Legrand Thibault P R A, Alexandre Pâmela A, Wilson Annaleise, Farr Ryan J, Reverter Antonio, Denman Stuart E
CSIRO Agriculture & Food, St Lucia, Queensland, Australia.
CSIRO Health & Biosecurity, Geelong, Victoria, Australia.
Sci Data. 2025 Apr 1;12(1):547. doi: 10.1038/s41597-025-04919-8.
Understanding the intricate nexus between cattle health and microbiome dynamics holds profound implications for enhancing animal productivity and welfare. However, our understanding of the role of these microbial communities is limited in beef cattle, especially in understudied body sites such as the oral and nasal microbiome. Here, using a genome-centric metagenomics approach, we recovered substantial metagenome-assembled genomes (MAGs) from the faecal, oral and nasal microbiome of Australian Angus cattle from different herds and life stages. The MAGs recovered from faecal samples were dominated by Bacillota and Bacteroidota, while the MAGs from saliva and nasal mucus samples were mainly associated with Pseudomonadota, Actinomycetota and Bacteroidota. Functional annotation of the MAGs revealed enriched pathways involved in the production of some amino acids, nucleic acids and short chain fatty acids (SCFA). The metabolic capacities of the MAGs were correlated with their taxonomy, notably at the phylum level. Overall, this study provides a comprehensive catalogue of MAGs to further our understanding of their role in the health and fitness of beef cattle.
了解牛的健康与微生物组动态之间的复杂联系对提高动物生产力和福利具有深远意义。然而,我们对这些微生物群落作用的理解在肉牛中有限,尤其是在口腔和鼻腔微生物组等研究不足的身体部位。在这里,我们采用以基因组为中心的宏基因组学方法,从不同牛群和生命阶段的澳大利亚安格斯牛的粪便、口腔和鼻腔微生物组中获得了大量宏基因组组装基因组(MAG)。从粪便样本中获得的MAG主要由芽孢杆菌门和拟杆菌门主导,而从唾液和鼻黏液样本中获得的MAG主要与假单胞菌门、放线菌门和拟杆菌门相关。MAG的功能注释揭示了参与某些氨基酸、核酸和短链脂肪酸(SCFA)产生的丰富途径。MAG的代谢能力与其分类学相关,特别是在门水平上。总体而言,本研究提供了一个全面的MAG目录,以进一步加深我们对它们在肉牛健康和适应性中作用的理解。