[1] 刁其玉.营养调控技术在犊牛培育中的应用[J].饲料工业, 2020, 41(7):1-7. DIAO Q Y.The application of nutrition regulation technology in calf rearing[J].Feed Industry, 2020, 41(7):1-7.(in Chinese)
[2] KRPÁLKOVÁ L, CABRERA V E, KVAPILÍK J, et al.Associations between age at first calving, rearing average daily weight gain, herd milk yield and dairy herd production, reproduction, and profitability[J].Journal of Dairy Science, 2014, 97(10):6573-6582.

[3] SOBERON F, VAN AMBURGH M E.Lactation biology symposium:the effect of nutrient intake from milk or milk replacer of preweaned dairy calves on lactation milk yield as adults:a Meta-analysis of current data[J].Journal of Animal Science, 2013, 91(2):706-712.

[4] 徐建雄.关注氧化应激提高动物健康水平[J].饲料与畜牧, 2012(8):1. XU J X.Focus on oxidative stress to improve animal health[J].Feed and Husbandry, 2012(8):1.(in Chinese)
[5] 田丹, 田苗, 张蕾蕾, 等.丙泊酚对兔小肠缺血再灌注损伤的影响[J].长春中医药大学学报, 2019, 35(4):727-730, 735. TIAN D, TIAN M, ZHANG L L, et al.Influence of propofol on intestinal ischemia-reperfusion injury in rabbits[J].Journal of Changchun University of Traditional Chinese Medicine, 2019, 35(4):727-730, 735.(in Chinese)
[6] RAO R, CHAUDHRY K.Glutamine protects GI epithelial tight junctions[M]//RAJENDRAM R, PREEDY V R, PATEL V B.Glutamine in clinical nutrition.New York:Humana Press, 2015:323-337.
[7] 李利芬.酵母菌发酵对熟地黄生物活性的影响研究[D].硕士学位论文.济南:山东大学, 2017. LI L F.Effect of yeast fermentation on the biological activity of steamed
Rehmannia root[D].Master's Thesis.Jinan:Shandong University, 2017.(in Chinese)
[8] LI W, QU X N, HAN Y, et al.Ameliorative effects of 5-hydroxymethyl-2-furfural (5-HMF) from
Schisandra chinensis on alcoholic liver oxidative injury in mice[J].International Journal of Molecular Sciences, 2015, 16(2):2446-2457.

[9] 宋玉蓉, 刘云, 乐国伟, 等.低聚蔗果糖及其5-羟甲基糠醛抗氧化能力研究[J].食品工业科技, 2010, 31(4):342-345. SONG Y R, LIU Y, LE G W, et al.Study on antioxidation capability of fructose-oligosaccharide and 5-hydroxymethylfurfural[J].Science and Technology of Food Industry, 2010, 31(4):342-345.(in Chinese)
[10] JEONG J S, KIM I H.Effect of probiotic bacteria-fermented medicinal plants (
Gynura procumbens, Rehmannia glutinosa, Scutellaria baicalensis) as performance enhancers in growing pigs[J].Animal Science Journal, 2015, 86(6):603-609.

[11] SIMONIAN T A.Toxico-hygienic characteristics of oxymethylfurfural[J].Voprosy Pitaniia, 1969, 28(1):54-58.
[12] ABRAHAM K, GVRTLER R, BERG K, et al.Toxicology and risk assessment of 5-hydroxymethylfurfural in food[J].Molecular Nutrition & Food Research, 2011, 55(5):667-678.

[13] VAN SOEST P J, ROBERTSON J B, LEWIS B A.Methods for dietary fiber, neutral detergent fiber, and nonstarch polysaccharides in relation to animal nutrition[J].Journal of Dairy Science, 1991, 74(10):3583-3597.

[14] 姜哲轶, 吴婷月, 沈传斌, 等.5-羟甲基糠醛的药理作用研究进展[J].新乡医学院学报, 2022, 39(1):92-95. JIANG Z Y, WU T Y, SHEN C B, et al.Research progress on pharmacological effects of 5-hydroxymethylfurfural[J].Journal of Xinxiang Medical University, 2022, 39(1):92-95.(in Chinese)
[15] 王梅, 王越欣, 武英茹, 等.5-羟甲基糠醛在中药加工过程中的变化及药理作用研究概况[J].药物评价研究, 2020, 43(11):2319-2327. WANG M, WANG Y X, WU Y R, et al.Research progress on content changes of 5-hydroxymethyl furfural during processing of Chinese medicine and it's pharmacological effects[J].Drug Evaluation Research, 2020, 43(11):2319-2327.(in Chinese)
[16] JIANG C X, DING L M, DONG Q M, et al.Effects of root extracts of three traditional Chinese herbs as dietary supplements on dry matter intake, average daily gain, rumen fermentation and ruminal microbiota in early weaned yak calves[J].Animal Feed Science and Technology, 2021, 278:115002.
[17] WANG J L, MENG X L, LU R H, et al.Effects of
Rehmannia glutinosa on growth performance, immunological parameters and disease resistance to
Aeromonas hydrophila in common carp (
Cyprinus carpio L.)[J].Aquaculture, 2015, 435:293-300.
[18] 王艳明.日粮脂肪和能量水平对奶牛氧化应激、生产性能的影响及抗氧化剂添加效果研究[D].博士学位论文.杭州:浙江大学, 2010. WANG Y M.Effects of dietary fat and energy density on oxidative stress and lactation performance in dairy cows, in the absence or presence of antioxidant[D].Ph.D.Thesis.Hangzhou:Zhejiang University, 2010.(in Chinese)
[19] 周怿.酵母β-葡聚糖对早期断奶犊牛生长性能及胃肠道发育的影响[D].博士学位论文.北京:中国农业科学院, 2010. ZHOU Y.Effects of dietary yeast β-glucan on growth performance and gastrointestinal development in pre-ruminant calves[D].Ph.D.Thesis.Beijing:Chinese Academy of Agricultural Sciences, 2010.(in Chinese)
[20] 刘云龙.不同蛋白源组合代乳品对哺乳期犊牛生长性能和肠道发育的影响[D].硕士学位论文.北京:中国农业科学院, 2020. LIU Y L.Effects of different protein source combinations in milk replacer on growth performance and intestinal development of suckling calves[D].Master's Thesis.Beijing:Chinese Academy of Agricultural Sciences, 2020.(in Chinese)
[21] NUGENT R A 3rd, NOTTER D R, BEAL W E.Body measurements of newborn calves and relationship of calf shape to sire breeding values for birth weight and calving ease[J].Journal of Animal Science, 1991, 69(6):2413-2421.

[22] 张垄菲, 林波, 周芳芳, 等.不同粗饲料来源对荷斯坦公犊生长性能、血清生化指标及营养物质表观消化率的影响[J].饲料研究, 2022, 45(2):1-5. ZHANG L F, LIN B, ZHOU F F, et al.Effect of different roughage sources on growth performance, serum biochemical indexes and nutrient apparent digestibility of Holstein calves[J].Feed Research, 2022, 45(2):1-5.(in Chinese)
[23] CHEN Y H, PENNER G B, LI M J, et al.Changes in bacterial diversity associated with epithelial tissue in the beef cow rumen during the transition to a high-grain diet[J].Applied and Environmental Microbiology, 2011, 77(16):5770-5781.

[24] 张一为, 赵国先, 孙少华, 等.全株玉米青贮与花生秧间组合效应的研究[J].饲料研究, 2015(9):38-41. ZHANG Y W, ZHAO G X, SUN S H, et al.Study on combination effect between whole plant corn silage and peanut seedling[J].Feed Research, 2015(9):38-41.(in Chinese)
[25] 蔡健森.蛋白来源对早期断奶羔羊生产性能和器官发育及血清生化指标的影响[D].硕士学位论文.北京:中国农业科学院, 2007. CAI J S.Effect of protein sources on performance and organ development and serum biochemical indexes in early-weaned lambs[D].Master's Thesis.Beijing:Chinese Academy of Agricultural Sciences, 2007.(in Chinese)
[26] 王丽华, 徐宏建, 张全宇, 等.不同剂量25羟基维生素D
3对断奶前犊牛生长性能、营养物质表观消化率、血浆代谢物及粪便菌群的影响[J].动物营养学报, 2022, 34(1):404-412. WANG L H, XU H J, ZHANG Q Y, et al.Effects of different doses of 25-hydroxyvitamin D
3 on growth performance, nutrient apparent digestibility, plasma metabolites and fecal flora of pre-weaning calves[J].Chinese Journal of Animal Nutrition, 2022, 34(1):404-412.(in Chinese)
[27] 王聪聪, 郑振佳, 卢晓明, 等.黑蒜中5-羟甲基糠醛的生成规律及安全性评价[J].食品科学, 2022, 43(3):100-105. WANG C C, ZHENG Z J, LU X M, et al.Formation and safety evaluation of 5-hydroxymethylfurfural in black garlic[J].Food Science, 2022, 43(3):100-105.(in Chinese)
[28] LIU H, JI H F, ZHANG D Y, et al.Effects of
Lactobacillus brevis preparation on growth performance, fecal microflora and serum profile in weaned pigs[J].Livestock Science, 2015, 178:251-254.
[29] 谷巍, 孙明杰, 王丽荣, 等.4味常见中药对免疫抑制小鼠免疫功能及肠道菌群的影响[J].中国畜牧兽医, 2019, 46(1):147-156. GU W, SUN M J, WANG L R, et al.Effects of four kinds of traditional Chinese medicine on immune performance and intestinal flora in immunosuppressed mice[J].China Animal Husbandry & Veterinary Medicine, 2019, 46(1):147-156.(in Chinese)
[30] LIU J Y, FENG C P, LI X, et al.Immunomodulatory and antioxidative activity of
Cordyceps militaris polysaccharides in mice[J].International Journal of Biological Macromolecules, 2016, 86:594-598.
[31] MA J, WANG C, WANG Z S, et al.Active dry yeast supplementation improves the growth performance, rumen fermentation, and immune response of weaned beef calves[J].Animal Nutrition, 2021, 7(4):1352-1359.

[32] 王栋, 杜垣逸, 郑铎, 等.饲粮中添加凹凸棒土对荷斯坦犊牛生长性能、腹泻率、血清生化指标和肠道菌群的影响[J].动物营养学报, 2021, 33(12):6843-6852. WANG D, DU Y Y, ZHENG D, et al.Effects of palygorskite supplementation on growth performance, diarrhea incidence, serum biochemical indexes and intestinal microflora of Holstein calves[J].Chinese Journal of Animal Nutrition, 2021, 33(12):6843-6852.(in Chinese)
[33] TILTON R G, CHANG K C, LEJEUNE W S, et al.Role for nitric oxide in the hyperpermeability and hemodynamic changes induced by intravenous VEGF[J].Investigative Ophthalmology & Visual Science, 1999, 40(3):689-696.
[34] 张曼, 周爱儒, 汤健.血管再狭窄的基因治疗[J].中国介入心脏病学杂志, 1999, 7(1):46-48. ZHANG M, ZHOU A R, TANG J.Gene therapy for vascular restenosis[J].Chinese Journal of Interventional Cardiology, 1999, 7(1):46-48.(in Chinese)
[35] MOORE E, BELLOMO R.Erythropoietin (EPO) in acute kidney injury[J].Annals of Intensive Care, 2011, 1(1):3.
[36] 姜继宗.氧感知机制的揭示有助于多种疾病的治疗——解读2019年诺贝尔生理学或医学奖[J].自然杂志, 2019, 41(6):401-406. JIANG J Z.The revealing of oxygen sensing mechanism is conductive to fighting many diseases:the interpretation of Nobel Prize in physiology or medicine 2019[J].Chinese Journal of Nature, 2019, 41(6):401-406.(in Chinese)
[37] ABDULMALIK O, SAFO M K, CHEN Q K, et al.5-hydroxymethyl-2-furfural modifies intracellular sickle haemoglobin and inhibits sickling of red blood cells[J].British Journal of Haematology, 2005, 128(4):552-561.