation properties. Physico‐chemical properties such as composition, amylose content, water absorption capacity, swelling power, syneresis, freeze–thaw stability and light transmittance showed significant differences among starches. Amylose content (36.4–41.7%) showed strong correlations with peak, trough, breakdown, final and setback viscosity, gel hardness, gumminess and chewiness. The starch granule morphology of these starches showed considerable variation when studied by scanning electron microscopy. Starch granules were observed to be round, irregular or elliptical with smooth surfaces. Master Bean starch granules were larger than those of other kidney bean starches. Pasting and textural properties of French Yellow starches were found to be higher than other kidney bean starches. Local Red starches showed the highest gelatinisation transition temperatures, whereas Master Bean starches showed the lowest transition temperatures.  相似文献   

12.
Morphological, viscoelastic, hydration, pasting, and thermal properties of starches separated from 10 different rice cultivars were investigated. Upon gelatinization, the G′ values of the rice starch pastes ranged from 37.4 to 2057 Pa at 25 °C, and remarkably, the magnitude depended on the starch varieties. The rheological behavior during gelatinization upon heating brought out differences in onset in G′ and degree of steepness. The cultivar with high amylose content (Goami) showed the lowest critical strain (γc), whereas the cultivars with low amylose content (Boseokchal and Shinseonchal) possessed the highest γc. The amylose content in rice starches affected their pasting properties; the sample possessing the highest amylose content showed the highest final viscosity and setback value, whereas waxy starch samples displayed low final viscosity and setback value. The onset gelatinization temperatures of the starches from 10 rice cultivars ranged between 57.9 and 64.4 °C. The amylose content was fairly correlated to hydration and pasting properties of rice starches but did not correlate well with viscoelastic and thermal characteristics. The combined analysis of hydration, pasting, viscoelastic, and thermal data of the rice starches is useful in fully understanding their behavior and in addressing the processability for food applications.  相似文献   

13.
ABSTRACT

Five desi (PBG-1, PDG-4, PDG-3, GL-769, and GPF-2) and one kabuli type (L-550) chickpea cultivars were evaluated for their seed mass, volume, hydration capacity, swelling capacity, cooking time, and instrumental textural properties (hardness, cohesiveness, gumminess, and chewiness). Flour was prepared from these chickpea cultivars and various physicochemical and functional properties were determined. The pasting (pasting temperature, peak viscosity, breakdown, and final viscosity) and gelatinization (T o, T p, T c, and ΔH gel) properties of these flours were measured using Rapid Visco Analyzer (RVA) and Differential Scanning Calorimeter (DSC), respectively. Starch was also isolated from chickpea cultivars and evaluated for amylose content, swelling power, solubility, and syneresis values. Physicochemical, cooking, and instrumental textural properties of seeds of different chickpea cultivars were related to physicochemical, gelatinization, and pasting properties of their flours and physicochemical properties of their starches. Selected properties of chickpea seeds were significantly correlated with the properties of their starches and flours. Hardness value of soaked chickpea seeds was positively correlated to cooking time, seed mass, seed volume, hydration, and swelling capacity (p < 0.01). Water solubility index (WSI) of chickpea flours was positively correlated to seed mass, volume, hydration capacity, and hardness value (p < 0.05). Selected instrumental textural parameters of seeds had positive correlation with ΔH gel of flours (p < 0.01). Peak viscosity of flours showed positive correlation to breakdown, final viscosity, bulk density, and negative correlation to cohesiveness of soaked seeds (p < 0.01). Final viscosity showed negative correlation to bulk density and water absorption index (WAI) (p < 0.01) of flours.  相似文献   

14.
Starch is the main component of wheat having a number of food and industrial applications. Thousands of cultivars/varieties of different wheat types and species differing in starch functionality (thermal, retrogradation, pasting and nutritional properties) are grown throughout the world. These properties are related to starch composition, morphology and structure, which vary with genetics, agronomic and environmental conditions. Starches from soft wheat contain high amounts of surface lipids and proteins and exhibit lower paste viscosity, whereas that from hard cultivars contain high proportion of small granules and amylose content but lower gelatinization temperature and enthalpy. Waxy starches exhibit higher‐percentage crystallinity, gelatinization temperatures, swelling power, paste viscosities and digestibility, but lower‐setback viscosity, rate of retrogradation and levels of starch lipids and proteins than normal and high‐amylose starches. Starches with high levels of lipids are less susceptible towards gelatinization, swelling and retrogradation and are good source of resistant starch, while that with high proportion of long amylopectin chains are more crystalline, gelatinize at high temperatures, increase paste viscosity, retrograde to a greater extent and decrease starch digestibility (high resistant and slowly digestible starch and low rapidly digestible starch).  相似文献   

15.
选取豌豆、红豆和绿豆三种样品豆,并分别制备豆全粉、除纤维素豆粉、豆淀粉三种样品,研究它们溶胀度、可溶指数、直链淀粉含量、糊化性、质构性等性质。结果表明,三种样品豆的豆全粉、除纤维素豆粉、豆淀粉的粘度差异较大,其中以豆淀粉粘度最高,除纤维素豆粉次之,豆全粉粘度最低;豆淀粉硬度、胶粘性和咀嚼性高于豆全粉和除纤维素豆粉;随温度升高,三种样品豆的豆全粉、除纤维素豆粉、豆淀粉溶胀度和可溶指数均呈现递增趋势,其中豆全粉可溶指数明显高于除纤维素豆粉和豆淀粉;在较高温度下,豆淀粉溶胀度要高于除纤维素豆粉和豆全粉。  相似文献   

16.
分析不同粒径大小分布对不同淀粉含量全籽粒玉米粉糊化特性的影响,为其品质分析和加工提供参考依据。选取淀粉含量66%~77%的玉米,通过小型实验磨研磨得到不同粒径的全籽粒玉米粉,研究粒径大小分布、主要成分、损伤淀粉等指标对糊化特性的影响。结果表明,玉米粉的粒径大小和分布对其糊化能力、凝胶特性影响明显,特别是小颗粒粒径大小影响明显,但对回生老化特性影响不显著。平均粒径和小颗粒粒径越小、颗粒表面积越大时,越容易糊化,峰值黏度也越大,玉米粉间糊化能力差异越显著,总淀粉越多、脂肪和蛋白越少也越容易糊化,峰值黏度也越大;小颗粒粒径越小、比表面积越大,凝胶抗剪切能力越差,玉米粉间凝胶特性差异越明显,总淀粉和损伤淀粉含量升高、脂肪和蛋白质降低,也降低凝胶抗剪切能力;粒径大小与分布对玉米粉回生老化特性影响不显著,总淀粉和直链淀粉增加、脂肪减少,提高凝胶回生能力。  相似文献   

17.
Starch gelatinization is important in food processing and industrial use. Granule swelling and gelatinization temperature of 11 starches from different plants were investigated in situ using hot stage microscopy during heating. The amylose content, swelling power, pasting temperature and thermal property of these starches were also measured. The results showed that hot stage microscopy was suitable for measuring granule swelling and the gelatinization temperature of starch during heating. The sectional area swelling percentage of starch granules measured using hot stage microscopy was significantly positively correlated with the swelling power. The gelatinization temperature measured using hot stage microscopy was significantly positively correlated with the pasting temperature and with the thermal property for all 11 starches. For rice starches with the same crystallinity and similar size, the gelatinization temperature was negatively correlated with the amylose content and positively correlated with the swelling power and the sectional area swelling percentage at 95°C.  相似文献   

18.
Starches from two cultivars (Bola and Dik) of innala tubers (Solenostemon rotundifolius) grown in the same location and under identical environmental conditions in Sri Lanka was isolated and some of the characteristics determined. The yield of starch from both cultivars was 16.0% on initial tuber weight. The shape of the granules in both cultivars was dome shaped and hemispherical with 4–5 slightly concaved facets. Pores were found randomly distributed over the surface of both starch granules. The amylopectin branch chain length distribution was nearly similar for both starches. However, the starches differed with respect to granular swelling, amylose leaching, susceptibility towards acid and enzyme hydrolysis, gelatinization characteristics, pasting properties and retrogradation kinetics. The results showed that differences in amylose content, lipid complexed amylose chains, relative crystallinity and extent of interaction between amylose chains in the amorphous regions of the granule had a substantial impact on the observed differences in physicochemical properties.  相似文献   

19.
为了改善黑米粉的凝胶特性,分别将绿豆淀粉、马铃薯淀粉和玉米淀粉与黑米粉进行复配。对复配体系的糊化特性及凝胶质构特性进行测定,并结合低场核磁共振分析仪、傅里叶变换红外光谱和X射线衍射仪进一步分析复配体系的分子结构特性。结果表明:随着淀粉浓度的增加,淀粉-黑米粉复配体系的峰值黏度均显著增加,糊化时间和温度降低。绿豆淀粉和马铃薯淀粉显著增强了复配体系的持水力和膨润力,马铃薯淀粉和玉米淀粉显著降低了复配体系的溶解度。三种淀粉均可以促进复配体系凝胶网络结构的形成,改善凝胶的质构特性,包括凝胶的硬度、弹性、咀嚼性和回复性。此外,三种淀粉增强了复配体系淀粉链间的氢键相互作用,降低了凝胶的持水性,增强了体系的分子短程结构有序性和相对结晶度。上述研究表明,三种淀粉都可以改善黑米凝胶的品质,且绿豆淀粉的改善效果更佳。  相似文献   

20.
8个品种甘薯淀粉的理化性质及其相关性分析   总被引:1,自引:0,他引:1  
以8个品种甘薯淀粉为研究对象,研究了甘薯淀粉的颗粒形态、粒径大小和结晶特性等结构特性,糊化特性、凝胶质构、溶解度、膨胀度和冻融稳定性等功能特性,并分析了甘薯淀粉结构与功能特性间的相关性。结果表明,不同品种甘薯淀粉的直链淀粉含量不同,其颗粒形态在不同品种间没有明显差异,均具有典型的A型衍射图谱;淀粉粒径大小和糊化参数在不同品种间差异明显。甘薯淀粉的溶解度和膨胀度与温度有关,均随温度的上升而增大。相关性分析表明,直链淀粉含量与回生值、硬度、胶着性、咀嚼性、析水率均呈显著正相关(r=0.807,0.721,0.722,0.734,0.803,P<0.05),与凝胶回复性呈显著负相关(r=-0.832,P<0.05)。平均粒径与内聚性、膨胀度呈显著负相关(r=-0.762,-0.775,P<0.05)。此外,甘薯淀粉糊的回生值与凝胶硬度、胶着性和咀嚼性均呈显著正相关(P<0.05),而与内聚性呈显著负相关(P<0.05)。本研究结果可为甘薯淀粉的精深加工和具体应用领域的甘薯淀粉选择提供一定的科学依据。  相似文献   

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