Author:
Yildirim E. A.,Ilina L. A.,Laptev G. Yu.,Smetannikova T. S.,Filippova V. A.
Abstract
Diseases that occur in such a multifactorial system as animal husbandry are determined not only by internal factors of the body, for example, the composition of the microflora of the digestive system, but also by external factors, such as feed. The aim of the study was to analyze the similarity of the microbiota of silage fed to cows with the composition of the microflora of their rumen and milk using the NGS sequencing method. The experiment was carried out on one of the commercial farms of the Leningrad region. The bacterial community of the contents of rumen, milk and silage from perennial cereals and legumes was evaluated by NGS sequencing on the MiSeq platform (Illumina, Inc., USA) with primers for the V3-V4 region of the 16S rRNA gene. As a result of the study, 22 phylum of attributed microorganisms were found in the microflora of silage, 24 to 30 phylum of rumen, 18 phylum of milk. Similar taxa of microorganisms were identified in silage, rumen and milk, the main difference was noted in quantitative ratios (P≤0.05). For example, the amount of Firmicutes in silage was 52.9 ± 3.45%, in milk - 11.8 ± 0.78%. This suggests that there may be some relationship between the studied biotopes. Pathogenic microorganisms, including the causative agents of mastitis, were present in many samples. The genera Staphylococcus, Acinetobacter, Streptococcus and Fusobacterium were identified by us as the most represented (P≤0.05) in the composition of the milk microflora. Their content was 0.24±0.023, 1.8±1.23, 1.0±0.06 and 0.35±0.031%, respectively. Probably, the microflora of the rumen can influence the formation of the milk microbiota.
Reference29 articles.
1. Klauke T., Risk Based Approach towards More Sustainablilty in European Pig Production (University of Bonn, Bonn, Germany, 2012)
2. Petersen B., Nüssel M., Hamer M., “Quality and risk management in agri-food chains”, in European Review of Agricultural Economics (Wageningen Academic Publishers, Wageningen, The Netherlands, 2014)
3. Specific microbiome-dependent mechanisms underlie the energy harvest efficiency of ruminants
4. The rumen microbiome: a crucial consideration when optimising milk and meat production and nitrogen utilisation efficiency
5. Breast milk, microbiota, and intestinal immune homeostasis