Microbiological Status of Grass Silages in Relation to Agricultural Practices: A Four-Year Study
Foods
Oglądaj/ Open
Data
2026Autor
Kukier, Elżbieta
Bocian, Łukasz
Pytka, Monika
Metadane
Pokaż pełny rekordStreszczenie
The microbiological quality of silage, a fundamental component of cattle feed, is critical to
both animal health and human safety. This long-term study evaluated the microbiological
status of grass silages collected from Polish cattle farms, aiming to assess the prevalence of
zoonotic agents and hygiene indicators in relation to pre-ensiling and ensiling agricultural
practices. A total of 160 grass silage samples were randomly collected nationwide by
veterinary officers across various municipalities. The researchers measured pH values
and conducted analyses to determine the presence and loads of pathogens, including
Listeria spp., Clostridium spp., Salmonella spp., Escherichia coli, and Bacillus cereus. Only
17.5% of grass silages fell within the optimal target pH range. Conversely, 80.6% exceeded
the upper reference threshold, indicating widespread poor fermentation and low silage
quality. Listeria species were detected in 5.6% of the forages, occurring exclusively in
silages with an incorrect pH. Clostridium spp. were highly prevalent, testing positive in
82.5% of all samples, while C. perfringens (predominantly toxotype A) was identified in
26.2%. Both Salmonella spp. and botulinum neurotoxin-producing Clostridia were detected
in separate, single samples, both characterized by high pH levels. Additionally, fungal
counts reached high, non-feedable levels exceeding 6 log10 cfu/g in 10.6% of the tested
silages. Silage inoculation, practiced by 26.2% of farmers, significantly lowered pH values
and reduced the counts of spoilage microorganisms. Additionally, inoculated silages
had a more than three-fold greater likelihood of achieving the correct pH. In contrast,
organic fertilization was associated with an increase in the mean counts of Clostridium spp.
and B. cereus. In conclusion, grass silage is highly vulnerable to poor fermentation and
microbial contamination.
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