

Acta Veterinaria et Zootechnica Sinica ›› 2025, Vol. 56 ›› Issue (12): 6351-6363.doi: 10.11843/j.issn.0366-6964.2025.12.037
• PREVENTIVE VETERINARY MEDICINE • Previous Articles Next Articles
LÜ Ziyi1, ZHANG Xinbo1, WANG Hongzhi2, GUO Honglei1, ZHAO Chunxu1, LIU Shunbo1, MA Ning1*
Received:2024-07-26
Online:2025-12-23
Published:2025-12-24
CLC Number:
LÜ Ziyi, ZHANG Xinbo, WANG Hongzhi, GUO Honglei, ZHAO Chunxu, LIU Shunbo, MA Ning. Isolation and Identification of a Chicken Source Bacillus subtilis Strain and Its Protective Effect on Diarrhea in Chicks[J]. Acta Veterinaria et Zootechnica Sinica, 2025, 56(12): 6351-6363.
| [1] KIM Y B, YOON M Y, HA J S, et al. Molecular characterization of avian pathogenic Escherichia coli from broiler chickens with colibacillosis[J]. Poult Sci, 2020, 99(2): 1088-1095. [2] KATHAYAT D, LOKESH D, RANJIT S, et al. Avian pathogenic Escherichia coli (APEC): an overview of virulence and pathogenesis factors, zoonotic potential, and control strategies[J]. Pathogens, 2021, 10(4): 467. [3] GUABIRABA R,SCHOULER C. Avian colibacillosis: still many black holes[J]. FEMS Microbiol Lett, 2015, 362(15): fnv118. [4] 张瀚元. 复方中药对鸡大肠杆菌病的治疗效果及其机理研究[D]. 哈尔滨:东北农业大学, 2018. ZHANG H Y. Study on the therapeutic effect and mechanism of compound chinese traditional medicine on chicken colibacillosis[D]. Harbin: Northeast Agricultural University, 2018. (in Chinese) [5] HU J, AFAYIBO D J A, ZHANG B, et al. Characteristics, pathogenic mechanism, zoonotic potential, drug resistance, and prevention of avian pathogenic Escherichia coli (APEC)[J]. Front Microbiol, 2022, 13(13): 1049391. [6] POKHAREL P, DHAKAL S,DOZOIS C M. The diversity of Escherichia coli pathotypes and vaccination strategies against this versatile bacterial pathogen[J]. Microorganisms, 2023, 11(2): 344. [7] 芦洪江. 枯草芽孢杆菌发酵白头翁复方对鸡大肠杆菌感染的预防效果研究[D]. 晋中: 山西农业大学, 2023. LU H J. The preventive effect of the fermented pulsatilla compound by Bacillus subtilis on broiler chickens infected with Escherichia coli[D]. Jinzhong: Shanxi Agricultural University, 2023. (in Chinese) [8] 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]. Poult Sci, 2022, 101(3): 101693. [9] KIMMINAU E A, KARNEZOS T P, BERGHAUS R D, et al. Combination of probiotic and prebiotic impacts Salmonella enteritidis infection in layer hens[J]. J Appl Poult Res, 2021, 30(4): 100200. [10] MARKAZI A, LUOMA A, SHANMUGASUNDARAM R, et al. Effects of drinking water synbiotic supplementation in laying hens challenged with Salmonella[J]. Poult Sci, 2018, 97(10): 3510-3518. [11] ABDEL-RAHEEM S M, EL-HAMID M I A, KHAMIS T, et al. Comprehensive efficacy of nano-formulated mixed probiotics on broiler chickens' performance and Salmonella Typhimurium challenge[J]. Poult Sci, 2024, 103(12): 104334. [12] BAI K, FENG C, JIANG L, et al. Dietary effects of Bacillus subtilis fmbj on growth performance, small intestinal morphology, and its antioxidant capacity of broilers[J]. Poult Sci, 2018, 97(7): 2312-2321. [13] ZHANG L, ZHANG L, ZHAN X, et al. Effects of dietary supplementation of probiotic, Clostridium butyricum, on growth performance, immune response, intestinal barrier function, and digestive enzyme activity in broiler chickens challenged with Escherichia coli K88[J]. J Anim Sci Biotechnol, 2016, 7: 3. [14] XU Y, YU Y, SHEN Y, et al. Effects of Bacillus subtilis and Bacillus licheniformis on growth performance, immunity, short chain fatty acid production, antioxidant capacity, and cecal microflora in broilers[J]. Poult Sci, 2021, 100(9): 101358. [15] 韦家禛. 黄芩苷铜对禽大肠杆菌致雏鸡肠道损伤的防治效果研究[D]. 南昌:江西农业大学, 2022. WEI J Z. Protective mechanism of baicalin-copper complex on intestinal injury caused by Escherichia coli in chicks[D]. Nanchang: Jiangxi Agricultural University, 2022. (in Chinese) [16] 郭世伟. 黄花蒿多糖对大肠杆菌攻毒的肉仔鸡肠道屏障功能的影响及其机理研究[D]. 呼和浩特:内蒙古农业大学, 2024. GUO S W. Study on the effects of artemisia annua L. Polysaccharide on intestinal barrier function of broilers challenged by Escherichia. coli and the underlying mechanism[D]. Hohhot: Inner Mongolia Agricultural University, 2024. (in Chinese) [17] MARTÍN R,LANGELLA P. Emerging health concepts in the probiotics field: streamlining the definitions[J]. Front Microbiol, 2019, 10: 1047. [18] JADAMUS A, VAHJEN W,SIMON O. Growth behaviour of a spore forming probiotic strain in the gastrointestinal tract of broiler chicken and piglets[J]. Arch Tierernahr, 2001, 54(1): 1-17. [19] 刘丹妮, 叶 博, 董 颖, 等. 许氏平鲉肠道来源益生菌的分离、鉴定与生物学特性研究[J]. 水产科学, 2025,44(1) 36-46. LIU D N, YE B, DONG Y, et al. Isolation, identification and biological characteristics of probiotic strains derived from intestine of rockfish Sebastes schlegelii[J]. Fisheries Science, 2025,44(1) 36-46. [20] GHOSH T. Recent advances in the probiotic application of the Bacillus as a potential candidate in the sustainable development of aquaculture[J]. Aquaculture, 2025, 594: 741423. [21] 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]. Poult Sci, 2019, 98(11): 5622-5635. [22] 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]. J Appl Poult Res, 2023, 32(3): 100361. [23] OLADOKUN S,ADEWOLE D. The effect of Bacillus subtilis and its delivery route on hatch and growth performance, blood biochemistry, immune status, gut morphology, and microbiota of broiler chickens[J]. Poult Sci, 2023, 102(4): 102473. [24] LIANG W, LI H, ZHOU H, et al. Effects of Taraxacum and Astragalus extracts combined with probiotic Bacillus subtilis and Lactobacillus on Escherichia coli-infected broiler chickens[J]. Poult Sci, 2021, 100(4): 101007. [25] 钱 荣, 续晓琪, 许宗奇, 等. 枯草芽孢杆菌KC-WQ发酵液中抗菌脂肽的分离鉴定及发酵条件优化[J]. 食品工业科技, 2022, 43(15): 123-131. QIAN R, XU X Q, XU Z Q, et al. Isolation and identification of antibacterial lpopeptides from Bacillus subtilis KC-WQ fermentation broth and optimization of fermentation conditions[J]. Science and Technology of Food Industry, 2022, 43(15): 123-131. [26] 辛 娜, 邓露芳, 郭 亮, 等. 枯草芽孢杆菌体外益生效果评估[J]. 饲料研究, 2022, 45(4): 84-87. XIN N, DENG L F, GUO L, et al. Evaluation of probiotic effect of Bacillus subtilis in vitro[J]. Feed Research, 2022, 45(4): 84-87. [27] 翟召静. 鸡源枯草芽孢杆菌抑菌菌株的分离鉴定及其抑菌组分的初步研究[D]. 泰安: 山东农业大学, 2018. ZHAI Z J. Isolation and identification of antibacterial strains of Bacillus subtilis and the preliminary study of bacteriostasis[D]. Tai'an: Shandong Agricultural University, 2018. (in Chinese) [28] 张云天. 板芪发酵液对雏鸡生长性能影响及大肠杆菌腹泻治疗作用研究[D]. 郑州:河南农业大学, 2024. ZHANG Y T. Study on the effect of banqi fermented liquid on the growth performance of chickens and the therapeutic effect of Escherichia coli diarrhea[D]. Zhengzhou: Henan Agricultural University, 2024. (in Chinese) [29] FATHI M, AL-HOMIDAN I, AL-DOKHAIL A, et al. Effects of dietary probiotic (Bacillus subtilis) supplementation on productive performance, immune response and egg quality characteristics in laying hens under high ambient temperature[J]. Ital J Anim Sci, 2018, 17(3): 804-814. [30] ADIL S,MAGRAY S N. Impact and manipulation of gut microflora in poultry: a review[J]. J Anim Vet Adv, 2012, 11(6): 873-877. [31] KUBASOVA T, KOLLARCIKOVA M, CRHANOVA M, et al. Contact with adult hen affects development of caecal microbiota in newly hatched chicks[J]. PLoS One, 2019, 14(3): e0212446. [32] 于松林, 王腾峰, 耿肖虎, 等. 香连溶液对人工感染鸡大肠杆菌病的治疗效果评价[J]. 中兽医医药杂志, 2024, 43(2): 28-32. YU S L, WANG T F, GENG X H, et al. Evaluation of the therapeutic effect of Xianglian solution on artificially infected colibacillosis in chicken[J]. Journal of Traditional Chinese Veterinary Medicine 2024, 43(2): 28-32. [33] 王旭贞, 芦洪江, 郝松华, 等. 白头翁汤预防禽大肠杆菌病作用机制的研究[J]. 中国预防兽医学报, 2024, 46(7): 674-682. WANG X Z, LU H J, HAO S H, et al. Investigation of the mechanism of Pulsatilla decoction in preventing avian Colibacillosis based on network pharmacology[J]. Chinese Journal of Preventive Veterinary Medicine, 2024, 46(7): 674-682. [34] 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 faecium on performance, egg quality and serum indices of laying hens[J]. Chinese Journal of Animal Nutrition, 2023, 35(10): 6387-6401. [35] JEONG J S,KIM I H. Effect of Bacillus subtilis C-3102 spores as a probiotic feed supplement on growth performance, noxious gas emission, and intestinal microflora in broilers[J]. Poult Sci, 2014, 93(12): 3097-3103. [36] 朱沛霁. 枯草芽孢杆菌对雪山鸡生产性能、肠道健康和免疫机能的影响及机制[D]. 扬州:扬州大学, 2017. ZHU P J. Effects of dietary supplementation of Bacillus subtilis on growth performance, intestinal health and immune functional responses of xueshan broiler[D]. Yangzhou: Yangzhou University, 2017. (in Chinese) [37] 李 铁, 齐梦迪, 张克英, 等. 育雏育成期饲粮添加益生菌对蛋鸡生长性能、血清指标、肠道健康及后续生产性能的影响[J]. 畜牧兽医学报, 2024, 55(3): 1062-1076. LI T, QI M D, ZHANG K Y, et al. Effects of dietary probiotics supplementation during brood-rearing periodon growth performance, serum biochemistry, intestinal healthand subsequent performance of laying hens[J]. Acta Veterinaria et Zootechnica Sinica, 2024, 55(3): 1062-1076. [38] GELINAS A, SUDAN S, PATTERSON R, et al. Growth performance, organs weight, intestinal histomorphology, and oocyst shedding in broiler chickens offered novel single strain Bacillus subtilis isolated from camel dung and challenged with eimeria[J]. Poult Sci, 2024, 103(4): 103519. [39] RODRIGUES R A, SILVA L A M, BRUGNERA H C, et al. Association of Bacillus subtilis and Bacillus amyloliquefaciens: minimizes the adverse effects of necrotic enteritis in the gastrointestinal tract and improves zootechnical performance in broiler chickens[J]. Poult Sci, 2024, 103(3): 103394. [40] 张名爱, 杨文娇, 张泽楠, 等. 低铜饲粮添加枯草芽孢杆菌对5~16周龄五龙鹅肠道发育、微生物菌群结构及血清酶活性的影响[J]. 动物营养学报, 2017, 29(9): 3175-3183. ZHANG M A, YANG W J, ZHANG Z N, et al. Effects of dietwith low copper level and adding Bacillus subtilis intestinal development, microbial community structure and serum enzyme activity of wuling geese ged from 5 to 16 weeks[J]. Chinese Journal of Animal Nutrition, 2017, 29(9): 3175-3183. [41] SHAMOTO K,YAMAUCHI K. Recovery responses of chick intestinal villus morphology to different refeeding procedures[J]. Poult Sci, 2000, 79(5): 718-723. [42] SCHALLMEY M, SINGH A,WARD O P. Developments in the use of Bacillus species for industrial production[J]. Can J Microbiol, 2004, 50(1): 1-17. [43] WINZELL M S, SVENSSON H, ARNER P, et al. The expression of hormone-sensitive lipase in clonal beta-cells and rat islets is induced by long-term exposure to high glucose[J]. Diabetes, 2001, 50(10): 2225-2230. [44] TANG W, QIAN Y, YU B, et al. Effects of Bacillus subtilis DSM32315 supplementation and dietary crude protein level on performance, gut barrier function and microbiota profile in weaned piglets1[J]. J Anim Sci, 2019, 97(5): 2125-2138. [45] 潘 雪. 两种不同枯草芽孢杆菌对AA肉仔鸡生产性能和肠道健康的影响[D]. 泰安:山东农业大学, 2021. PAN X. Effects of two different Bacillus subtilis on growth performance and intestinal health of AA broiler chickens[D]. Tai'an: Shandong Agricultural University, 2021. (in Chinese) [46] LIU Y L, YAN T, LI X Y, et al. Effects of Bacillus subtilis and antibiotic growth promoters on the growth performance, intestinal function and gut microbiota of pullets from 0 to 6 weeks[J]. Animal, 2020, 14(8): 1619-1628. [47] 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]. Poult Sci, 2024, 103(12): 104319. [48] SOKALE A O, MENCONI A, MATHIS G F, et al. Effect of Bacillus subtilis DSM 32315 on the intestinal structural integrity and growth performance of broiler chickens under necrotic enteritis challenge[J]. Poult Sci, 2019, 98(11): 5392-5400. [49] 刘叶青. 枯草芽孢杆菌和壳寡糖对肉鸡抗氧化、免疫和肠道屏障功能的影响[D]. 呼和浩特:内蒙古农业大学, 2023. LIU Y Q. Effects of Bacillus subtilis and chito-oligosaccharides on antioxidant, immune and intestinal barrier function in broilers[D]. Hohhot: Inner Mongolia Agricultural University, 2023. (in Chinese) [50] ERINLE T J, MACISAAC J, YANG C, et al. Effect of red osier dogwood extract on growth performance, blood biochemical parameters, and gut functionality of broiler chickens challenged or unchallenged intraperitoneally with Salmonella enteritidis lipopolysaccharide[J]. Poult Sci, 2022, 101(7): 101861. [51] 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]. Can J Anim Sci, 2020, 100(3): 411-417. [52] HOSSEINDOUST A, MOHAMMADI M, YAO Z P, et al. Dietary Bacillus subtilis B2A strain in laying hens challenged with Salmonella gallinarum: effects on egg production, egg quality, blood haptoglobin and targeted intestinal Salmonella shedding[J]. Journal of Applied Animal Research, 2017, 46(1): 512-517. [53] DENG Z, LUO X M, LIU J, et al. Quorum sensing, biofilm, and intestinal mucosal barrier: involvement the role of probiotic[J]. Front Cell Infect Microbiol, 2020, 10: 538077. [54] REN S, WANG C, CHEN A, et al. The probiotic Lactobacillus paracasei ameliorates diarrhea cause by Escherichia coli O8 via gut microbiota modulation1[J]. Front Nutr, 2022, 9: 878808. [55] ZHANG Q, LI J, WANG G, et al. The replacement of bacitracin methylene disalicylate with Bacillus subtilis PB6 in the diet of male Cherry Valley Ducks reduces the feed conversion ratio by improving intestinal health and modulating gut microbiota[J]. Poult Sci, 2022, 101(11): 102155. [56] 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. [57] XING J H, ZHAO W, LI Q Y, et al. Bacillus subtilis BSH has a protective effect on Salmonella infection by regulating the intestinal flora structure in chickens[J]. Microb Pathog, 2021, 155: 104898. |
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