首页> 外文期刊>The Journal of Agricultural Science >Effect of yeast with bacteriocin from rumen bacteria on growth performance, caecal flora, caecal fermentation and immunity function of broiler chicks.
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Effect of yeast with bacteriocin from rumen bacteria on growth performance, caecal flora, caecal fermentation and immunity function of broiler chicks.

机译:瘤胃细菌酵母酵母对肉鸡雏鸡生长性能,菌群植物植物,菌菌菌,菌菌发酵及免疫功能的影响。

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The aim of the current study was to investigate the effects of bacteriocin of Ruminococcus albus 7 that is expressed by yeast on growth performance, caecal flora, caecal fermentation and immunity function of broilers. A total of 180, one-day-old healthy broiler chicks were randomly divided into three groups: control, bacteriocin (2.5 g/kg feed) and nosiheptide (NHT) (2.5 mg/kg, as antibiotic control). Growth performance, caecal flora, caecal fermentation products and immunoglobulin (Ig) concentration were determined when chicks were 21 and 35 days old. The gene expression of avian beta -defensin (AvBD) and mucin (MUC2) were measured at 35 days old. The supplementation of bacteriocin and NHT had no significant effect on body weight gain (BWG) during the experimental period. Bacteriocin supplementation significantly enhanced the growth of Lactobacillus (P<0.05) and resulted in higher lactate concentration (P<0.01) in broiler caeca at 21 days old. Both bacteriocin and NHT supplementation resulted in lower Escherichia coil (P=0.072) and Enterococcus (P=0.038) counts than in the control group at 35 days old. The bacteriocin treatment group tended to increase bile IgA and showed higher bile IgA than the NHT treatment group (P=0.059) at 35 days old. Higher levels of AvBD1, AvBD4 and MUC2 gene expression were observed in the NHT treatment group (P<0.05), but expression of AvBD9 was significantly decreased in both bacteriocin and NHT treatment groups (P<0.05). In conclusion, bacteriocin supplementation elevated the caecal Lactobacillus counts and affected the immunity function. These benefits suggested that bacteriocin supplementation could be a potential alternative to antibiotics in broiler feed.
机译:目前研究的目的是探讨由酵母表达对酵母的生长性能,菌群植物群,肉鸡,粘性菌发酵和免疫功能表达的曲霉素7的影响。共180名,一天历史的健康肉鸡雏鸡被随机分为三组:控制,菌株(2.5g / kg饲料)和硝基肽(NHT)(2.5mg / kg作为抗生素对照)。当雏鸡为21和35天时,测定生长性能,粘菌菌群,粘菌,尾发酵产品和免疫球蛋白(Ig)浓度。在35天老测量禽β-二芬素(AVBD)和粘蛋白(MUC2)的基因表达。在实验期间,菌株和NHT的补充对体重增加(BWG)没有显着影响。细菌素补充显着提高了乳酸杆菌的生长(P <0.05),并在21天的肉鸡CAECA中导致较高的乳酸浓度(P <0.01)。细菌素和NHT补充均导致较低的大肠杆菌(P = 0.072)和肠球菌(P = 0.038)计数,而不是在35天的对照组。细菌素治疗组倾向于增加胆汁IgA,并且在35天时显示比NHT治疗组(P = 0.059)更高的胆汁IGA。在NHT处理组中观察到较高水平的AVBD1,AVBD4和MUC2基因表达(P <0.05),但在菌株和NHT治疗组中,AVBD9的表达显着降低(P <0.05)。总之,细菌素补充率升高了粘虫乳杆菌计数并影响了免疫功能。这些益处表明,细菌素补充剂可能是肉鸡饲料中抗生素的潜在替代品。

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