中国畜牧兽医 ›› 2025, Vol. 52 ›› Issue (8): 3976-3986.doi: 10.16431/j.cnki.1671-7236.2025.08.045
• 基础兽医 • 上一篇
巴弘历, 马宁
收稿日期:
2024-12-06
发布日期:
2025-08-02
通讯作者:
马宁
E-mail:maning9618@163.com
作者简介:
巴弘历,E-mail:bahongli1234@163.com。
基金资助:
BA Hongli, MA Ning
Received:
2024-12-06
Published:
2025-08-02
摘要: 在现代养殖业快速发展的背景下,蛋鸡养殖业仍面临诸多挑战,其中肠道疾病尤为突出。传统抗生素治疗虽能在一定程度上控制疾病,但随之而来的细菌耐药性、肠道菌群失衡以及治疗成本增加等问题不容忽视。因此,探索安全有效、可替代抗生素的新型产品对于蛋鸡养殖业的可持续发展显得尤为关键。枯草芽孢杆菌(Bacillus subtilis,B.subtilis)属于革兰阳性非致病性芽孢杆菌,具有强大抗逆性,可作为绿色、无残留的添加剂应用于蛋鸡养殖业。该菌能有效定殖于蛋鸡肠道中,通过抑制蛋鸡肠道致病菌生长和促进有益菌群生长,维持蛋鸡肠道菌群平衡。同时,其可通过提高蛋鸡体内抗体水平,增强蛋鸡免疫力,维持蛋鸡肠道健康。此外,枯草芽孢杆菌可通过提高蛋鸡肠道绒毛高度、降低隐窝深度等,维持蛋鸡肠道形态结构。在蛋鸡养殖实践中,枯草芽孢杆菌的应用可显著提升蛋鸡生产性能,包括改善蛋品质、提高产蛋量和降低料蛋比等。笔者综述了枯草芽孢杆菌的生物学特征、在蛋鸡肠道中的作用及不同菌种枯草芽孢杆菌在蛋鸡中的应用效果,旨在为饲用枯草芽孢杆菌的后续开发及利用提供参考。
中图分类号:
巴弘历, 马宁. 枯草芽孢杆菌调控蛋鸡肠道健康的作用机制及应用研究进展[J]. 中国畜牧兽医, 2025, 52(8): 3976-3986.
BA Hongli, MA Ning. Research Progress on the Mechanism and Application of Bacillus subtilis in Regulating Intestinal Health of Laying Hens[J]. China Animal Husbandry & Veterinary Medicine, 2025, 52(8): 3976-3986.
[1] LONE A,MOTTAWEA W,MEHDI Y,et al.Bacteriocinogenic probiotics as an integrated alternative to antibiotics in chicken production—Why and how?[J].Critical Reviews in Food Science and Nutrition,2021,62(31):8744-8760. [2] ZOU X,JIANG S,ZHANG M,et al.Effects of Bacillus subtilis on production performance,bone physiological property,and hematology indexes in laying hens[J].Animals,2021,11(7):2041. [3] ZAMOJSKA D,NOWAK A,NOWAK I,et al.Probiotics and postbiotics as substitutes of antibiotics in farm animals:A review[J].Animals,2021,11(12):3431. [4] LI W,FENG J,LI J,et al.Surface display of antigen protein VP8* of Porcine rotavirus on Bacillus subtilis spores using CotB as a fusion partner[J].Molecules,2019,24(20):3793. [5] KOVÁCS Á T.Bacillus subtilis[J].Trends in Microbiology,2019,27(8):724-725. [6] 赵萍,刘建钗.枯草芽孢杆菌表达系统研究进展[J].北方牧业,2024,22(12):27. ZHAO P,LIU J C.Progress on the expression system of Bacillus subtilis[J].Northern Pastoralism,2024,22(12):27.(in Chinese) [7] RILEY E P,SCHWARZ C,DERMAN A I,et al.Milestones in Bacillus subtilis sporulation research[J].Microbial Cell,2020,8(1):1-16. [8] MA D,TIAN S,QIN Q,et al.Construction of an inhalable recombinant M2e-FP-expressing Bacillus subtilis spores-based vaccine and evaluation of its protection efficacy against influenza in a mouse model[J].Vaccine,2023,41(30):4402-4413. [9] 袁尽涛.肉鸭养殖中枯草芽孢杆菌的应用分析[J].中国动物保健,2023,25(11):67-68. YUAN J T.Analysis of the application of Bacillus subtilis in meat duck breeding[J].China Animal Health,2023,25(11):67-68.(in Chinese) [10] 张关锋,杨泰,宋先凡,等.枯草芽孢杆菌的生理功能及其在畜禽生产中的应用[J].中国畜牧兽医,2024,51(4):1511-1519. ZHANG G F,YANG T,SONG X F,et al.Physiological functions of Bacillus subtilis and its application in livestock and poultry production[J].China Animal Husbandry & Veterinary Medicine,2024,51(4):1511-1519.(in Chinese) [11] ZHANG G,AN Y,ZABED H,et al.Bacillus subtilis spore surface display technology:A review of its development and applications[J].Journal of Microbiology and Biotechnology,2019,29(2):179-190. [12] REN J,YU D,LI N,et al.Biological characterization and whole-genome analysis of Bacillus subtilis MG-1 isolated from mink fecal samples[J].Microorganisms,2023,11(12):2821. [13] SU Y,LIU C,FANG H,et al.Bacillus subtilis:A universal cell factory for industry,agriculture,biomaterials and medicine[J].Microbial Cell Factories,2020,19(1):173. [14] 王宏浩.饲用枯草芽孢杆菌ZX-11发酵工艺及抑菌特性的研究[D].石家庄:河北科技大学,2022. WANG H H.Study on the fermentation process and bacteriostatic properties of Bacillus subtilis ZX-11 for feeding purposes[D].Shijiazhuang:Hebei University of Science and Technology,2022.(in Chinese) [15] 赵怀宝,彭辉.家禽肠道健康与肠道屏障的关系及其营养调控[J].饲料研究,2024,47(10):138-143. ZHAO H B,PENG H.Relationship between intestinal health and intestinal barrier in poultry and its nutritional regulation[J].Feed Research,2024,47(10):138-143.(in Chinese) [16] SUDHA S S,ARANGANATHAN V.Antibiofilm analysis,synergistic potential and biocompatibility evaluation of a bacteriocin from Bacillus subtilis (MK733983)[J].Indian Journal of Microbiology,2024,64(4):1646-1663. [17] 吴孔阳,娄亚芳,杨同香,等.枯草芽孢杆菌功能及相关机制研究进展[J].黑龙江畜牧兽医,2020,23:55-58. WU K Y,LOU Y F,YANG T X,et al.Progress in the study of functions and related mechanisms of Bacillus subtilis[J].Heilongjiang Animal Science and Veterinary Medicine,2020,23:55-58.(in Chinese) [18] DI J,CHU Z,ZHANG S,et al.Evaluation of the potential probiotic Bacillus subtilis isolated from two ancient sturgeons on growth performance,serum immunity and disease resistance of Acipenser dabryanus[J].Fish & Shellfish Immunology,2019,93:711-719. [19] 宁中华.健康养殖就要使肠道健康[J].北方牧业,2020,18(14):16-17. NING Z H.Healthy farming requires maintaining a healthy gut[J].Northern Pastoralism,2020,18(14):16-17.(in Chinese) [20] RYCHLIK I.Composition and function of chicken gut microbiota[J].Animals,2020,10(1):103. [21] AANGELES D M,SCHEFFERS D J.The cell wall of Bacillus subtilis[J].Current Issues in Molecular Biology, 2021,43(1):539-596. [22] WANG S Y,HAN D C,SONG C,et al.Membrane biofouling retardation by zwitterionic peptideand its impact on the bacterial adhesion[J].Environmental Science and Pollution Research,2019,26(16):16674-16681. [23] ARELLANO A K,ASCENCIO V F J,GUTTERREZ G P,et al.Hydrophobic and adhesive patterns of lactic acid bacteria and their antagonism against foodborne pathogens on tomato surface (Solanum lycopersicum L.)[J].Journal of Applied Microbiology,2020,129(4):876-891. [24] 李寒梅.枯草芽孢杆菌影响肉鸡肠道脂代谢的机制研究[D].杨凌:西北农林科技大学,2023. LI H M.Mechanisms of Bacillus subtilis effecting intestinal lipid metabolism in broilers[D].Yangling:Northwest A&F University,2023.(in Chinese) [25] 付强,郭时金,王建军,等.枯草芽孢杆菌复合制剂对蛋鸡生产性能和肠道菌群的影响[J].饲料研究,2024,47(15):34-39. FU Q,GUO S J,WANG J J,et al.Effect of Bacillus subtilis complex on performance and intestinal flora of laying hens[J].Feed Research,2024,47(15):34-39.(in Chinese) [26] JINNO C,LI X,LIU Y.Dietary supplementation of Bacillus subtilis or antibiotics modified intestinal microbiome of weaned pigs under enterotoxigenic Escherichia coli infection[J].Frontiers in Microbiology,2022,13:1064328. [27] ALI F,SAEED K,FATEMEH H.Nano-bio selerum sihthesied by Bacillus subtilis modulates broiler performance,intestinal morphology and mrcrobiota,and expression of tight junction’s proteins[J].Biological Trace Element Research,2022,200(4):1811-1825. [28] 李响,关鹏,栾超,等.丁酸钠、益生菌和酶制剂对白羽肉鸡生长性能、肠道健康及肠道微生物组成的影响[J].饲料研究,2020,43(7):130-134. LI X,GUAN P,LUAN C,et al.Effect of sodium butyrate,probiotics and enzymes on growth performance,intestinal health and microbial composition in White feather broiler[J].Feed Research,2020,43(7):130-134.(in Chinese) [29] EMAMI N K,WHITE M B,CALIK A,et al.Managing broilers gut health with antibiotic-free diets during subclinical necrotic enteritis[J].Poultry Science,2021,100(5):101055. [30] 陈锁,卜华超,赵栋栋,等.枯草芽孢杆菌B-1165制剂对产气荚膜梭菌感染肉鸡生长性能和肠道健康的影响[J].畜牧与兽医,2022,54(8):56-65. CHEN S,BU H C,ZHAO D D,et al.Effects of Bacillus subtilis B-1165 preparations on growth performance and intestinal health of broilers infected with Clostridium perfringens[J].Animal Husbandry & Veterinary Medicine,2022,54(8):56-65.(in Chinese) [31] QIN Y,ANGELINI L L,CHAI Y.Bacillus subtilis cell differentiation,biofilm formation and environmental prevalence[J].Microorganisms,2022,10(6):1108. [32] KHALIFA A,IBRAHIM H M,SHEIKH A.Bacillus subtilis PM5 from camel milk boosts chicken immunity and abrogates Salmonella Entertitidis infections[J].Microorganisms,2023,11(7):1719. [33] 张福兴,聂福旭,唐文雅,等.枯草芽孢杆菌的生物学作用及在家禽生产中的应用研究进展[J].国外畜牧学(猪与禽),2024,44(1):69-72. ZHANG F X,NIE F X,TANG W Y,et al.Progress in the study of the biological role of Bacillus subtilis and its application in poultry production[J].Animal Science Abroad (Pigs and Poultry),2024,44(1):69-72.(in Chinese) [34] 林瑾,时祥柱,王芳婷,等.固态发酵橄榄渣制备枯草芽孢杆菌微生态制剂研究[J].石家庄职业技术学院学报,2023,35(6):1-5. LIN J,SHI X Z,WANG F T,et al.Solid state fermentation of olive residues for Bacillus subtilis microecologics[J].Journal of Shijiazhuang University of Applied Technology, 2023,35(6):1-5.(in Chinese) [35] DAI H,WU B,ZHUANG Y,et al.Dynamic in situ detection in iRhizo-Chip reveals diurnal fluctuations of Bacillus subtilis in the rhizosphere[J].Proceedings of the National Academy of Sciences of the United States of America,2024,121(40):e1886256175. [36] FELIX K A,KUEBUTORNYE,EMMANUEL D A,et al.A review on the application of Bacillus as probiotics in aquaculture[J].Fish & Shellfish Immunology,2019,87:820-828. [37] QIU K,LI C L,WANG J,et al.Effects of dietary supplementation with Bacillus subtilis,as an alternative to antibiotics,on growth performance,serum immunity,and intestinal health in broiler chickens[J].Frontiers in Nutrition,2021,8:786878. [38] ZOU X Y,ZHANG M,TU W J,et al.Bacillus subtilis inhibits intestinal inflammation and oxidative stress by regulating gut flora and related metabolites in laying hens[J].Animal,2022,16(3):100474. [39] CLARK-SNUSTAD K D,SINGLA A,LEE S D,et al.Efficacy of infliximab in Crohn’s disease patients with prior primary-nonresponse to tumor necrosis aactor antagonists[J].Digestive Diseases and Sciences,2019,64(7):1952-1958. [40] GUO M,LI M,ZHANG C,et al.Dietary administration of the Bacillus subtilis enhances immune responses and disease resistance in chickens[J].Frontiers in Microbiology,2020,11:1768. [41] LIN J,HUANG L,LI Y,et al.Bacillus subtilis spore-trained dendritic cells enhance the generation of memory T cells via ICAM1[J].Cells,2021,10(9):2267. [42] DUAN H,WANG L,HUANG F M,et al.The impact of microbiota-derived short-chain fatty acids on macrophage activities in disease:Mechanisms and therapeutic potentials[J].Biomedecine & Pharmacotherapie,2023,165:115276. [43] CAI Y,XIAO C,TIAN B,et al.Dietary probiotic based on a dual-strain B.subtilis improves immunity,intestinal health and growth performance of broiler chickens[J].Journal of Animal Science,2024,3:102. [44] ZHANG L,YI H.An exopolysaccharide from Bacillus subtilis alleviates airway inflammatory responses via the NF-κB and STAT6 pathways in asthmatic mice[J].Bioscience Reports,2022,42(1):BSR20212461. [45] GHIMIRE S,SUBEDI K,ZHANG X,et al.Efficacy of Bacillus subtilis probiotic in preventing necrotic enteritis in broilers:A systematic review and Meta-analysis[J].Avian Pathology,2024,53(6):451-466. [46] YANG J,WANG J,HUANG K,et al.Selenium enriched Bacillus subtilis yb-1114246 activated the TLR2-NF-κB1 signaling pathway to regulate chicken intestinal β-defensin 1 expression[J]. Food & Function,2021,12(13):5913-5926. [47] JURICOVA H,MATIASOVICOVA J,FALDYNOVA M,et al.Probiotic lactobacilli do not protect chickens against Salmonella Enteritidis infection by competitive exclusion in the intestinal tract but in feed,outside the chicken host[J].Microorganisms,2022,10(2):219. [48] JIANG L,BAI K,WANG T.Bacillus subtilis fmbj ameliorates lipopolysaccharide-induced intestinal dysfunction in broilers by enhancing the SIRT1/PGC1α pathway[J].Poultry Science,2024,103(8):103964. [49] FAN W,SHI J,WANG B,et al.Effects of zinc and Bacillus subtilis on the reproductive performance,egg quality,nutrient digestion,intestinal morphology,and serum antioxidant capacity of geese breeders[J].Poultry Science,2022,101(3):101677. [50] 楚玉婷,朱阳华,谢长清,等.枯草芽孢杆菌复合微生物制剂对鸡坏死性肠炎的预防效果[J].华中农业大学学报,2024,43(3):275-281. CHU Y T,ZHU Y H,XIE Z Q,et al.Preventive effect of Bacillus subtilis complex microbial preparation on necrotising enteritis in chickens[J].Journal of Huazhong Agricultural University,2024,43(3):275-281.(in Chinese) [51] ZHANG R,LI Z,GU X,et al.Probiotic Bacillus subtilis LF11 protects intestinal epithelium against Salmonella infection[J].Frontiers in Cellular and Infection Microbiology,2022,12:837886. [52] GOMEZ-OSORIO L M,NIELSEN J U,MARTENS H J,et al.Upgrading the nutritional value of PKC using a Bacillus subtilis derived monocomponent β-mannanase[J].Molecules,2022,27(2):563. [53] 齐梦迪,李铁,张克英,等.枯草芽孢杆菌和屎肠球菌长期添加对蛋鸡生产性能、蛋品质和血清指标的影响[J].动物营养学报,2023,35(10):6387-6401. QI M D,LI T,ZHANG K Y,et al.Effects of long-term supplementation of Bacillus subtilis and Enterococcus faecalis on performance,egg quality and serum indices of laying hens[J].Chinese Journal of Animal Nutrition,2023,35(10):6387-6401.(in Chinese) [54] 李铁,齐梦迪,张克英,等.育雏期饲粮中添加益生菌对蛋鸡育雏育成期生长发育、免疫功能和肠道微生物的影响[J].中国畜牧杂志,2024,60(5):299-305. LI T,QI M D,ZHANG K Y,et al.Effects of probiotic addition to broodstock diets on growth and development,immune function and intestinal microbiology of laying hens during brood-rearing and rearing period[J].Chinese Journal of Animal Science,2024,60(5):299-305.(in Chinese) [55] 李安东,孙新堂,肖华平,等.枯草芽孢杆菌与屎肠球菌对蛋鸡生产性能、蛋品质、血清生化、免疫指标和肠道微生物的影响[J].饲料研究,2024,47(2):31-35. LI A D,SUN X T,XIAO H P,et al.Effects of Bacillus subtilis and Enterococcus faecalis on performance,egg quality,serum biochemistry,immunological indices and gut microbiology in laying hens[J].Feed Research,2024,47(2):31-35.(in Chinese) [56] DELEON C,WIERSEMA M L,ARABA M,et al.Effects of a commercial Bacillus subtilis supplementation on late lay hen performance,egg quality,and microbial communities[J].Journal of Applied Poultry Research,2023,32(3):100361. [57] 赵佳霓,岳淑英,罗正,等.枯草芽孢杆菌PB6制剂对产蛋后期蛋鸡生产性能、蛋品质、抗氧化能力和肠道菌群的影响[J].中国畜牧杂志,2024,60(6):298-302. ZHAO J N,YUE S Y,LUO Z,et al.Effect of Bacillus subtilis PB6 preparation on performance,egg quality,antioxidant capacity and intestinal flora in late laying hens[J].Chinese Journal of Animal Science,2024,60(6):298-302.(in Chinese) [58] WANG J,ISHFAQ M,MIAO Y,et al.Dietary administration of Bacillus subtilis KC1 improves growth performance,immune response,heat stress tolerance,and disease resistance of broiler chickens[J].Poultry Science,2021,101(3):101693. [59] WANG J,WANG W W,QI G H,et al.Effects of dietary Bacillus subtilis supplementation and calcium levels on performance and eggshell quality of laying hens in the late phase of production[J].Poultry Science,2020,100(3):100970. [60] LIAO C,CUI J,LEI J,et al.Effects of Bacillus subtilis natto NB205 and its mutant NBMK308 on egg quality in aging laying hens[J].Life-Basel,2023,13(5):1109. [61] WICKRAMASURIYA S S,PARK I,LEE Y,et al.Orally delivered Bacillus subtilis expressing chicken NK-2 peptide stabilizes gut microbiota and enhances intestinal health and local immunity in coccidiosis-infected broiler chickens[J].Poultry Science,2023,102(5):102590. [62] SUN L,LIU Y,XIAO P,et al.Probiotic Bacillus subtilis QST713 improved growth performance and enhanced the intestinal health of Yellow-feather broilers challenged with coccidia and Clostridium perfringens[J].Poultry Science,2024,103(12):104316. [63] 潘兴亮,王玉田,郑瑞峰,等.抑菌型枯草芽孢杆菌在蛋鸡生产上的应用效果评价[J].当代畜禽养殖业,2020,41(12):5-6. PAN X L,WANG Y T,ZHENG R F,et al.Evaluation of the application effect of antibacterial Bacillus subtilis in laying hen production[J].Modern Animal Husbandry,2020,41(12):5-6.(in Chinese) [64] OKETCH E O,YU M,HONG J S,et al.Laying hen responses to multi-strain Bacillus-based probiotic supplementation from 25 to 37 weeks of age[J].Animal Bioscience,2024,37(8):1418-1427. [65] SHI H,ZHANG W L,KIM I H.Effects of dietary Bacillus subtilis RX7 and B2A supplementation on productive performance,egg quality,blood profiles,and excreta Salmonella counts in laying hens[J].Canadian Journal of Animal Science,2020,100(3):411-417. [66] ZHANG G,WANG H,ZHANG J,et al.Modulatory effects of Bacillus subtilis on the performance,morphology,cecal microbiota and gut barrier function of laying hens[J].Animals,2021,11(6):1523. [67] LIU X,PENG C,QU X,et al.Effects of Bacillus subtilis C-3102 on production,hatching performance,egg quality,serum antioxidant capacity and immune response of laying breeders[J].Journal of Animal Physiology and Animal Nutrition,2019,103(1):182-190. [68] NEIJAT M,SHIRLEY R B,BARTON J,et al.Effect of dietary supplementation of Bacillus subtilis DSM29784 on hen performance,egg quality indices,and apparent retention of dietary components in laying hens from 19 to 48 weeks of age[J].Poultry Science,2019,98(11):5622-5635. [69] 段昌学,许建勋,边青青,等.枯草芽孢杆菌用于蛋鸡生产排污减量技术推广效益研究[J].中国畜禽种业,2022,18(12):92-95. DUAN C X,XU J X,BIAN Q Q,et al.Study on the benefits of Bacillus subtilis for the promotion of effluent reduction technology in egg production[J].The Chinese Livestock and Poultry Breeding,2022,18(12):92-95.(in Chinese) |
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