- PII
- S3034519725010168-1
- DOI
- 10.7868/S3034519725010168
- Publication type
- Article
- Status
- Published
- Authors
- Volume/ Edition
- Volume / Issue number 1
- Pages
- 71-74
- Abstract
- The effect of the probiotics Vetosporin-Zh, PcheloNormoSil and ApiVrach on the lifespan of bees was studied in laboratory conditions.For this purpose, 26 cages containing 50 three-day-old bees were selected, which were divided into 4 groups (3 experimental groups of 7 cages each and a control group of 5 cages).In the experiment, bees were fed sugar syrup containing drugs in accordance with the instructions for their use. In the control bees were given sugar syrup. The studies were carried out in accordance with “Methodological recommendations for studying the toxic effects of pesticides and biological products on bees”. It was established that of the tested drugs, only Vetosporin-Zh significantly increased the lifesspan of experimental bees compared to the control by 1.4 times. To conduct research in the apiary, 14 bee colonies were selected and divided into 2 equal groups – experimental and control. Experimental colonies were fed 1 liter of sugar syrup containing 1 ml of Vetosporin-Zh three times with an interval of 3 days. Control colonies received syrup without the drug. Inspection of bee colonies was carried out every 12 days, and the number of frames, printed brood and honey in each family was taken into account. Determined that feeding experimental bee colonies with sugar syrup containing Vetosporin Zh – contributed to an increase in their strength by 1.3 times, printed brood and honey by 1.3–1.4 times compared to control families.
- Keywords
- медоносные пчелы пробиотики Ветоспорин-Ж АпиВрач ПчелоНормоСил пчелиные семьи развитие Тюменская область
- Date of publication
- 03.02.2025
- Year of publication
- 2025
- Number of purchasers
- 0
- Views
- 84
References
- 1. Бондырева Л.А., Попеляев А.С. Влияние пробиотических подкормок на состав микрофлоры кишечника пчел // Вестник Алтайского государственного аграрного университета № 1 (207). 2022. С. 79–81. https://doi.org/10.53083/1996-4277-2022-207-1-79-83
- 2. Гайфуллина Л.Р., Салтыкова Е.С., Матниязов Р.Т., Николенко А.Г. Оптимальные условия применения пробиотиков в качестве адаптогенов на основе анализа иммуного статуса медоносной пчелы // Биомика. 2016. Т. 8. № 2. С. 76–81.
- 3. Методические рекомендации по изучению токсического действия пестицидов и биопрепаратов на пчел», М., 1989. 19 с.
- 4. Мишуковская Г.С., Мурзабаев Н.Р., Кузнецова Т.Н. Хозяйственно полезные признаки пчел при использовании микробиологических препаратов // Известия Оренбургского государственного университета. 2013. С. 163–165.
- 5. Мишуковская Г.С., Мурзабаев Н.Р., Кузнецова Т.Н. Пробиотическая кормовая добавка «Ветоспорин-Ж». Пчеловодство. 2014. № 7. С. 14–16.
- 6. Mishukovskaya G., Giniyatullin M., Tuktarov Ya. et al. Effect of Probiotic Feed Additives on Honeybee Colonies Overwintering // American Journal of Animal and Veterinary Sciences 2020. No. 15 (4). PP. 284–290. https://doi.org/10.3844/ajavsp. 2020.284.290
- 7. Mishukovskaya G., Giniyatullin M., Shelekhov D. et al. The use of probiotics in spring supplementary feeding of bee colonies // Bulgarian Journal of Agricultural Science. No 1. 2023. PP. 131–137.
- 8. Brendan A. Daisley, Andrew P. et al. Novel probiotic approach to counter Paenibacillus larvae infection in honey bees // The ISME Journal. 2020. No. 14. PP. 476–491. https://doi.org/10.1038/s41396-019-0541-6
- 9. Fouad M.F. Elshaghabee, Namita Rokana, Rohini D. Gulhane et al. Bacillus As Potential Probiotics: Status, Concerns, and Future Perspectives//Frontiers in Microbiology. 2017. Vol. 8. PP. 1–14. https://doi.org/10.3389/fmicb.2017.01490
- 10. Garrido P.M, Porrlni M.P., Alberoni D. et al. Beneficial Bacteria and Plant Extracts Promote Honey Bee health and Reduce Nosema ceranae Infection // Probiotics and Antimicrobial Proteins. 2024. No. 16. PP. 259–274. https://doi.org/10.1007/s12602
- 11. Iorizzo M., Lombardi S.J, Ganassi S. et al. Antagonistic Activity against Ascosphaera apis and Functional Properties of Lactobacillus kunkeei Strains // Antibiotics. 2020. No. 9. P. 262. https://doi.org/10.3390/antibiotics9050262