Zhang Liya, Ben Said Laila, Hervé Nadège, Zirah Séverine, Diarra Moussa Sory, Fliss Ismail
Institute of Nutrition and Functional Foods, Université Laval, QC, Québec, Canada.
Sollio Agriculture, Montréal, QC, Canada.
J Anim Sci Biotechnol. 2022 Mar 5;13(1):34. doi: 10.1186/s40104-022-00683-6.
Since the overuse of antibiotics in animal production has led to a selection of antibiotic-resistant pathogens that affect humans and animals as well. Scientists are therefore searching for novel natural alternatives to antibiotics. In this study Lactobacillus reuteri and a combination of reuterin and microcin J25 (RJ) were evaluated as promoters of growth and modulators of the cecal microbiota and metabolite profiles in broiler chickens. One-day-old Cobb 500 male broilers were distributed to 8 treatments: negative control (without antibiotic), positive control (bacitracin), three concentrations of RJ and three doses of L. reuteri plus glycerol. The birds (2176, 34 per pen, 8 pens per treatment) were reared for 35 d.
The body weight of the bacitracin and 5 mmol/L reuterin combined with 0.08 μmol/L microcin J25 (10RJ) treatment group was significantly higher than that of the negative control group (P < 0.05). L. reuteri had no significant effect on broiler growth. MiSeq high-throughput sequencing of 16S rRNA showed clustering of cecal microbial operational taxonomic unit diversity according to treatment. The influence of bacitracin and 10RJ on bacterial community overall structure was similar. They promoted Ruminococcaceae, Lachnospiraceae and Lactobacillaceae, increased the relative abundance of Faecalibacterium and decreased the abundance of Bacteroides and Alistipes, while the negative control condition favored Bacteroidaceae and Rikenellaceae. Furthermore, 10RJ increased the concentration of short-chain fatty acid in the cecum and changed the metabolome overall.
These overall suggest that 10RJ can promote a host-friendly gut environment by changing the cecal microbiome and metabolome. This combination of natural antimicrobial agents in the drinking water had a positive effect on broiler growth and may be suitable as an alternative to antibiotic growth promoters.
由于动物生产中抗生素的过度使用导致了对抗生素耐药的病原体的出现,这些病原体对人类和动物都会产生影响。因此,科学家们正在寻找新型的抗生素天然替代品。在本研究中,评估了罗伊氏乳杆菌以及罗伊氏菌素和微小菌素J25(RJ)的组合对肉鸡生长的促进作用以及对盲肠微生物群和代谢物谱的调节作用。将1日龄的科宝500雄性肉鸡分为8个处理组:阴性对照(无抗生素)、阳性对照(杆菌肽)、三种浓度的RJ以及三剂罗伊氏乳杆菌加甘油。这些鸡(共2176只,每栏34只,每个处理8栏)饲养35天。
杆菌肽组以及5 mmol/L罗伊氏菌素与0.08 μmol/L微小菌素J25组合(10RJ)处理组的体重显著高于阴性对照组(P < 0.05)。罗伊氏乳杆菌对肉鸡生长无显著影响。16S rRNA的MiSeq高通量测序显示,盲肠微生物操作分类单元多样性根据处理分组聚类。杆菌肽和10RJ对细菌群落总体结构的影响相似。它们促进了瘤胃球菌科、毛螺菌科和乳杆菌科的生长,增加了粪杆菌属的相对丰度,降低了拟杆菌属和艾氏菌属的丰度,而阴性对照条件有利于拟杆菌科和理研菌科。此外,10RJ增加了盲肠中短链脂肪酸的浓度并改变了整体代谢组。
总体而言,这些结果表明10RJ可通过改变盲肠微生物组和代谢组来促进宿主友好型肠道环境。这种饮用水中天然抗菌剂的组合对肉鸡生长有积极影响,可能适合作为抗生素生长促进剂的替代品。