In the Anzunbaengi (Triticum aestivum) whole wheat flour mixture group, some herbs (A [white], B [yellow], C [black], D [blue], and E [red]) were added. The physicochemical properties were compared to the strong flour and whole wheat flour mixture groups. The dry gluten content of the control group (strong flour) was 13.5±0.4%, and the content in the whole wheat flour test group was slightly lower in value than the control group. The final viscosity, breakdown, and setback values of the dough were 248.4±0.8, 104.8±0.9, and 103.1±2.9 RVU, respectively. The breakdown was significantly different in the control and whole wheat flour groups. The setback value of the dough was increased by 30 RVU in the whole wheat flour test group compared to the control group by 103.1±2.9 RVU, but there was no significant difference between the test group samples. The consistency of the control dough was 500±10 FU, and the whole wheat flour test group was significantly increased to 585±10~599±10 FU, respectively. The absorption rate was about 2% higher in the whole flour test group than in the control group (66.2±0.3%). The pH of the control paste gradually decreased with fermentation time, and the results of whole wheat flour test group were similar (5.78±0.12~5.88±0.12). As the fermentation time increased, the volume of dough was increased and the result was slightly lower in the whole wheat flour test group than in the control group.
본 연구에서는 냉동저장에 따른 제빵용 밀가루 반죽의물리적 특성 변화를 분석하기 위하여, 냉동생지를 제조 후2주간 -20oC에서 냉동 저장하면서 신장특성, 텍스처, 부피,색상 등의 품질 특성을 측정하고 이를 냉동저장을 하지 않은 대조구와 비교하였다. Extensograph를 활용하여 냉동저장한 밀가루 반죽은 신장도와 신장저항도가 증가하였으며 R/E도 증가함을 확인하였다. 냉동생지를 이용하여 빵을제조한 경우 빵의 부피는 감소하고, 이에 따라 경도는 증가하였고 대조구와 비교하여 어두운 표면이 관찰되었다. 이러한 본 연구의 결과는 냉동 저장 반죽을 이용한 제품제조 시 냉동생지의 물리학적 특성을 파악하여 그 품질을 개선 및 보완하는데 필요한 기초 자료로 활용 될 수 있을 것으로 기대된다.
The effects of barnyard millet (Echinochloa spp.) content (10~30%) on wheat flour dough and noodle properties were investigated. As the amount of barnyard millet increased, the particle size and ash content of mixed flour increased, while lightness tended to decrease. The gelatinization characteristics of millet flour showed higher peak viscosity, holding strength, final viscosity, and setback compared with wheat flour. There was significant positive correlation between protein content and sedimentation volume, as well as between protein content and water absorption. As the amount of barnyard millet increased, hardness, springiness and cohesiveness of wet noodles tended to decrease. From the results of sensory evaluation, composite flours (addition up to 20% barnyard millet) were rated with a quality score for taste and overall acceptance which was comparable with the control flour.
In order to economically utilize dough with B. longum, B. infantis and B. brevis as a bread improver, aerotolerance, α-galactosidase activity, organic acids, farinograph and extensograph of dough were investigated. In aerotolerance of Bifidobacterium sp., B. longum was highest among tested starters, followed by B. infantis. The α-galactosidase activity was highest in the B. longum among tested starters. In organic acids, the contents of lactic acid and acetic acid were the highest in the among tested starters, followed by B. infantis. In farinograms of dough, water absorption and peak time were highest in the B. brevis among tested dough. Extensogram showed that the area increased remarkably in B. longum and B. infantis at 135min of fermentation. Extensibility and resistance to extension of dough were highest in the B. infantis among the dough, followed B. longum.
본 연구는 국내 밀 품종의 국수 색깔 및 이와 관련된 종실 및 밀가루 특성 평가를 통하여 국수 면대 색깔 향상을 위해 선발에 이용할 수 있는 방법을 개발하고, 특히 철함량이 국수면대 밝기에 미치는 영향을 평가하여 영양학적으로 우수한 철 고함유 계통 선발을 위한 간이검정법의 적용을 위해 수행하였다. 국내 밀 품종의 밀가루 밝기는 회분(r =-0.634, P<0.01), 단백질 함량(r = -0.635, P<0.01)및 총 폴리페놀함량(r = -0.493, P<0.05)과 부의 상관을 나타내었다. 면대 색깔은 밀가루 명도(r = 0.684, P<0.001)와 정의 상관을 보였고, 종실특성에서 리터중, 천립중, PPO 활성 및 총 폴리페놀 함량과는 부의 상관을 보였다. 또한 밀가루 특성에서 회분, 단백질 함량과 총 폴리페놀함량은 면대 밝기와 부의 상관을 보였고, 연차간 및 품종간 변이에 영향을 받는것으로 나타났다. 철은 밀가루 색 및 국수 면대 밝기와 부의상관을 나타냈고, 간이검정법으로 Potassium hexacyanoferrate(II) trihydrate(PHT) 처리를 한 결과 푸른색으로 염색되었다. 종실을 PHT로 염색하여 측정한 색도와 종실의 철함량은 상관을 보이지 않았으나, 종실을 분쇄한 통밀가루에서는 PHT로 염색된 통밀가루의 적색도(r = -0.665, P<0.001)와 황색도(r = -0.658, P<0.001)와 부의 상관을 나타내었다. 또한 PHT로 염색된 밀가루의 밝기는 종실의 철함량(r = -0.640, P<0.01)과 부의 상관을 나타내었다.
Allelic variations in glutenin and puroindolines of 26 Korean wheat cultivars were evaluated to determine their effects on the physicochemical properties of flour and quality of white salted noodles. Cultivars carrying Pina-D1b and Pinb-D1b exhibited a coarser particle size of wheat flour and a higher ash and damaged starch content than those with Pina-D1a and Pinb-D1a. Glu-B1b, Glu-D1f, Glu-B3d and Pina-D1a alleles exhibited lower protein content than other alleles. Glu-A1c, Glu-B1b, Glu-D1f Glu-B3d, Glu-B3i and Pinb-D1b alleles appeared to be related to a lower SDS-sedimentation volume than other alleles. In dough rheological properties, Glu-A1a and Glu-D1d alleles showed a longer mixing time on the mixograph and maximum dough height but Glu-A3e and Glu-B3i alleles had a lower mixing time on the mixograph and a lower maximum dough height than other alleles at Glu-1 and Glu-3 loci. Regarding the quality of white salt noodles, about 10% of the variations in the hardness of cooked noodles were explained by Glu-A1 and Glu-B3 loci. Hardness rankings of cooked noodles were Glu-A1a > Glu-A1c > Glu-A1c at the Glu-A1 locus. Glu-B3h showed higher cooked noodle hardness (5.10 N) than other alleles at the Glu-B3 locus (< 4.66 N).
Whole grain wheat bread and bakery products is highly considered as a functional food due to the high amount of vitamins, minerals, and dietary fiber in whole wheat flour. However, as the lower end-use properties of whole wheat products limit consumer selection, it is required to measure the functionality of whole wheat flour. Thus, it is observed the fermentation properties of bread dough from the composite flour of whole grain and white wheat flour. Whole grain cv. Chokyeong developed in the NICS was ground using a hammer mill with 0.5 mm sieve. The composite flour was prepared by substituting wheat flour with whole grain flour at 15, 30, 45% levels. Breads were prepared using the 100 g composite flour according to a basic straight-dough mehtod (AACC 10-10A) with slight modification. A rheofermentometer was used to measure the maximum dough height (Hm) and the maximum gas formation (H’m) during fermentation. Also, total CO2 production was recorded. The Hm decreased from 38.8 to 27.5 (mm) with increasing whole wheat flour from 15 to 45%. Whereas, the H’m was increased from 61.7 to 60.8 (mm) with whole wheat flour increment. Total CO2 production was also decreased with increasing whole wheat flour ranging 1312∼1164 (ml). The fermentation results could be useful to partly predict the effect of substituting whole wheat flour on the end-use quality of pan-breads.
Allelic variations in glutenin and puroindolines of Korean wheat cultivars evaluated to determine the effects of allelic variations on physico-chemical properties of flour and qualities of white salted noodles. In grain hardness and flour yield, Pinb-D1b had higher hardness index and flour yield than Pinb-D1a alleles. Glu-B1b and Glu-D1f also had lower hardness index than other alleles at the same locus and Glu-A1c, Glu-A3e and Glu-B3i alleles showed lower flour yield than other alleles. In flour compositions, Pina-D1b and Pinb-D1b showed higher particle size, ash and damaged starch content and lower lightness of wheat flour than Pina-D1a and Pinb-D1a. Glu-A1c, Glu-B1b, Glu-D1f, Glu-B3d and Glu-B3i showed lower particle size of flour than other alleles at Glu-1 and Glu-B3 locus. Korean wheats with Glu-B1f, Glu-D1a and Glu-B3b alleles had higher damaged starch content and lower lightness of flour than wheats other alleles at the same locus. Glu-B1b, Glu-D1f, Glu-B3d and Pina-D1a showed lower protein content and Glu-A1c, Glu-B1b, Glu-D1f Glu-B3d, Glu-B3i and Pinb-D1b showed lower SDS-sedimentation volume than other alleles. Hardness of cooked noodles ranked as Glu-A1a > Glu-A1c > Glu-A1c at Glu-A1 locus. Glu-B3h showed higher hardness of cooked noodles (5.10 N) than other alleles at Glu-B3 locus (< 4.66 N).
식물성 단백질의 주요 급원이며 isoflavone계의 우수한 생리 활성 물질을 함유하고 있는 대두를 첨가해서 소비자의 기호성 및 기능성을 갖춘 대두 혼합 식빵의 개발을 시도하였다. 대두는 증자하여 열풍 건조하고 분쇄한 후 분말로 만들어서 소맥분에 0, 5, 10, 20, 30% 되게 각각 첨가하여 반죽을 제조하여 제빵 특성을 조사하였다. 제빵 실험 결과에서 대두분을 10% 까지 첨가해도 좋을 것으로 판단되었다. 파리노그래프의 결과에서 보면 대두분
본 연구에 세는 제빵용 소맥분의 손상전분 함량을 비교 분석하여 최적의 작업조건 설정과 제빵 품질을 향상시킬 목적으로 손상전분 함량을 각각 달리하여 반죽의 물리적 특성 및 제빵 적성을 검토하였다. DNS와 CWRS 및 SW 등의 소맥을 제분하여 손상전분 함량 6.5%, 8.2%, 9.0%, 9.5% 및 10.5%를 함유한 시료로 제조한 반죽의 물리적 및 이화학적 특성인 farinogram, extensogram, amylogram 등을 조사하였으며
우리밀 생산농가의 소득증대와 소비촉진을 위한 연구로써 국내 육성 11개 밀품종인 조광밀, 그루밀, 은파밀, 탑동밀, 우리밀, 올그루밀, 알찬밀, 고분밀, 금강밀, 서둔밀, 수원 265호와 수입밀인 DNS Dark Northern Spring Wheat) 및 ASW (Australian Standard White) 등에 대하여 반죽특성을 살펴보았다. 밀가루 반죽의 점착성은 조광밀이 81.8g으로 가장 컸으며, 국산밀의 평균이 54.0 g, 수입밀