中国畜牧兽医 ›› 2025, Vol. 52 ›› Issue (2): 934-945.doi: 10.16431/j.cnki.1671-7236.2025.02.042
郭佳佳1, 聂晶1, 曲久2, 旦增占都2, 李小伟3, 江明锋1, 刘益丽1
收稿日期:
2024-05-27
出版日期:
2025-02-05
发布日期:
2025-01-24
通讯作者:
江明锋, 刘益丽
E-mail:Mingfengjiang@vip.sina.com;yililiunum@163.com
作者简介:
郭佳佳,E-mail:13028353972@163.com;聂晶,E-mail:15709825268@163.com。郭佳佳和聂晶对本文具有同等贡献,并列为第一作者。
基金资助:
GUO Jiajia1, NIE Jing1, QU Jiu2, Danzengzhandu2, LI Xiaowei3, JIANG Mingfeng1, LIU Yili1
Received:
2024-05-27
Online:
2025-02-05
Published:
2025-01-24
摘要: 抗菌肽(antimicrobibal peptides,AMPs)是一类由宿主基因编码且具有广谱杀菌作用的小分子多肽,是几乎所有生物体非特异性免疫的重要组成成分。抗菌肽种类多样,按照生物活性可分为抗细菌、抗真菌、抗病毒、抗寄生虫、抗肿瘤等不同类型。抗菌肽一般具有正电荷和两亲性,可与疏水表面和膜结构发生相互作用,破环膜的完整性及抑制细胞内核酸、蛋白质等物质的活性,在细胞壁、细胞膜、细胞内及病毒的相关靶点发挥抑菌作用。在以细胞膜为靶点的抗菌肽中,相关研究提出了桶板、环孔、地毯、凝聚等不同细胞膜损伤模型,即抗菌肽通过不同的杀菌机制表现出了抗细菌、抗真菌和抗病毒等广谱的生物活性。抗菌肽因其独特的杀菌机制有着广阔的应用前景,在畜禽养殖过程中,作为绿色饲料添加剂能增加畜禽体重、提高肠道有益菌数量、提高免疫球蛋白含量、降低炎症因子浓度,在畜禽的生产性能、肠道菌群、免疫力及疾病防治等方面发挥重要作用,是畜禽行业未来发展中替抗产品的良好选择。然而抗菌肽还存在用法用量尚未明确、使用成本较高、联合使用效果不明确等限制因素,笔者对抗菌肽的抑菌作用机制及在畜禽中的应用进行总结,并对其未来发展进行展望,以期为抗菌肽的研究及应用提供参考。
中图分类号:
郭佳佳, 聂晶, 曲久, 旦增占都, 李小伟, 江明锋, 刘益丽. 抗菌肽抑菌作用机制及在畜禽中的应用[J]. 中国畜牧兽医, 2025, 52(2): 934-945.
GUO Jiajia, NIE Jing, QU Jiu, Danzengzhandu, LI Xiaowei, JIANG Mingfeng, LIU Yili. Mechanism of Antibacterial Action of Antimicrobial Peptides and Their Application in Livestock and Poultry[J]. China Animal Husbandry & Veterinary Medicine, 2025, 52(2): 934-945.
[1] 孙双勇,王蒙蒙,李丽,等.抗生素耐药与抗生素新药开发的研究进展[J].现代药物与临床,2022,37(2):221-229.SUN S Y,WANG M M,LI L,et al.Research progress on antibiotic resistance and new antibiotics development[J].Drugs and Clinic,2022,37(2):221-229.(in Chinese) [2] XUAN J Q,FENG W G,WANG J Y,et al.Antimicrobial peptides for combating drug-resistant bacterial infections[J].Drug Resistance Updates,2023,68:100954. [3] 中华人民共和国农业农村部.中华人民共和国农业农村部公告第194号[EB/OL].(2019-07-10)[2024-5-27].http://www.moa.gov.cn/govpublic/xmsyj/201907/t20190710_6320678.htm.MINISTRY OF AGRICULTURE AND RURAL AFFAIRS OF THE PEOPLE’S REPUBLIC OF CHINA.Announcement No.194 of the Ministry of Agriculture and Rural Development of the People’s Republic of China[EB/OL].(2019-07-10)[2024-5-27].http://www.moa.gov.cn/govpublic/xmsyj/201907/t20190710_6320678.htm.(in Chinese) [4] 朱宝珍.多粘菌素和菌丝霉素对瘤胃发酵及微生物区系的影响研究[D].兰州:兰州大学,2021.ZHU B Z.Effects of Paenibacillus polymyxa and plectasin on rumen fermentation and microflora[D].Lanzhou:Lanzhou University,2021.(in Chinese) [5] 孙建祥.抗菌肽对荷斯坦去势公牛育肥效果的研究[D].兰州:甘肃农业大学,2022.SUN J X.Study on effect of antimicrobial peptides on fattening of castrated Holstein dairy bulls[D].Lanzhou:Gansu Agricultural University,2022.(in Chinese) [6] 李世易.蜜蜂肽对湖羊生产性能及瘤胃微生物区系的影响[D].兰州:兰州大学,2019.LI S Y.The effect of apidaecin on the performances and rumen microflora of Hu sheep[D].Lanzhou:Lanzhou University,2019.(in Chinese) [7] 张利,华松.新型抗生素替代品抗菌肽在畜禽养殖上的应用[J].畜牧兽医杂志,2023,42(3):120-122.ZHANG L,HUA S.Application of antimicrobial peptides as new antibiotic substitutes in livestock and poultry breeding[J].Journal of Animal Science and Veterinary Medicine,2023,42(3):120-122.(in Chinese) [8] 王蔚.抗菌肽的多功能化及其抗菌性能的研究[D]. 长春:长春工业大学,2023.WANG W. Study on multifunctional antibacterial peptides and their antibacterial properties[D]. Changchun: Changchun University of Technology, 2023. (in Chinese) [9] 刘倚帆,徐良,朱海燕.抗菌肽与抗生素对革兰氏阴性菌和革兰氏阳性菌的体外协同抗菌效果[J].动物营养学报,2010,22(5):1457-1463.LIU Y F,XU L,ZHU H Y.An in vitro study on combination of antimicrobial peptides and antibiotics against Gram-negative and Gram-positive bacteria[J]. Chinese Journal of Animal Nutrition,2010,22(5):1457-1463.(in Chinese) [10] 喻钢,田万红.抗菌肽LL-37功能研究综述[J].药物分析杂志,2014,34(10):1890-1896.YU G,TIAN W H.Review of the function of cathelicidin LL-37[J].Chinese Journal of Pharmaceutical Analysis,2014,34(10):1890-1896.(in Chinese) [11] MEMARIANI H,MEMARIANI M,MORAVVEJ H,et al.Melittin:A venom-derived peptide with promising anti-viral properties[J].European Journal of Clinical Microbiology & Infectious Diseases,2020,39(1):5-17. [12] TONK M,PIERROT C,CABEZAS-CRUZ A,et al.The Drosophila melanogaster antimicrobial peptides Mtk-1 and Mtk-2 are active against the malarial parasite Plasmodium falciparum[J].Parasitology Research,2019,118(6):1993-1998. [13] XU P,LV D D,WANG X H,et al.Inhibitory effects of Bombyx mori antimicrobial peptide cecropins on esophageal cancer cells[J].European Journal of Pharmacology,2020,887:173434. [14] 周继章.抗菌肽抗病的研究进展[J].中国畜牧兽医,2012,39(7):204-208.ZHOU J Z.Research progress on antimicrobial peptide against diseases[J].China Animal Husbandry & Veterinary Medicine, 2012,39(7):204-208.(in Chinese) [15] 张威.抗菌肽Sub3及其融合蛋白Sub3-AfIR抗黄曲霉作用研究[D].郑州:河南工业大学,2022.ZHANG W.Inhibition effect of antimicrobial peptide Sub3 and its fusion protein Sub3_AflR on Aspergillus flavus[D].Zhengzhou:Henan University of Technology,2022.(in Chinese) [16] SMITH J G,SILVESTRY M,LINDERT S,et al.Insight into the mechanisms of Adenovirus capsid disassembly from studies of defensin neutralization[J].PLoS Pathogens,2010,6(6):e1000959. [17] KONNO K,RANGEL M,OLIVEIRA J S,et al.Decoralin,a novel linear cationic alpha-helical peptide from the venom of the solitary eumenine wasp Oreumenes decorates[J].Peptides,2007,28(12):2320-2327. [18] 田竺青,杨隆兵,朱丽娟,等.家蝇新型抗菌肽抗肿瘤活性研究[J].中国临床药理学杂志,2022,38(11),1207-1210.TIAN Z Q,YANG L B,ZHU L J,et al.Anti-tumor activity of Musca domestica novel antimicrobial peptides[J].Chinese Journal of Clinical Pharmacology,2022,38(11):1207-1210.(in Chinese) [19] LI X,ZUO S Y,WANG B,et al.Antimicrobial mechanisms and clinical application prospects of antimicrobial peptides[J].Molecules (Basel,Switzerland),2022,27(9):2675. [20] SCHEFFERS D J,PINHO M G.Bacterial cell wall synthesis:New Insights from localization studies[J].Microbiology and Molecular Biology Reviews,2005,69(4):585-607. [21] SCOCCHI M,MARDIROSSIAN M,RUNTI G,et al.Non-membrane permeabilizing modes of action of antimicrobial peptides on bacteria[J].Current Topics in Medicinal Chemistry,2016,16(1):76-88. [22] 李丹丹.高效低毒抗菌肽的筛选及抗菌机制研究[D].郑州:河南工业大学,2021.LI D D.Screening of high-efficiency and low-toxicity antimicrobial peptides and study on antibacterial mechanism[D].Zhengzhou:Henan University of Technology,2021.(in Chinese) [23] PANINA I,KRYLOV N,NOLDE D,et al.Environmental and dynamic effects explain how nisin captures membrane-bound lipid Ⅱ[J].Scientific Reports,2020,10(1):8821. [24] SASS V,SCHNEIDER T,WILMES M,et al.Human β-defensin 3 inhibits cell wall biosynthesis in staphylococci[J].Infection and Immunity,2010,78(6):2793-2800. [25] PAPO N,SHAI Y.A molecular mechanism for lipopolysaccharide protection of Gram-negative bacteria from antimicrobial peptides[J].The Journal of Biological Chemistry,2005,280(11):10378-10387. [26] DASH R,BHATTACHARJYA S.Thanatin:An emerging host defense antimicrobial peptide with multiple modes of action[J].International Journal of Molecular Sciences,2021,22(4):1522. [27] 杨昆,王欢,高洁,等.抗菌肽BCp12对大肠杆菌壁膜及DNA损伤的作用机制[J].食品科学,2021,42(19):114-121.YANG K,WANG H,GAO J,et al.Mechanism by which antimicrobial peptide BCp12 acts on the cell wall and membrane of Escherichia coli cells and induces DNA damage[J]. Food Science,2021,42(19):114-121.(in Chinese) [28] LI T X,LI L L,DU F Y,et al.Activity and mechanism of action of antifungal peptides from microorganisms:A review[J].Molecules,2021,26(11):3438. [29] 孙梅,谭丽,胡敏.抗菌肽抗真菌机制及其临床应用的研究进展[J].中华检验医学杂志,2021,44(6):547-550.SUN M,TAN L,HU M.Research progress on the antifungal mechanisms of antimicrobial peptides and its clinical applications[J].Chinese Journal of Laboratory Medicine,2021,44(6):547-550.(in Chinese) [30] MA H L,ZHAO I Y,YANG L B,et al.Antimicrobial peptide AMP-17 affects Candida albicans by disrupting its cell wall and cell membrane integrity[J].Infection and Drug Resistance,2020,13:2509-2520. [31] MIZUHARA N,KURODA M,OGITA A,et al.Antifungal thiopeptide cyclothiazomycin B1 exhibits growth inhibition accompanying morphological changes via binding to fungal cell wall chitin[J].Bioorganic & Medicinal Chemistry,2011,19(18):5300-5310. [32] 辛艳丽,王静,杨浩杰,等.抗菌肽Hst5抑制串珠镰刀菌生长及作用机制研究[J].食品安全质量检测学报,2022,13(22):7174-7182.XIN Y L,WANG J,YANG H J,et al.Inhibitory effect and mechanism of antibacterial peptide Hst5 on Fusarium moniliforme[J].Journal of Food Safety & Quality,2022,13(22):7174-7182.(in Chinese) [33] SZYMA AN'G SKI M,CHMIELEWSKA S,CZY AZ G EWSKA U,et al.Echinocandins-structure,mechanism of action and use in antifungal therapy[J].Journal of Enzyme Inhibition and Medicinal Chemistry,2022,37(1):876-894. [34] LUO Y,SONG Y Z.Mechanism of antimicrobial peptides:Antimicrobial,anti-inflammatory and antibiofilm activities[J].International Journal of Molecular Sciences,2021,22(21):11401. [35] 赵雅丽.TP1和MS1抗菌肽的抗氧化、抑菌活性及其作用机制[D].郑州:河南农业大学,2022.ZHAO Y L.Antioxidative and antibacterial activities of TP1 and MS1 antimicrobial peptides and their mechanism of action[D].Zhengzhou:Henan Agricultural University,2022.(in Chinese) [36] MORETTA A,SCIEUZO C,PETRONE A M,et al.Antimicrobial peptides:A new hope in biomedical and pharmaceutical fields[J].Frontiers in Cellular and Infection Microbiology,2021,11:668632. [37] ZHANG Q Y,YAN Z B,MENG Y M,et al.Antimicrobial peptides:Mechanism of action,activity and clinical potential[J].Military Medical Research,2021,8(1):48. [38] RAHEEM N,STRAUS S K.Mechanisms of action for antimicrobial peptides with antibacterial and antibiofilm functions[J].Frontiers in Microbiology,2019,10:2866. [39] KUMAGAI P S,SOUSA V K,DONATO M,et al.Unveiling the binding and orientation of the antimicrobial peptide Plantaricin 149 in zwitterionic and negatively charged membranes[J].European Biophysics Journal,2019,48(7):621-633. [40] BROGDEN K A.Antimicrobial peptides:Pore formers or metabolic inhibitors in bacteria?[J].Nature Reviews.Microbiology,2005,3(3):238-250. [41] 周灿.仔猪抗菌肽PR-39与Protegrin-1基因表达调控研究[D].长沙:湖南农业大学,2007.ZHOU C.Study on the regulation of gene expression of antibacterial peptides PR-39 and Protegrin-1 in piglets[D].Changsha:Hunan Agricultural University,2007.(in Chinese) [42] 尹葛子煦.抗菌肽联合用药对白色念珠菌的抑菌作用及机制研究[D].长春:吉林大学,2021.YIN G Z X.Study on bacteriostatic effect and mechanism of antibacterial peptides combined with antibacterial peptides on Candida albicans[D].Changchun:Jilin University,2021.(in Chinese) [43] 王康.蜂毒肽的破膜分子机制及其活性增强策略研究[D].苏州:苏州大学,2021.WANG K.Studies on membrane poration mechanism of melittin and strategy for improving its antibacterial performance[D].Suzhou:Soochow University,2021.(in Chinese) [44] 周天雄.两类抗菌肽的抗菌活性及作用机制比较研究[D].兰州:兰州大学,2019.ZHOU T X.Study on the antimicrobial activity and mechanism of two types of antimicrobial peptides[D].Lanzhou:Lanzhou University,2019.(in Chinese) [45] 孙淑卿.多肽与模型细胞膜界面相互作用的研究[D].苏州:苏州大学,2022.SUN S Q.Study on the interfacial interaction between peptides and model cell membranes[D].Suzhou:Soochow University,2022.(in Chinese) [46] BOND P J,PARTON D L,CLARK J F,et al.Coarse-grained simulations of the membrane-active antimicrobial peptide Maculatin 1.1[J].Biophysical Journal,2008,95(8):3802-3815. [47] 丁康.抗菌肽P255、P256对白色念珠菌作用机制研究[D].合肥:安徽农业大学,2021.DING K.Mechanism of antimicrobial peptides P255 and P256 against Candida albicans[D].Hefei:Anhui Agriculture University,2021.(in Chinese) [48] RAMAMOURTHY G,PARK J,SEO C,et al.Antifungal and antibiofilm activities and the mechanism of action of repeating lysine-tryptophan peptides against Candida albicans[J].Microorganisms,2020,8(5):758. [49] XIE Q,WANG Y,ZHANG M M,et al.Recombinant HNP-1 produced by Escherichia coli triggers bacterial apoptosis and exhibits antibacterial activity against drug-resistant bacteria[J].Microbiology Spectrum,2022,10(1):e00860-21. [50] ROY R N,LOMAKIN I B,GAGNON M G,et al.The mechanism of inhibition of protein synthesis by the proline-rich peptide Oncocin[J].Nature Structural & Molecular Biology,2015,22(6):466-469. [51] KRAGOL G,LOVAS S,VARADI G,et al.The antibacterial peptide Pyrrhocoricin inhibits the ATPase actions of DnaK and prevents chaperone-assisted protein folding[J].Biochemistry,2001,40(10):3016-3026. [52] SOMMA A D,CANō C,MORETTA A,et al.Interaction of Temporin-L analogues with the E.coli FtsZ protein[J].Antibiotics,2021,10(6):704. [53] AGARWAL G,GABRANI R.Antiviral peptides:Identification and validation[J].International Journal of Peptide Research and Therapeutics,2021,27(1):149-168. [54] 张守平,王丽荣,夏小静,等.抗菌肽在抗流感病毒和免疫调节中的作用机制研究进展[J].中国兽医杂志,2017,53(11):60-62.ZHANG S P,WANG L R,XIA X J,et al.Research progress on the mechanism of antimicrobial peptides in anti-Influenza virus and immune regulation[J].Chinese Journal of Veterinary Medicine,2017,53(11):60-62.(in Chinese) [55] XU C,WANG A N,MARIN M,et al.Human defensins inhibit SARS-CoV-2 infection by blocking viral entry[J].Viruses,2021,13(7):1246. [56] BUCK C B,DAY P M,THOMPSON C D,et al.Human α-defensins block Papillomavirus infection[J].Proceedings of the National Academy of Sciences of the United States of America,2006,103(5):1516-1521. [57] HE M,ZHANG H N,LI Y J,et al.Cathelicidin-derived antimicrobial peptides inhibit Zika virus through direct inactivation and interferon pathway[J].Frontiers in Immunology, 2018,9:722. [58] TRIPATHI S,WANG G S,WHITE M,et al.Antiviral activity of the human Cathelicidin,LL-37,and derived peptides on seasonal and pandemic influenza a viruses[J].PLoS One,2015,10(4):e0124706. [59] DOSS M,WHITE M R,TECLE T,et al.Human defensins and LL-37 in mucosal immunity[J].Journal of Leukocyte Biology,2010,87(1):79-92. [60] 李冠楠,夏雪娟,隆耀航,等.抗菌肽的研究进展及其应用[J].动物营养学报,2014,26(1):17-25.LI G N,XIA X J,LONG Y H,et al.Research progresses and applications of antimicrobial peptides[J].Chinese Journal of Animal Nutrition,2014,26(1):17-25.(in Chinese) [61] 靳艳艳.持续高温下大型养殖场动物疾病的防控研究[J].农家参谋,2022,15:99-101.JIN Y Y.Research on the prevention and control of animal diseases in large-scale farms under persistent high temperatures[J].The Farmers Consultant,2022,15:99-101.(in Chinese) [62] 高爽.复合抗菌肽“态康利保”对山羊瘤胃消化代谢及血清生长相关激素含量的影响[D].成都:四川农业大学,2017.GAO S.Effects of recombinant antimicrobial peptides on rumen digestion metabolism and serum growth-related hormone levels in goats[D].Chengdu:Sichuan Agricultural University,2017.(in Chinese) [63] 黄荣春.抗菌肽在猪生产中的应用研究[D].南宁:广西大学,2017.HUANG R C.Research on the application of antibacterial peptides in pig production[D].Nanning:Guangxi University.(in Chinese) [64] 麻秋霞.抗菌肽对猪生长性能的影响[J].中国猪业,2023,18(4):72-74.MA Q X.Effect of antimicrobial peptides on growth performance of pigs[J]. China Swine Industry,2023,18(4):72-74.(in Chinese) [65] 田颖.鲎素抗菌肽对海兰褐蛋鸡产蛋后期蛋品质及子宫CaBP-D28k mRNA表达量影响的研究[D].长春:吉林大学,2016.TIAN Y.Effects of Tachyplesin antibacterial peptide on egg quality and CaBP-D28K expression in the uterus during the late laying period of Hy-Line Brown layers[D].Changchun:Jilin University,2016.(in Chinese) [66] 冀凤杰.抗菌肽对断奶仔猪肠道功能的调控作用及机制研究[D].长沙:湖南师范大学,2021.JI F J.Regulation and mechanism of antimicrobial peptides on intestinal function of weaned piglets[D].Changsha:Hunan Normal University,2021.(in Chinese) [67] 张存昊.活性肽CC34酵母培养物对断奶羔羊抗氧化能力及小肠屏障功能的影响[D].大庆:黑龙江八一农垦大学,2022.ZHANG C H.Effects of active peptide CC34 yeast culture on antioxidant capacity and small intestinal barrier function in weaned lambs[D].Daqing:Heilongjiang Bayi Agricultural University,2022.(in Chinese) [68] 秦龙.抗菌肽CC31单体肽和串联肽对羔羊小肠生长发育、免疫及盲肠菌群的影响[D].大庆:黑龙江八一龙垦大学,2018.QIN L.Effect of anti-peptide CC31 monomer and tandem peptide on small intestine growth,development,immunity and caesal microbiota of lamb[D].Daqing:Heilongjiang Bayi Agricultural University,2018.(in Chinese) [69] 张凯瑛.抗菌肽对肉鸡生长性能、养分利用率和肠道发育的影响[D].泰安:山东农业大学,2021.ZHANG K Y.Effects of antimicrobial peptides on growth performance,nutrient availability and intestinal development of broilers[D].Tai’an:Shandong Agricultural University,2021.(in Chinese) [70] 于曦.鲎素抗菌肽对感染鸡白痢沙门菌雏鸡肠道菌群变化的研究[D].长春:吉林大学,2019.YU X.The effect of Tachyplesin antimicrobial peptides on intestinal microflora of chickens infected with Salmonella Pullorum[D].Changchun:Jilin University,2019.(in Chinese) [71] 王建.饲粮添加抗菌肽Api-PR19对肉鸡生长性能及肠道健康的影响[D].杨凌:西北农林科技大学,2019.WANG J.Effects of Api-PR19 on growth performance and intestine health of broiler chickens[D].Yangling:Northwest A&F University,2019.(in Chinese) [72] 孔祥雨.复合抗菌肽对高精育肥成都麻羊部分血清免疫指标及抗氧化指标的影响[D].成都:四川农业大学,2020.KONG X Y.Effects of antibacterial peptides on serum immune and antioxidant indexes of high-concentration fattened Capra hircus[D].Chengdu:Sichuan Agricultural University,2020.(in Chinese) [73] 严晓莉.饲料中添加抗菌肽对肉牛免疫机能的影响[J].中国动物保健,2022,24(12):64-65.YAN X L.Effect of adding antimicrobial peptides to feed on the immune function of beef cattle[J].China Animal Health,2022,24(12):64-65.(in Chinese) [74] 陈憧.复合抗菌肽对高精料饲喂山羊血清免疫指标及抗氧化能力的影响[D].成都:四川农业大学,2018.CHENG C.Effects of antimicrobial peptides (AMPs) "Taikanglibao" on immune function and antioxidant capacity in serum of high-concentrate feeding goats[D].Chengdu:Sichuan Agricultural University,2018.(in Chinese) [75] FENG J S,WANG L,XIE Y S,et al.Effects of antimicrobial peptide Cathelicidin-BF on diarrhea controlling,immune responses,intestinal inflammation and intestinal barrier function in piglets with postweaning diarrhea[J].International Immunopharmacology,2020,85:106658. [76] 刘梦雪.抗菌肽对蛋鸡生产性能、免疫功能与肠道菌群的影响[D].秦皇岛:河北科技师范学院,2022.LIU M X.Effects of antimicrobial peptides on performance,immune function and intestinal flora of laying hens[D].Qinhuangdao:Hebei Normal University of Science and Technology,2022.(in Chinese) [77] 高盛杰.蝇蛆抗菌肽对黄羽肉鸡生长性能和免疫性能的影响[D].石河子:石河子大学,2022.GAO S J.Effects of fly maggot antimicrobial peptides on growth performance and immune performance of Yellow feather broilers[D].Shihezi:Shihezi University,2022.(in Chinese) [78] 火焱,罗旭光.抗菌肽在反刍动物生产中的应用[J].内蒙古农业大学学报(自然科学版),2011,32(2):319-322.HUO Y,LUO X G.Antimicrobial peptides and its application to ruminant production[J].Journal of Inner Mongolia Agricultural University (Natural Science Edition),2011,32(2):319-322.(in Chinese) [79] 陈代杰.Lyz/TAP重组质粒对奶牛乳腺炎常见病原菌诱导小鼠乳腺炎模型的治疗效果研究[D].扬州:扬州大学,2022.CHEN D J.Therapeutic effect of Lyz/TAP recombinant plasmid on mouse mastitis model induced by common pathogens of dairy cow mastitis[D].Yangzhou:Yangzhou University,2022.(in Chinese) [80] 刘干,姜宁,张爱忠.反刍动物内源抗菌肽的应用及发展前景[J].中国生物制品学杂志,2020,33(4):481-485.LIU G,JIANG N,ZHANG A Z.Application and development prospects of endogenous antimicrobial peptides in ruminants[J].Chinese Journal of Biologicals,2020,33(4):481-485.(in Chinese) [81] 卜华超.抗菌肽对肉鸡感染鼠伤寒沙门氏菌的保护作用[D].泰安:山东农业大学,2022.BU H C.Protective effect of antimicrobial peptides on broilers infected with Salmonella Typhimurium[D].Tai’an:Shandong Agricultural University,2022.(in Chinese) [82] LIANG Q P,CAO L,ZHU C,et al.Characterization of recombinant antimicrobial peptide BMGlv2 heterologously expressed in Trichoderma reesei[J].International Journal of Molecular Sciences,2022,23(18):10291. [83] 陈椿桦.鲎素对仔猪肠道菌群的调控及抗仔猪梭菌性腹泻作用研究[D].长春:吉林大学,2022.CHEN C H.Regulation of intestinal flora and the effect of anti Clostridium diarrhea in piglets by Tachyplesin Ⅰ[D].Changchun:Jilin University,2022.(in Chinese) [84] 宋雪莹,高圣玥,李静,等.抗菌肽种类、生物学功能及在畜禽生产中的应用[J].中国饲料,2024,5:64-68.SONG X Y,GAO S Y,LI J,et al.The types,biological function of antibacterial peptides and its application in livestock and poultry production[J].China Feed,2024,5:64-68.(in Chinese) [85] 朱春玲.治疗牛睾丸炎抗菌肽的筛选及其效果评价[D].长春:吉林大学,2023.ZHU C L.Screening of the antimicrobial peptide against bovine orchitis and its effect evaluation[D].Changchun:Jilin University,2023.(in Chinese) |
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