[1] 杨海明,王志跃,梁正翠.肉鸽规模化高效饲养管理[J].特种经济动植物,2009,12(7):9-10.
[2] 常玲玲,汤青萍,王晴,等.欧洲肉鸽与其他畜禽肉品质及主要营养成分比较分析[J].食品安全质量检测学报,2017,8(6):2035-2040.
[3] 陈益填.我国肉鸽业养殖现状、投资效益及发展趋势分析[J].中国家禽,2012,34(4):8-11.
[4] 汤青萍,卜柱,王志跃,等.肉鸽生产性能名词术语的规范与建议[J].中国家禽,2017,39(11):64-67.
[5] 刘国英,王慧.鸽子日粮配制原则及需要注意的问题[J].中国禽业导刊,2010,27(16):52-52.
[6] FOUAD A M,EL-SENOUSEY H K.Nutritional factors affecting abdominal fat deposition in poultry:a review[J].Asian-Australasian Journal of Animal Sciences,2014,27(7):1057-1068.

[7] 卜柱,王强,厉宝林,等.不同能量、蛋白水平对繁育期种鸽生产性能的影响[C]//第十五次全国家禽学术讨论会论文集.广州:中国畜牧兽医学会,2011:6.
[8] 余有成,刘璐,康振宏,等.肉用种鸽日粮中ME、CP适宜水平研究[J].中国家禽,1998,20(9):35-37.
[9] 吴红,陈启康.不同日粮营养水平对种鸽繁殖性能的影响[J].动物营养学报,2003,15(1):61-64.
[10] 王修启,李世波,詹勋,等.肉鸽养殖"2+4"生产模式下种鸽的能量需要研究[J].粮食与饲料工业,2009(4):45-46.
[11] 王修启,李世波,詹勋,等.肉鸽养殖"2+4"生产模式下种鸽的粗蛋白需要研究[J].饲料工业,2009,30(17):59-60.
[12] 王峰,李复煌,张胜杰,等."2+3"模式下肉鸽能量和蛋白质需要量研究[J].北京农学院学报,2018,33(4):58-63.
[13] 高春起,王晓慧,胡小超,等.饲粮粗蛋白质水平对乳鸽生长性能、屠宰性能、肉品质及种鸽产蛋性能的影响[J].华南农业大学学报,2016,37(4):1-6.
[14] KRISELDI R,TILLMAN P B,JIANG Z,et al.Effects of feeding reduced crude protein diets on growth performance,nitrogen excretion,and plasma uric acid concentration of broiler chicks during the starter period[J].Poultry Science,2018,97(5):1614-1626.

[15] DING Y,BU X C,ZHANG N N,et al.Effects of metabolizable energy and crude protein levels on laying performance,egg quality and serum biochemical indices of Fengda-1 layers[J].Animal Nutrition,2016,2(2):93-98.

[16] 赵洁,张贤军,李海英.不同蛋白水平对种鸽生产性能的影响[J].四川畜牧兽医,2000,27(12):25.
[17] 王燕,钟志平.种鸽营养需要与饲料配制研究进展[J].广东饲料,2009,18(6):30-32.
[18] 杨芷,杨海明,王志跃,等.蛋氨酸的生理功能及其在家禽生产上的研究与应用[J].中国饲料,2014(12):21-23,24.
[19] JANKOWSKI J,KUBINSKA M,ZDUNCZYK Z.Nutritional and immunomodulatory function of methionine in poultry diets-a review[J].Annals of Animal Science,2014,14(1):17-32.

[20] 王彬,李奇.亮氨酸的代谢及营养生理作用研究进展[J].饲料研究,2012(1):14-16.
[21] GAO H N,HU H,ZHENG N,et al.Leucine and histidine independently regulate milk protein synthesis in bovine mammary epithelial cells via mTOR signaling pathway[J].Journal of
Zhejiang University(Science B),2015,16(6):560-572.
[22] TORRAZZA R M,SURYAWAN A,GAZZANEO M C,et al.Leucine supplementation of a low-protein meal increases skeletal muscle and visceral tissue protein synthesis in neonatal pigs by stimulating mTOR-dependent translation initiation[J].The Journal of Nutrition,2010,140(12):2145-2152.

[23] SURYAWAN A,NGUYEN H V,ALMONACI R D,et al.Differential regulation of protein synthesis in skeletal muscle and liver of neonatal pigs by leucine through an mTORC1-dependent pathway[J].Journal of Animal Science and Biotechnology,2012,3:3.
[24] CHEN Y P,CHEN X,ZHANG H,et al.Effects of dietary concentrations of methionine on growth performance and oxidative status of broiler chickens with different hatching weight[J].British Poultry Science,2013,54(4):531-537.

[25] RULQUIN H,GRAULET B,DELABY L,et al.Effect of different forms of methionine on lactational performance of dairy cows[J].Journal of Dairy Science,2006,89(11):4387-4394.

[26] 傅喆.日粮添加亮氨酸对种鸽鸽乳蛋白质合成和乳鸽生长的影响[D].硕士学位论文.广州:华南农业大学,2018:13-23.
[27] 毕微微.蛋氨酸、赖氨酸二肽对奶牛乳腺上皮细胞泌乳机能的影响[D].硕士学位论文.哈尔滨:东北农业大学,2013:38-52.
[28] KIM S W,MATEO R D,YIN Y L,et al.Functional amino acids and fatty acids for enhancing production performance of sows and piglets[J].Asian-Australasian Journal of Animal Sciences,2007,20(2):295-306.
[29] 赵万里.特种经济禽类生产[M].北京:农业出版社,1993:40-42.
[30] EL-KHALEK E A,KALMAR I D,NOLLET L,et al.Micromineral source affects intestinal morphology but not feather formation in pigeons[J].Biological Trace Element Research,2011,144(1/2/3):753-759.
[31] DONG X Y,WANG Y M,DAI L,et al.Posthatch development of intestinal morphology and digestive enzyme activities in domestic pigeons (
Columba livia)[J].Poultry Science,2012,91(8):1886-1892.

[32] GILLESPIE M J,HARING V R,MCCOLL K A,et al.Histological and global gene expression analysis of the ‘lactating’ pigeon crop[J].BMC Genomics,2011,12:452.
[33] GILLESPIE M J,CROWLEY T M,HARING V R,et al.Transcriptome analysis of pigeon milk production-role of cornification and triglyceride synthesis genes[J].BMC Genomics,2013,14:169.
[34] HU X C,GAO C Q,WANG X H,et al.Crop milk protein is synthesised following activation of the IRS1/Akt/TOR signalling pathway in the domestic pigeon (
Columba livia)[J].British Poultry Science,2016,57(6):855-862.

[35] BHARATHI L,SHENOY K B,HEGDE S N.Biochemical differences between crop tissue and crop milk of pigeons (
Columba livia)[J].Comparative Biochemistry and Physiology Part A:Physiology,1997,116(1):51-55.
[36] SALES J,JANSSENS G P J.Nutrition of the domestic pigeon (
Columba livia domestica)[J].World's Poultry Science Journal,2003,59(2):221-232.

[37] DESMETH M.Lipid composition of pigeon cropmilk-Ⅱ.Fatty acids[J].Comparative Biochemistry and Physiology Part B:Comparative Biochemistry,1980,66(1):135-138.

[38] 曾秋凤,张彬,张在伟.自然鸽乳的常规营养分析[J].中国家禽,2003,25(21):12-14.
[39] YANG M C,VOHRA P.Protein and metabolizable energy requirements of hand-fed squabs from hatching to 28 days of age[J].Poultry Science,1987,66(12):2017-2023.

[40] SHETTY S,HEGDE S N.Pigeon milk:a new source of growth factor[J].Experientia,1993,49(10):925-928.

[41] 陈丹,谭会泽,刘松柏,等.不同粗蛋白质水平对人工哺育乳鸽14-33日龄生长性能、屠体性能和羽毛发育的影响[J].饲料工业,2018,39(23):27-30.
[42] 顾拥建,陈启康,梁志彬,等.人工鸽乳饲养乳鸽的效果研究[J].南京农专学报,2003,19(3):49-51.
[43] 谢青梅,毕英佐,陈朝霞,等.不同人工鸽乳0-10日龄乳鸽的饲喂效果[J].中国畜牧杂志,2001,37(1):24-26.
[44] 胡文娥,陈益填,江玉云,等.不同粗蛋白水平对乳鸽生长后期增重的影响[J].广东畜牧兽医科技,2006,31(4):19-21.
[45] 艾国良,许美解,陈可毅.日粮中不同蛋白质含量对乳鸽肥育效果的影响[J].黑龙江畜牧兽医,1997(5):37.
[46] 李世波,王修启,詹勋,等.不同粗蛋白质、能量水平对肉鸽育肥期生长性能的影响[J].粮食与饲料工业,2009(12):37-38.
[47] 张晓昀,董信阳,卜星晨,等.2-10日龄鸽乳中活性成分变化的规律研究[J].中国畜牧杂志,2016,52(11):39-42.
[48] HEGDE S N.Amino-acid composition of pigeon milk[J].Current Science,1972,41(1):23-26.
[49] VANDEPUTTE-POMA J.Feeding,growth and metabolism of the pigeon,
Columba livia domestica:duration and role of crop milk feeding[J].Journal of Comparative Physiology,1980,135(2):97-99.

[50] RUAN D,FOUAD A M,FAN Q L,et al.Effects of dietary methionine on productivity,reproductive performance,antioxidant capacity,ovalbumin and antioxidant-related gene expression in laying duck breeders[J].British Journal of Nutrition,2018,119(2):121-130.

[51] PLUMSTEAD P W,ROMERO-SANCHEZ H,PATON N D,et al.Effects of dietary metabolizable energy and protein on early growth responses of broilers to dietary lysine[J].Poultry Science,2007,86(12):2639-2648.

[52] ZHANG S,SAREMI B,GILBERT E R,et al.Physiological and biochemical aspects of methionine isomers and a methionine analogue in broilers[J].Poultry Science,2016,96(2):425-439.
[53] NAZEM M N,SAJJADIAN S M,KHEIRANDISH R,et al.Histomorphometric analysis of the small intestine of broiler chick embryos injected
in ovo with methionine[J].Animal Production Science,2019,59(1):133-139.

[54] WEN C,JIANG X Y,DING L R,et al.Effects of dietary methionine on growth performance,meat quality and oxidative status of breast muscle in fast-and slow-growing broilers[J].Poultry Science,2017,96(6):1707-1714.
[55] DAYIES W L.The composition of the crop milk of pigeons[J].Biochemical Journal,1939,33(6):898-901.

[56] 庞丰丰.乳鸽人工代乳料的研究[J].吉林畜牧兽医,2009,30(2):29-30.
[57] HEDGE S N.Composition of pigeon milk and its effect on growth in chicks[J].Indian Journal of Experimental Biology,1973,11(3):238-239.
[58] 陈益填,林余秋,余智文,等.肉鸽保健砂的配方及供给方法[J].畜牧与兽医,2001,33(3):16-17.
[59] XIE P,WANG Y M,WANG C,et al.Effect of different fat sources in parental diets on growth performance,villus morphology,digestive enzymes and colorectal microbiota in pigeon squabs[J].Archives of Animal Nutrition,2013,67(2):147-160.

[60] SHETTY S,HEGDE S N.Changes in lipids of pigeon "milk" in the first week of its secretion[J].Lipids,1991,26(11):930-933.

[61] ENGBERG R M,KASPERS B,SCHRANNER I,et al.Quantification of the immunoglobulin classes IgG and IgA in the young and adult pigeon (
Columba livia)[J].Avian Pathology,1992,21(3):409-420.

[62] 张军民,高振川.猪乳中常规成分、胰岛素和表皮生长因子浓度的动态变化[J].中国兽医学报,2001,21(4):388-391.
[63] BUTTAR H S,BAGWE S M,BHULLAR S K,et al.Health benefits of bovine colostrum in children and adults[M]//WATSON R R,COLLIER R J,PREEDY V R.Dairy in human health and disease across the lifespan.Amsterdam:Academic Press,2017:3-20.