Nguyen A T V, Nguyen D V, Tran M T, Nguyen L T, Nguyen A H, Phan T-N
Key Laboratory of Enzyme and Protein Technology, VNU University of Science, Hanoi, Vietnam.
ANABIO Research & Development JSC, Ha Dong, Hanoi, Vietnam.
Lett Appl Microbiol. 2015 Jun;60(6):580-8. doi: 10.1111/lam.12411. Epub 2015 Mar 29.
Spore-forming bacterial strains were isolated from chicken gastrointestinal tracts to develop a heat-stable feed supplement that promotes weight gain in broilers. Seven Bacillus strains having more than 90% sporulation were screened from the isolates and identified to be closely related with Bacillus subtilis and Bacillus licheniformis. Of the seven strains, B. subtilis CH16 was selected to develop a feed supplement for broilers, because it formed 100% heat-stable spores, grew rapidly at 42°C and quickly formed a biofilm. In large-scale trials in broilers (n ≥ 1150 per group), the group fed CH16 (3 × 10(6) CFU g(-1) pellet) showed higher average daily gain (ADG = 61·16) and lower food conversion ratio (FCR = 1·696) than did the group fed B. licheniformis CH22 (ADG = 57·10 and FCR = 1·792), the group fed B. subtilis HU58 (ADG = 51·90 and FCR = 1·868), BioPlus group (ADG = 59·32 and FCR = 1·807) and the control group (ADG = 56·02 and FCR = 1·880). In conclusion, CH16 spores significantly increased ADG by 9·17% and reduced FCR by 9·79% in broilers. The result supports the use of B. subtilis CH16 of chicken intestinal origin as a feed supplement that promote weight gain in broilers. Significance and impact of the study: This study reports screening of Bacillus strains isolated from chicken gastrointestinal tracts for development of a feed supplement that promote weight gain in broilers. Of the seven Bacillus isolates with high sporulation efficiency (≥90%), Bacillus subtilis CH16 strain showed the best growth and biofilm formation at body temperature of broilers (42°C). In large-scale trials in broilers (n ≥ 1150 per group), CH16 spores induced a 9·17% increase in daily weight gain (ADG) and a 9·79% reduction in FCR while the commercial BioPlus(®) YC induced only a 5·89% increase in ADG and a 3·88% reduction in FCR.
从鸡的胃肠道中分离出形成芽孢的细菌菌株,以开发一种能促进肉鸡体重增加的热稳定饲料添加剂。从分离出的菌株中筛选出七株芽孢形成率超过90%的芽孢杆菌菌株,并鉴定它们与枯草芽孢杆菌和地衣芽孢杆菌密切相关。在这七株菌株中,选择枯草芽孢杆菌CH16来开发肉鸡饲料添加剂,因为它能形成100%的热稳定芽孢,在42°C下生长迅速并能快速形成生物膜。在肉鸡的大规模试验中(每组n≥1150),喂食CH16(3×10(6) CFU g(-1)颗粒饲料)的组比喂食地衣芽孢杆菌CH22(平均日增重=57·10,饲料转化率=1·792)、喂食枯草芽孢杆菌HU58(平均日增重=51·90,饲料转化率=1·868)、BioPlus组(平均日增重=59·32,饲料转化率=1·807)和对照组(平均日增重=56·02,饲料转化率=1·880)的组显示出更高的平均日增重(平均日增重=61·16)和更低的饲料转化率(饲料转化率=1·696)。总之,CH16芽孢显著提高了肉鸡的平均日增重9·17%,并降低了饲料转化率9·79%。该结果支持使用鸡肠道来源的枯草芽孢杆菌CH16作为促进肉鸡体重增加的饲料添加剂。研究的意义和影响:本研究报告了从鸡胃肠道中分离芽孢杆菌菌株以开发促进肉鸡体重增加的饲料添加剂的筛选过程。在七株芽孢形成效率高(≥90%)的芽孢杆菌分离株中,枯草芽孢杆菌CH16菌株在肉鸡体温(42°C)下表现出最佳的生长和生物膜形成能力。在肉鸡的大规模试验中(每组n≥1150),CH16芽孢使日增重(平均日增重)增加了9·17%,饲料转化率降低了9·79%,而商业产品BioPlus(®) YC仅使平均日增重增加了5·89%,饲料转化率降低了3·88%。