Shi Jinping, Lei Yu, Li Zemin, Jia Li, He Pengjia, Cheng Qiang, Zhang Zhao, Lei Zhaomin
College of Animal Science and Technology, Gansu Agricultural University, Lanzhou, 730070, China.
Northwest A&F University, College of Animal Science and Technology, Yangling, 712100, China.
Probiotics Antimicrob Proteins. 2024 Oct 23. doi: 10.1007/s12602-024-10379-0.
We previously observed that supplementation with antimicrobial peptides facilitated the average daily weight gain, net meat, and carcass weights of Holstein bulls. To expand our knowledge of the possible impact of antimicrobial peptides on cecum microbiota, further investigations were conducted. In this study, 18 castrated Holstein bulls with insignificant weight differences and 10 months of age were split randomly into two groups. The control group (CK) was fed a basic diet, whereas the antimicrobial peptide group (AP) was supplemented with 8 g of antimicrobial peptides for 270 days. After slaughter, metagenomic and metabolomic sequencing analyses were performed on the cecum contents. The results showed significantly higher levels of amylase, cellulase, protease, and lipase in the CK than in the AP group (P ≤ 0.05). The levels of β-glucosidase and xylanase (P ≤ 0.05), and acetic and propionic acids (P ≤ 0.01), were considerably elevated in the AP than in the CK group. The metagenome showed variations between the two groups only at the bacterial level, and 3258 bacteria with differences were annotated. A total of 138 differential abundant genes (P < 0.05) were identified in the CAZyme map, with 65 genes more abundant in the cecum of the AP group and 48 genes more abundant in the cecum of the CK group. Metabolomic analysis identified 68 differentially expressed metabolites. Conjoint analysis of microorganisms and metabolites revealed that Lactobacillus had the greatest impact on metabolites in the AP group and Brumimicrobium in the CK group. The advantageous strains of the AP group Firmicutes bacterium CAG:110 exhibited a strong symbiotic relationship with urodeoxycholic acid and hyodeoxycholic acid. This study identified the classification characteristics, functions, metabolites, and interactions of cecal microbiota with metabolites that contribute to host growth performance. Antimicrobial peptides affect the cecal microorganisms, making the use of nutrients more efficient. The utilization of hemicellulose in the cecum of ruminants may contribute more than cellulose to their production performance.
我们之前观察到,补充抗菌肽可促进荷斯坦公牛的平均日增重、净肉量和胴体重。为了进一步了解抗菌肽对盲肠微生物群可能产生的影响,我们开展了进一步研究。本研究中,将18头体重差异不显著、10月龄的去势荷斯坦公牛随机分为两组。对照组(CK)饲喂基础日粮,而抗菌肽组(AP)在270天内补充8克抗菌肽。屠宰后,对盲肠内容物进行宏基因组和代谢组测序分析。结果显示,CK组中淀粉酶、纤维素酶、蛋白酶和脂肪酶的水平显著高于AP组(P≤0.05)。AP组中β-葡萄糖苷酶和木聚糖酶的水平(P≤0.05)以及乙酸和丙酸的水平(P≤0.01)显著高于CK组。宏基因组显示两组仅在细菌水平存在差异,共注释出3258种有差异的细菌。在碳水化合物活性酶图谱中鉴定出138个差异丰富基因(P<0.05),其中65个基因在AP组盲肠中更为丰富,48个基因在CK组盲肠中更为丰富。代谢组分析鉴定出68种差异表达代谢物。微生物与代谢物的联合分析表明,乳酸菌对AP组代谢物的影响最大,而布氏微小杆菌对CK组代谢物的影响最大。AP组厚壁菌门细菌CAG:110的优势菌株与熊去氧胆酸和猪去氧胆酸表现出强烈的共生关系。本研究确定了盲肠微生物群的分类特征、功能、代谢物以及与有助于宿主生长性能的代谢物之间的相互作用。抗菌肽影响盲肠微生物,使营养物质的利用更加高效。反刍动物盲肠中半纤维素的利用对其生产性能的贡献可能比纤维素更大。