• Title/Summary/Keyword: Wheat Shorts

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Net energy and its establishment of prediction equations for wheat bran in growing pigs

  • Zhiqian, Lyu;Yifan, Chen;Fenglai, Wang;Ling, Liu;Shuai, Zhang;Changhua, Lai
    • Animal Bioscience
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    • v.36 no.1
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    • pp.108-118
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    • 2023
  • Objective: The objective of this experiment was to determine the net energy (NE) value of 6 wheat bran and 1 wheat shorts by indirect calorimetry and establish the NE prediction equations of wheat bran fed to growing barrows. Methods: Forty-eight growing barrows (28.5±2.4 kg body weight) were allotted in a completely randomized design to 8 dietary treatments that included a corn-soybean meal basal diet, 6 wheat bran diets and 1 wheat shorts diet. The inclusion level of wheat bran or wheat shorts in diets is 30%. Results: The addition of wheat bran reduced the apparent total tract digestibility (ATTD) of nutrients (p<0.05). The ATTD of gross energy, crude protein (CP) and dry matter (DM) in the wheat shorts were greater than that in the wheat bran. Addition of wheat bran or wheat shorts had no effect on total heat production and fasting heat production. The NE of wheat bran was negatively correlated with neutral detergent fiber (r = -0.84; p<0.05) and acid detergent fiber (r = -0.83; p<0.05), while it was positively correlated with CP (r = 0.92; p<0.01). The NE values of wheat bran ranged from 6.79 to 8.15 MJ/kg DM, and the NE value of wheat shorts was 12.47 MJ/kg DM. The ratio of NE to metabolizable energy for wheat bran fed to growing pigs was from 66.0% to 71.7%, whereas the value for wheat shorts was 83.7%. Conclusion: The NE values of wheat bran ranged from 6.79 to 8.15 MJ/kg DM, and the NE value of wheat shorts was 12.47 MJ/kg DM. The NE value of wheat bran can be well predicted based on energy content and proximate analysis.

Prediction of Digestible and Metabolizable Energy Content and Standardized Ileal Amino Acid Digestibility in Wheat Shorts and Red Dog for Growing Pigs

  • Huang, Q.;Piao, X.S.;Ren, P.;Li, D.F.
    • Asian-Australasian Journal of Animal Sciences
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    • v.25 no.12
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    • pp.1748-1758
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    • 2012
  • Two experiments were conducted to evaluate the effects of chemical composition of wheat shorts and red dog on energy and amino acid digestibility in growing pigs and to establish prediction models to estimate their digestible (DE) and metabolizable (ME) energy content and as well as their standardized ileal digestible (SID) amino acid content. For Exp. 1, sixteen diets were fed to thirty-two growing pigs according to a completely randomized design during three successive periods. The basal diet was based on corn and soybean meal while the other fifteen diets contained 28.8% wheat shorts (N = 7) or red dog (N = 8), added at the expense of corn and soybean meal. Over the three periods, each diet was fed to six pigs with each diet being fed to two pigs during each period. The apparent total tract digestibility (ATTD) of energy in wheat shorts and red dog averaged 75.1 and 87.9%. The DE values of wheat shorts and red dog averaged 13.8 MJ/kg (range 13.1 to 15.0 MJ/kg) and 15.1 MJ/kg (range 13.3 to 16.6 MJ/kg) of dry matter, respectively. For Exp. 2, twelve growing pigs were allotted to two $6{\times}6$ Latin Square Designs with six periods. Ten of the diets were formulated based on 60% wheat shorts or red dog and the remaining two diets were nitrogen-free diets based on cornstarch and sucrose. Chromic oxide (0.3%) was used as an indigestible marker in all diets. There were no differences (p>0.05) in SID values for the amino acids in wheat shorts and red dog except for lysine and methionine. Apparent ileal digestibility (AID) and SID values for lysine in different sources of wheat shorts or red dog, which averaged 78.1 and 87.8%, showed more variation than either methionine or tryptophan. A stepwise regression was performed to establish DE, ME and amino acid digestibility prediction models. Data indicated that fiber content and amino acid concentrations were good indicators to predict energy values and amino acid digestibility, respectively. The present study confirms the large variation in the energy content and amino acid digestibility in wheat shorts and red dog, and describes the factors that influence this variation and presents equations based on chemical composition that could probably be used to predict the DE and ME values as well as the amino acid digestibility of wheat shorts and red dog.

A Study on Rheological Properties of Dough and Whole Wheat Bread-Baking Test of Wheat Variety 'Cho-Kwang' (한국산(韓國産) 밀품종(品種)"조광"의 물리적(物理的) 성질(性質)과 전밀빵 제조(製造)에 관(關)한 연구(硏究))

  • Rhee, Chul
    • Korean Journal of Food Science and Technology
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    • v.15 no.3
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    • pp.215-219
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    • 1983
  • Rheological properties of the dough made from milled wheat products of various particle size, i.e., wheat shorts, girls and flour, and their effect on the loaf-volume potential of whole wheat bread were investigated in this study. One Korean wheat variety 'Cho-Kwang' was tested for suitability in whole wheat bread. The percent ash and protein content of the milled wheat products were 2.3% and 13.7% respectively. Ranges of 7.3, 5.6 and 4.8 mixograph peak-height were observed in Fraction 1(wheat flours), Fraction 2 (wheat girts) and Fraction 3(wheat shorts), respectively. Dought stability of Fraction 1 did not decreased appreciably as compared to that of commercial first grade baker's flour. Bread-baking test employing a standard formula showed that the wheat grits (0.2-0.5 mm in diameter) appeared to be the limit beyond which a rapid decrease in loaf-volume potential was noted. Optimum loaf volume and crumb characteristics were obtained in 80% wheat grits/20% wheat flour blend.

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A Note on Milling Quality of Foreign Wheat Varieties (외국산(外國産)밀의 제분성(製粉性)에 관(關)한 연구(硏究))

  • Kim, Hi-Kap
    • Korean Journal of Food Science and Technology
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    • v.9 no.3
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    • pp.225-228
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    • 1977
  • Eight kinds of foreign wheat were used for the assessment of milling quality, and the following results were obtained. (1) Straight and patent flour extractions were, $3{\sim}5%$ and $8{\sim}11%$ lower in Australian wheat than American & Canadian wheats, respectively. (2) There were no significant differences in clear flour extraction between the clases of wheat. (3) Flour extraction from impact finisher was $5{\sim}6%$ higher in Australian wheat than American and Canadian wheats. (4) Shorts yields were $6{\sim}8%$ in American and Canadian wheats and $14{\sim}16%$ in Australian wheat. (5) Bran yields were $2{\sim}6%$ lower in Australian wheat than American and Canadian wheats.

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Effects of Rumen Protected Choline on In vitro Ruminal Fermentation and Milk Production and Its Composition in Lactating Cows (반추위 보호 Choline이 In vitro 반추위 발효특성과 착유우의 유생산 및 유조성분에 미치는 영향)

  • Park, Byung-Ki;Kim, Byong-Wan;Jang, Hyun-Yong;Shin, Jong-Suh
    • Journal of The Korean Society of Grassland and Forage Science
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    • v.28 no.3
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    • pp.255-264
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    • 2008
  • This study was conducted to evaluate the effects of rumen protected choline on in vitro ruminal fermentation and milk production and its composition in Holstein cows. Experiments were done with three treatment groups, basal diet without any supplement (T1), basal diet+23g/d of mixture of choline and wheat shorts (T2) and basal diet + 25.56 g/d of rumen protected choline (T3). The in vitro ruminal pH and ammonia concentrations were similar for three treatments during all incubation periods except for the in vitro ruminal pH on 3 hr incubation and ammonia concentrations on 9 hr incubation. No significant difference was found in the concentrations of acetate and total-VFA. The propionate and butyrate concentrations were not affected by the rumen protected choline except on 6 hr incubation on which the propionate and butyrate concentrations were intermediate (8.98 mg/dl) and least (3.22 mg/dl), respectively. Higher milk yield and milk fat and lactose were resulted in the rumen protected choline. However, the rumen protected choline did not affect the milk protein, solids not fat, total solids, MUN, somatic cell count. It is concluded that the rumen protected choline can be effective materials to improve the milk production, milk fat and lactose without little change on in vitro ruminal fermentation.