[1] 尹杰,刘红南,李铁军,等.我国蛋白质饲料资源短缺现状与解决方案[J].中国科学院院刊,2019,34(1):89-93.
[2] 朱梅梦.探讨昆虫蛋白饲料的开发与利用[J].吉林粮食高等专科学校学报,2003,18(2):1-4.
[3] 杨乐乐,陈阳城,刘锦杰.昆虫蛋白对动物免疫功能的影响[J].广东饲料,2017,26(2):28-30.
[4] AKHTAR Y,ISMAN M B.Insects as an alternative protein source[M]//YADA R Y.Proteins in food processing.2nd ed.Cambridge,UK:Elsevier Ltd.,2018:263-288.
[5] HUIS A V,ITTERBEECK J V,KLUNDER H,et al.Edible insects:future prospects for food and feed security[M].Rome:FAO,2013.
[6] 田华,王莉.昆虫蛋白类功能成分研究进展[J].河南农业科学,2011,40(4):22-26.
[7] 许兵红,陈正耀.昆虫体液免疫中的抗菌物质[J].昆虫知识,1999,36(5):316-319.
[8] BOSCH G,ZHANG S,OONINCX D G A B,et al.Protein quality of insects as potential ingredients for dog and cat foods[J].Journal of Nutritional Science,2014,3:e29.
[9] LONGVAH T,MANGTHYA K,RAMULU P.Nutrient composition and protein quality evaluation of eri silkworm (
Samia ricinii) prepupae and pupae[J].Food Chemistry,2011,128(2):400-403.

[10] KHAN S H.Recent advances in role of insects as alternative protein source in poultry nutrition[J].Journal of Applied Animal Research,2018,46(1):1144-1157.

[11] 姬玉娇.三种昆虫的营养价值评价[D].硕士学位论文.南昌:南昌大学,2013.
[12] 熊本海,罗清尧,周正奎,等.中国饲料成分及营养价值表(2018年第29版)[J].中国饲料,2018(21):64-73.
[13] 喻国辉,陈燕红,喻子牛,等.黑水虻幼虫和预蛹的饲料价值研究进展[J].昆虫知识,2009,46(1):41-45.
[14] RAO U P.Chemical composition and nutritional evaluation of spent silk worm pupae[J].Journal of Agricultural and Food Chemistry,1994,42(10):2201-2203.

[15] 宋宇琨,何俊.4种动物性蛋白质饲料的营养特性及其在畜禽养殖中的应用[J].动物营养学报,2019,31(1):109-118.
[16] 韩润林,孙庆林,额尔敦夫,等.黄粉虫幼虫中抗菌肽的诱导及其抗菌活性的初步研究[J].内蒙古农牧学院学报,1998,19(3):119-122.
[17] BULET P,HETRU C,DIMARCQ J L,et al.Antimicrobial peptides in insects;structure and function[J].Developmental & Comparative Immunology,1999,23(4/5):329-344.
[18] JÓZEFIAK A,ENGBERG R M.Insect proteins as a potential source of antimicrobial peptides in livestock production.A review[J].Journal of Animal and Feed Sciences,2017,26(2):87-99.

[19] 魏中琴,高雅婷,马奔科,等.抗菌肽的研究进展[J].黑龙江医药,2015(1):1-4,5.
[20] YI H Y,CHOWDHURY M,HUANG Y D,et al.Insect antimicrobial peptides and their applications[J].Applied Microbiology and Biotechnology,2014,98(13):5807-5822.

[21] 周绪霞,陆平,李卫芬.昆虫防御素及其研究进展[J].免疫学杂志,2004,20(增刊):121-123.
[22] 李希,关静姝,李波,等.天蚕素抗菌肽CAD研究进展及其在畜牧生产中的应用[J].饲料与畜牧,2012(2):56-59.
[23] CHERNYSH S,GORDYA N,SUBOROVA T.Insect antimicrobial peptide complexes prevent resistance development in bacteria[J].PLoS One,2015,10(7):e0130788.
[24] 周钢.蝇蛆抗菌肽的诱导及对鸡白痢治疗效果研究[D].硕士学位论文.石河子:石河子大学,2013.
[25] 陈香,谯仕彦,李波,等.添加天蚕素抗菌肽对断奶仔猪生长性能的影响[J].中国饲料,2011(12):25-26,30.
[26] 吕明珠.柞蚕凝集素基因
ApCTL的克隆及表达分析[D].硕士学位论文.大连:大连理工大学,2018.
[27] XIU Y J,HOU L B,LIU X Q,et al.Isolation and characterization of two novel C-type lectins from the oriental river prawn,
Macrobrachium nipponense[J].Fish & Shellfish Immunology,2015,46(2):603-611.

[28] 张明明,初源,赵章武,等.昆虫天然免疫反应分子机制研究进展[J].昆虫学报,2012,55(10):1221-1229.
[29] CAO X,HUO Z,LU M,et al.Purification of Lectin from larvae of the fly,
Musca domestica,and
in vitro anti-tumor activity in MCF-7 cells[J].Journal of Insect Science,2010,10:164.
[30] GOWDA N M,GOSWAMI U,KHAN M I.T-antigen binding lectin with antibacterial activity from marine invertebrate,sea cucumber (
Holothuria scabra):possible involvement in differential recognition of bacteria[J].Journal of Invertebrate Pathology,2008,99(2):141-145.

[31] 曹小红,许程剑,曾斌,等.家蝇蛹凝集素的免疫调节作用[J].天然产物研究与开发,2010,22(1):20-23,57.
[32] LU A R,ZHANG Q L,ZHANG J,et al.Insect prophenoloxidase:the view beyond immunity[J].Frontiers in Physiology,2014,5:252.
[33] HILLYER J F,SCHMIDT S L,CHRISTENSEN B M.The antibacterial innate immune response by the mosquito
Aedes aegypti is mediated by hemocytes and independent of Gram type and pathogenicity[J].Microbes and Infection,2004,6(5):448-459.

[34] SHAO Q M,YANG B,XU Q Y,et al.Hindgut innate immunity and regulation of fecal microbiota through melanization in insects[J].Journal of Biological Chemistry,2012,287(17):14270-14279.

[35] ZHAO P C,LI J J,WANG Y,et al.Broad-spectrum antimicrobial activity of the reactive compounds generated
in vitro by
Manduca sexta phenoloxidase[J].Insect Biochemistry and Molecular Biology,2007,37(9):952-959.

[36] 刘高强,刘卫星,魏美才,等.虫类甲壳素/壳聚糖的研究及其开发前景[J].西北林学院学报,2005,20(4):143-146.
[37] LEE C G,DA SILVA C A,LEE J Y,et al.Chitin regulation of immune responses:an old molecule with new roles[J].Current Opinion in Immunology,2008,20(6):684-689.

[38] SANCHEZ-MUROS M J,BARROSO F G,MANZANO-AGUGLIARO F.Insect meal as renewable source of food for animal feeding:a review[J].Journal of Cleaner Production,2014,65:16-27.
[39] 张海涛,高峰,李云龙,等.蝇蛆粉替代鱼粉饲料中添加甲壳素酶对泥鳅生长性能和非特异性免疫力的影响[J].中国饲料,2017(11):39-43.
[40] KUMAR M N V R.A review of chitin and chitosan applications[J].Reactive and Functional Polymers,2000,46(1):1-27.

[41] AO X,KIM I H.Effects of dietary dried mealworm (
Ptecticus tenebrifer) larvae on growth performance and nutrient digestibility in weaning pig[J].Livestock Science,2019,230:103815.
[42] 杨海英,杨在宾.黄粉虫和蝇蛆粉对仔猪生产性能影响的研究[J].江西饲料,2010(2):9-11,14.
[43] 傅规玉.蚯蚓粉代替鱼粉饲喂育肥猪的试验[J].湖南畜牧兽医,2006(3):11-12.
[44] JI Y J,LIU H N,KONG X F,et al.Use of insect powder as a source of dietary protein in early-weaned piglets[J].Journal of Animal Science,2016,3(94):111-116.
[45] DANKWA D,ODDOYE E O K,MZAMO K B.Preliminary studies on the complete replacement of fishmeal by house-fly-larvae-meal in weaner pig diets:effects on growth rate,carcass characteristics,and some blood constituents[J].Ghana Journal of Agricultural Science,2000,33(2):223-227.
[46] 曾正清,孙振钧,VAN KEMPEN T,等.猪日粮中添加乳酸链球菌和蚯蚓粉对其生产性能及粪便中臭气化合物的影响[J].动物营养学报,2004,16(1):36-41,46.
[47] JIN X H,HEO P S,HONG J S,et al.Supplementation of dried mealworm (
Tenebrio molitor larva) on growth performance,nutrient digestibility and blood profiles in weaning pigs[J].Asian-Australasian Journal of Animal Sciences,2016,29(7):979-986.

[48] SPRANGHERS T,MICHIELS J,VRANCX J,et al.Gut antimicrobial effects and nutritional value of black soldier fly (
Hermetia illucens L.) prepupae for weaned piglets[J].Animal Feed Science and Technology,2017,235:33-42.
[49] 张放,杨伟丽,杨树义,等.黑水虻虫粉对生长猪生长性能和血清生化指标的影响[J].动物营养学报,2018,30(6):2346-2351.
[50] BIASATO I,RENNA M,GAI F,et al.Partially defatted black soldier fly larva meal inclusion in piglet diets:effects on the growth performance,nutrient digestibility,blood profile,gut morphology and histological features[J].Journal of Animal Science and Biotechnology,2019,10:12.
[51] YU M,LI Z M,CHEN W D,et al.Use of
Hermetia illucens larvae as a dietary protein source:effects on growth performance,carcass traits,and meat quality in finishing pigs[J].Meat Science,2019,158:107837.
[52] 徐瑞,王改琴,邬本成,等.脱脂黄粉虫对保育猪生长性能及生化指标的影响[J].中国饲料,2019(9):41-44.
[53] 余苗,李贞明,陈卫东,等.黑水虻幼虫粉对育肥猪营养物质消化率、血清生化指标和氨基酸组成的影响[J].动物营养学报,2019,31(7):3330-3337.
[54] REZAEIPOUR V,NEJAD O A,MIRI H Y.Growth performance,blood metabolites and jejunum morphology of broiler chickens fed diets containing earthworm (
Eisenia foetida) meal as a source of protein[J].International Journal of Advanced Biological and Biomedical Research,2014,2(8):2483-2494.
[55] 朱宇旌,李维,张勇,等.蚯蚓粉对肉鸡生长性能、营养物质代谢及免疫功能的影响[J].沈阳农业大学学报,2010,41(6):695-700.
[56] DABBOU S,GAI F,BIASATO I,et al.Black soldier fly defatted meal as a dietary protein source for broiler chickens:effects on growth performance,blood traits,gut morphology and histological features[J].Journal of Animal Science and Biotechnology,2018,9:49.
[57] BOVERA F,PICCOLO G,GASCO L,et al.Yellow mealworm larvae (
Tenebrio molitor L.) as possible alternative to soybean meal in broiler diets[J].British Poultry Science,2015,56(5):569-575.
[58] OKAH U,ONWUJIARIRI E B.Performance of finisher broiler chickens fed maggot meal as a replacement for fish meal[J].International Journal of Agricultural Technology,2012,8(2):471-477.
[59] MILUTIN D,BRANA R D,MARIJANA V,et al.Effects of substitution of fish meal with fresh and dehydrated larvae of the house fly (
Musca domestica L.) on productive performance and health of broilers[J].Acta Veterinaria,2008,58(4):357-368.

[60] HWANGBO J,HONG E C,JANG A,et al.Utilization of house fly-maggots,a feed supplement in the production of broiler chickens[J].Journal of Environmental Biology,2009,30(4):609-614.
[61] LOH T C,FONG L Y,FOO H L,et al.Utilisation of earthworm meal in partial replacement of soybean and fish meals in diets of broilers[J].Journal of Applied Animal Research,2009,36(1):29-32.

[62] 汪宴廷,雷毅,万文云,等.蝇蛆粉对肉鸡生长性能和死亡率的影响[J].四川畜牧兽医,2013,40(4):21-22,24.
[63] ULLAH R,KHAN S,HAFEEZ A,et al.Silkworm (
Bombyx mori) meal as alternate protein ingredient in broiler finisher ration[J].Pakistan Journal of Zoology,2017,49(4):1463-1470.

[64] MOHAMMED A,LARYEA1 T E,GANIYU A,et al.Effects of black soldier fly (
Hermetia illucens) larvae meal on the growth performance of broiler chickens[J].International Journal of Development,2017,4:35-41.
[65] KHAN S,KHAN R U,ALAM W,et al.Evaluating the nutritive profile of three insect meals and their effects to replace soya bean in broiler diet[J].Journal of Animal Physiology and Animal Nutrition,2017,102(2):e662-e668.
[66] 顾永芬,刘镜.蚯蚓粉替代鱼粉对蛋鸡生产性能及鸡蛋品质的影响[J].黑龙江畜牧兽医,2011(10):111-112.
[67] SECCI G,BOVERA F,NIZZA S,et al.Quality of eggs from lohmann brown classic laying hens fed black soldier fly meal as substitute for soya bean[J].Animal,2018,12(10):2191-2197.

[68] AL-QAZZAZ M F A,ISMAIL D,AKIT H,et al.Effect of using insect larvae meal as a complete protein source on quality and productivity characteristics of laying hens[J].Revista Brasileira de Zootecnia,2016,45(9):518-523.

[69] MARONO S,LOPONTE R,LOMBARDI P,et al.Productive performance and blood profiles of laying hens fed
Hermetia illucens larvae meal as total replacement of soybean meal from 24 to 45 weeks of age[J].Poultry Science,2017,96(6):1783-1790.

[70] CUTRIGNELLI M I,MESSINA M,TULLI F,et al.Evaluation of an insect meal of the black soldier fly (
Hermetia illucens) as soybean substitute:intestinal morphometry,enzymatic and microbial activity in laying hens[J].Research in Veterinary Science,2017,117:209-215.
[71] MONIELLO G,ARIANO A,PANETTIERI V,et al.Intestinal morphometry,enzymatic and microbial activity in laying hens fed different levels of a
Hermetia illucens larvae meal and toxic elements content of the insect meal and diets[J].Animals,2019,9(3):86.