数字农科院2.0

The Feasibility Of Enzyme Hydrolysate Gross Energy For Formulating Duck Feeds

文献类型: 外文期刊

作者: Wei, J; Xie, M; Tang, J; Wu, YB; Zhang, Q; Hou, SS

作者机构:

关键词: Duck Feeds; Enzyme Hydrolysate Gross Energy; Feasibility; Correlation; Requirement

期刊名称: POULTRY SCIENCE

ISSN:

年卷期: 2020 年 99 卷 8 期

页码:

收录情况: JCR(2021版)

摘要: Two experiments were designed to investigate the feasibility of enzyme hydrolysate gross energy (EHGE) for formulating duck feeds. In experiment 1, six mixed diets and 6 experimental diets (compound feeds) with 20% CP were formulated, and their EHGE, AME, and TME were determined so as to analyze the correlation between EHGE and AME, TME. In experi-ment 2, six experimental diets with different EHGE levels were further arranged to determine the EHGE require-ment for Pekin ducks from hatch to 21 D of age. A total of 384 freshly hatched ducklings was randomly divided into 6 experimental treatments, each treatment containing 8 replicates with 8 ducks per replicate. The results showed that there were a linear correlation between EHGE and AME (r = 0.998, P < 0.01), TME (r = 0.997, P < 0.01) for 6 mixed diets, and the regression models were AME = 0.996 x EHGE-1.062 (R-2 = 0.996, P < 0.01), TME = 0.997 x EHGE+0.304 (R-2 = 0.995, P < 0.01). For the 6 experimental diets, EHGE was also positively correlated with AME (r = 0.983, P < 0.01), TME (r = 0.984, P < 0.01), and the regression models were AME = 1.2054 x EHGE-3.180 (R-2 = 0.967, P < 0.01), TME = 1.2054 x EHGE-1.783 (R-2 = 0.967, P < 0.01). According to the broken-line model and optimal BW, the EHGE requirement for ducks from hatch to 21 D of age was 2,937 kcal/kg (calculated value), 3,182 kcal/kg (determined value). In conclusion, EHGE could be used to predict the AME and TME values for mixed diets and compound feeds based on established regression models, and the simulated digestion method in vitro has the po-tential for effective energy evaluation and formulation for duck feeds.

分类号:

  • 相关文献

[1]The Response Of Performance In G.rower And Finisher Pigs T o Diets Formulated To Different Tryptophan To Lysine Ratios. Liu, JB, Yan, HL, Cao, SC, Liu, J, Li, ZX, Zhang, HF. 2019

[2]Growth Performance, Nutrient Digestibility, And Slaughter Traits Of Male Fattening Lambs Under Different Feeding Standards. Ma, T, Wan, F, Yang, D, Deng, KD, Yang, KL, Diao, QY. 2019

[3]Interactions Of Dietary Protein And T.hreonine On Growth Performance I n Pekin Ducklings From 1 To 14 Days Of Age. Jiang, Y, Zhu, YW, Xie, M, Tang, J, Wen, ZG, Qiao, SY, Hou, SS. 2018

[4]An Optimal Dietary Zinc Level O.f Brown-Egg Laying Hens F ed A Corn-Soybean Meal Diet. Qin, SZ, Lu, L, Zhang, XC, Liao, XD, Zhang, LY, Guo, YL, Luo, XG. 2017

[5]Effects Of Dietary Energy And Methionine On Growth Performance And Carcass Traits Of Growing Pekin Ducks From 15 To 42 Days Of Age. Wu, YB, Tang, J, Xie, M, Zhao, R, Huang, W, Zhang, Q, Hou, SS. 2019

[6]Effects Of Dietary Energy And L.ysine Levels On Growth P erformance And Carcass Yields Of Pekin Ducks From Hatch To 21 Days Of Age. Wen, ZG, Rasolofomanana, TJ, Tang, J, Jiang, Y, Xie, M, Yang, PL, Hou, SS. 2017

[7]Effects Of Dietary Supplementation With Selenium And Vitamin E On Growth Performance, Nutrient Apparent Digestibility And Blood Parameters In Female Sika Deer (Cervus Nippon). Bao, K, Wang, XX, Wang, KY, Yang, YH, Li, GY. 2020

[8]Threonine Supplementation Reduces Dietary Protein A.nd Improves Lipid Metabolism I n Pekin Ducks. Jiang, Y, Tang, J, Xie, M, Wen, ZG, Qiao, SY, Hou, SS. 2017

[9]Dietary Non-Phytate Phosphorus Requirement Of B.roilers Fed A Conventional C orn-Soybean Meal Diet From 1 To 21 D Of Age. Liu, SB, Liao, XD, Lu, L, Li, SF, Wang, L, Zhang, LY, Jiang, Y, Luo, XG. 2017

[10]Effects Of Dietary Zinc Levels O.n The Growth Performance, O rgan Zinc Content, And Zinc Retention In Broiler Chickens. Zhang, TY, Liu, JL, Zhang, JL, Zhang, N, Yang, X, Qu, HX, Xi, L, Han, JC. 2018

[11]Effects Of Pantothenic Acid On Growth Performance And Antioxidant Status Of Growing Male White Pekin Ducks. Tang, J, Zhang, B, Liang, SY, Wu, YB, Feng, YL, Guo, ZB, Xing, GN, Jiao, JL, Zhou, ZK, Xie, M, Hou, SS. 2020

[12]Optimal Dietary Copper Requirements And Relative Bioavailability For Weanling Pigs Fed Either Copper Proteinate Or Tribasic Copper Chloride. Lin, G, Guo, Y, Liu, B, Wang, RG, Su, XO, Yu, DY, He, PL. 2020

[13]Lncrna As Cernas May Be I.nvolved In Lactation Process. Yu, S, Zhao, Y, Lai, FN, Chu, MQ, Hao, YN, Feng, YN, Zhang, HF, Liu, J, Cheng, M, Li, L, Shen, W, Min, LJ. 2017

[14]Identification Of Drought Tolerant Maize G.enotypes And Seedling Based M orpho-Physiological Selection Indices For Crop Improvement. Wattoo, FM, Rana, RM, Fiaz, S, Zafar, SA, Noor, MA, Hassan, HM, Bhatti, MH, Rehman, SU, Anis, GB, Amir, RM. 2018

[15]Metabolomic And Transcriptomic Analyses Highlight The Influence Of Lipid Changes On The Post-Harvest Softening Of Pyrus Ussurian Max. 'Zaoshu Shanli'. Xu, JY, Zhang, Y, Qi, D, Huo, HL, Dong, XG, Tian, LM, Liu, C, Cao, YF. 2021

[16]Composition Of Chemical Elements In The Edible Viscera Of Tibetan Pigs And Its Correlation With Environment And Feed. Mi, S, Shang, K, Jia, W, Zhang, CH, Liu, JQ, Huang, DQ. 2020

[17]Dynamic Analysis Of Qtls For G.reen Leaf Area Duration A nd Green Leaf Number Of Main Stem In Wheat. 景蕊莲. 2019

[18]Insights Into Endophytic Bacterial Community S.tructures Of Seeds Among V arious Oryza Sativa L. Rice Genotypes. Zhang, J, Zhang, CW, Yang, J, Zhang, RJ, Gao, JS, Zhao, X, Zhao, JJ, Zhao, DF, Zhang, XX. 2019

[19]Proteomic Dissection Of The Rice-Fusarium F.ujikuroi Interaction And The C orrelation Between The Proteome And Transcriptome Under Disease Stress. Ji, ZJ, Zeng, YX, Liang, Y, Qian, Q, Yang, CD. 2019

[20]Complementary Transcriptome And Proteome Profiling I.n Cabbage Buds Of A Recessive Male Sterile Mutant Provides New Insights Into Male Reproductive Development. Ji, JL, Yang, LM, Fang, ZY, Zhuang, M, Zhang, YY, Lv, HH, Liu, YM, Li, ZS. 2018

作者其他论文 更多>>