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
CSTR:
作者:
作者单位:

华中农业大学动物医学院, 武汉 430070

作者简介:

楚玉婷,E-mail:ChuYuTing@webmail.hzau.edu.cn

通讯作者:

谷长勤,E-mail:guchangqin@mail.hzau.edu.cn

中图分类号:

S852.3

基金项目:

国家肉鸡产业技术体系项目(CARS-41);湖北省农业科技创新中心项目(2019-620-000-001-17)


Preventive effect of Bacillus subtilis compound microbial preparation on chicken necrotic enteritis
Author:
Affiliation:

College of Veterinary Medicine, Huazhong Agricultural University,Wuhan 430070,China

  • 摘要
  • |
  • 图/表
  • |
  • 访问统计
  • |
  • 参考文献 [20]
  • |
  • 相似文献 [20]
  • | | |
  • 文章评论
    摘要:

    为了研发有效预防鸡坏死性肠炎(necrotic enteritis,NE)的微生态制剂,选用1日龄817雏鸡120只,随机分为4个处理组,其中,空白对照(Control)组和坏死性肠炎(NE)组(用G型产气荚膜梭菌感染肉仔鸡建立NE模型)饲喂基础日粮、预防1(Prob1)组在基础日粮中添加0.2%的微生物制剂1、预防2(Prob2)组在基础日粮中添加0.2%的微生物制剂2;试验第14~16 天Prob1组、Prob2组和NE组肉鸡连续灌胃产气荚膜梭菌(Clostridium perfringens,CP),探究在饲料中添加不同的枯草芽孢杆菌复合微生物制剂对该病的预防作用。结果显示:NE组肉鸡体质量低于Control组,试验第17、23天Prob1组、Prob2组体质量显著高于NE组(P<0.05)。NE组肉鸡空肠上皮细胞坏死脱落、绒毛变短、隐窝加深、绒隐比降低,使用枯草芽孢杆菌复合微生物制剂后肉鸡空肠绒毛结构较完整、绒毛长度和绒隐比显著高于NE组。NE组肉鸡空肠黏膜T-SOD、T-AOC、AKP活性低于Control组;试验第17天Prob1组、Prob2组肉鸡空肠黏膜T-AOC、AKP活性显著高于NE组,Prob1组肉鸡空肠黏膜T-SOD活性显著高于NE组;试验第23天,Prob1组、Prob2组肉鸡空肠黏膜T-SOD、T-AOC、AKP活性高于NE组,无显著差异; NE组肉鸡空肠黏膜MDA含量高于Control组,试验第17、23天Prob1组、Prob2组肉鸡空肠黏膜MDA含量低于NE组。NE组肉鸡的肠道紧密连接蛋白CLDN1ZO-2基因表达量低于Control组,在试验第17天有显著差异;试验第17、23天,Prob1组、Prob2组肉鸡肠道紧密连接蛋白CLDN1ZO-2基因表达量高于NE组,试验第23天Prob1组、Prob2组ZO-1基因表达量显著高于NE组。研究表明,日粮中添加枯草芽孢杆菌复合微生物制剂可以改善坏死性肠炎鸡的生长发育、提高肉鸡抗氧化能力以及肠道紧密连接蛋白基因表达量,且枯草芽孢杆菌复合微生物制剂1对鸡坏死性肠炎有较好的预防作用。

    Abstract:

    In order to find effective microecological preparations for preventing necrotic enteritis (NE) in chickens in this study, a total of 120 one-day-old 817 chickens were randomly divided into four treatment groups. Control group and NE group (broiler model of NE established by infecting with Clostridium perfringens type G) were fed a basal diet. Probiotic group (Prob1) was fed a basal diet supplemented with 0.2% microbial agent 1, and probiotic group (Prob2) was fed a basal diet supplemented with 0.2% microbial agent 2. On days 14 to 16, broilers in Prob1, Prob2 and NE groups were treated with Clostridium perfringens (CP) by continuous gavage. The preventive effects of the two different Bacillus subtilis compound microbial preparations on NE of broilers were evaluated in the 23-day trial period. The results showed that, on day 17, the body weight of broilers in the NE group was lower than that of the control group. However, broilers in the Prob1 and Prob2 groups had a higher body weight at the 17th and 23rd days of the experiment compared to the NE group. The jejunal epithelial cells of broilers in the NE group were necrotic and exfoliated, with a shorter villus, deeper crypt, and smaller villus length and villus crypt ratio compared to the NE group treated with B. subtilis compound microbial preparation. The activities of T-SOD, T-AOC and AKP in the jejunal mucosa of broilers in the NE group were lower than those in the Control group. However, on day 17, the T-AOC and AKP activities in the jejunal mucosa of broilers in the Prob1 and Prob2 groups were significantly higher than those in the NE group, and the T-SOD activity of jejunal mucosa of broilers in Prob1 group was significantly higher than that in NE group. On day 23, the activities of T-SOD, T-AOC and AKP in jejunal mucosa of broilers in the Prob1 and Prob2 groups were higher than those in the NE group, and there were no significant differences. The content of MDA in jejunal mucosa of broilers in the NE group was higher than that in the control group, and the content of MDA in the Prob1 and Prob2 groups was lower than that in the NE group at the 17th and 23rd days. The gene expressions of intestinal tight junction protein CLDN1 and ZO-2 in the NE group were lower than those in the Control group, and there were significant differences on day 17 of the experiment. On the 17th and 23rd days of the experiment, expressions of the intestinal tight junction protein CLDN1 and ZO-2 genes in the Prob1 and Prob2 groups were higher than those in the NE group, and the expressions of ZO-1 gene in the Prob1 and Prob2 groups were significantly higher than those in the NE group. The results showed that adding B. subtilis compound microbial preparation to the diet could improve the growth and development of chickens with necrotizing enteritis, increase the antioxidant capacity and intestinal tight junction protein gene expression of broilers, and B. subtilis compound microbial preparation 1 had a better preventive effect on chicken necrotic enteritis.

    表 1 荧光定量PCR引物Table 1 Primers for fluorescent quantitative PCR
    表 5 肉鸡空肠紧密连接蛋白基因表达量Table 5 Expression of jejunum mucosal barrier gene in broilers
    图1 肉鸡空肠的组织病理学变化(10 ×)Fig.1 The histopathological lesions of jejunum of broilers (10 ×)
    表 4 肉鸡空肠黏膜抗氧化指标Table 4 Antioxidant indexes of jejunum mucosa of broilers
    表 3 肉鸡空肠黏膜层的变化Table 3 The mucosa changes of jejunum of broilers
    表 2 肉鸡体质量和平均日增重Table 2 Body weight and average daily gain of broilers
    参考文献
    [1] ROOD J I,ADAMS V,LACEY J,et al.Expansion of the Clostridium perfringens toxin-based typing scheme[J].Anaerobe,2018,53:5-10.
    [2] WADE B,KEYBURN A L,SEEMANN T,et al.Binding of Clostridium perfringens to collagen correlates with the ability to cause necrotic enteritis in chickens[J].Veterinary microbiology,2015,180(3/4):299-303.
    [3] WILLIAMS R B.Intercurrent coccidiosis and necrotic enteritis of chickens:rational,integrated disease management by maintenance of gut integrity[J].Avian pathology,2005,34(3):159-180.
    [4] ADHIKARI P,KIESS A,ADHIKARI R,et al.An approach to alternative strategies to control avian coccidiosis and necrotic enteritis[J].Journal of applied poultry research,2020,29(2):515-534.
    [5] EMAMI N K,WHITE M B,CALIK A,et al.Managing broilers gut health with antibiotic-free diets during subclinical necrotic enteritis[J/OL].Poultry science,2021,100(5):101055[2023-05-17].https://doi.org/10.1016/j.psj.2021.101055.
    [6] 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 with English abstract).
    [7] EMAMI N K,CALIK A,WHITE M B,et al.Necrotic enteritis in broiler chickens:the role of tight junctions and mucosal immune responses in alleviating the effect of the disease[J/OL].Microorganisms,2019,7(8):231[2023-05-17].https://doi.org/10.3390/microorganisms7080231.
    [8] DU E C,WANG W W,GAN L P,et al.Effects of thymol and carvacrol supplementation on intestinal integrity and immune responses of broiler chickens challenged with Clostridium perfringens[J/OL].Journal of animal science and biotechnology,2016,7:19[2023-05-17].https://doi.org/10.1186/s40104-016-0079-7.
    [9] GRILLI E,MESSINA M R,CATELLI E,et al.Pediocin A improves growth performance of broilers challenged with Clostridium perfringens[J].Poultry science,2009,88(10):2152-2158.
    [10] 胡均,张克英,白世平,等.枯草芽孢杆菌对产气荚膜梭菌攻毒肉鸡生长性能和肠道健康的影响[J].动物营养学报,2019,31(5):2127-2135.HU J,ZHANG K Y,BAI S P,et al.Effects of Bacillus subtilis on growth performance and intestinal health of broilers challenged by Clostridium perfringens[J].Chinese journal of animal nutrition,2019,31(5):2127-2135 (in Chinese with English abstract).
    [11] WU Q J,ZHENG X C,WANG T,et al.Effect of dietary oridonin supplementation on growth performance,gut health,and immune response of broilers infected with Salmonella pullorum[J/OL].Irish veterinary journal,2018,71:16[2023-05-17].https://doi.org/10.1186/s13620-018-0128-y.
    [12] 连丽娜,侯金旺,孙寒雪,等.复合益生菌对黄羽肉鸡生长发育、肠道形态及免疫功能的影响[J].畜牧与兽医,2022,54(9):26-31.LIAN L N,HOU J W,SUN H X,et al.Effects of compound probiotics on growth and development,intestinal morphology and immunity of yellow-feathered broilers[J].Animal husbandry & veterinary medicine,2022,54(9):26-31 (in Chinese with English abstract).
    [13] 许笑.丁酸梭菌改善坏死性肠炎患鸡肠黏膜屏障机制的初步研究[D].杨凌:西北农林科技大学,2022.XU X.Preliminary studies on the roles of Clostridium butyricum for ameliorating gut mucosal barrier of broiler chickens with necrotic enteritis[D].Yangling:Northwest A & F University,2022 (in Chinese with English abstract).
    [14] YAO W L,ZHANG Y H,ZHANG W D,et al.Pathological mechanism of intestinal mucosal barrier injury of large intestine dampness-heat syndrome rats and the protective effect of Yujin powder[J].Research in veterinary science,2022,152:485-496.
    [15] 闫永林,徐达良.花青素对急性肾损伤小鼠丙二醛、超氧化物歧化酶、总抗氧化能力的影响[J].中国社区医师,2021,37(18):4-5.YAN Y L,XU D L.The effect of anthocyanin on MDA,SOD and T-AOC in mice with acute kidney injury[J].Chinese community doctors,2021,37(18):4-5 (in Chinese with English abstract).
    [16] STEVANOVI? Z D,BO?NJAK-NEUMüLLER J,PAJI?-LIJAKOVI? I,et al.Essential oils as feed additives-future perspectives[J/OL].Molecules,2018,23(7):1717[2023-05-17].https://doi.org/10.3390/molecules23071717.
    [17] 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 with English abstract).
    [18] 唐慧琴,王振华,潘康成,等.重组枯草芽孢杆菌SE1制剂对肉鸡生长、抗氧化能力及免疫功能的影响[J].中国预防兽医学报,2018,40(3):248-252.TANG H Q,WANG Z H,PAN K C,et al.Effect of recombinant Bacillus subtilis SE1 on the growth,antioxidant capacity and immune function of broilers[J].Chinese journal of preventive veterinary medicine,2018,40(3):248-252 (in Chinese with English abstract).
    [19] FISHMAN W H.Alkaline phosphatase isozymes:recent progress[J].Clinical biochemistry,1990,23(2):99-104.
    [20] LIU W,HU D,HUO H Z,et al.Intestinal alkaline phosphatase regulates tight junction protein levels[J].Journal of the American College of Surgeons,2016,222(6):1009-1017.
    引证文献
    网友评论
    网友评论
    分享到微博
    发 布
引用本文

楚玉婷,朱阳华,谢长清,程国富,胡薛英,张万坡,谷长勤.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

复制
分享
文章指标
  • 点击次数:188
  • 下载次数: 760
  • HTML阅读次数: 80
  • 引用次数: 0
历史
  • 收稿日期:2023-05-17
  • 在线发布日期: 2024-06-06
文章二维码