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Qora son va fuzarioz ildiz chirishi koʻkat sabzavotlarning eng xavfli kasalliklaridan hisoblanadi. Kasallik
taʼsirida urugʻlarning chirib ketishi va ildizchalarning chirishi natijasida koʻchatlarning katta qismi yoʻqotilishiga olib keladi.
Ushbu maqolada koʻkat sabzavot ekinlari (shivit, petrushka va selder) da qorason va fuzarioz ildiz chirish kasalligiga qarshi
biopreparatlarning samaradorligini oʻrganish boʻyicha olib borilgan tajribamiz natijalari keltirildi. Tajriba natijasiga koʻra,
Fitodok BS26 biofungitsidini 2,0 ml/kg sarf-meʼyorda shivitda 78,7%, petrushkada 76,6% hamda selderda 78,0% biologik
samaradorlikni namoyon qildi.

  • Internet havola
  • DOI10.63241/2025415akhv
  • UzSCI tizimida yaratilgan sana 04-10-2025
  • O'qishlar soni 81
  • Nashr sanasi 26-09-2025
  • Asosiy tilO'zbek
  • Sahifalar45-47
Ўзбек

Qora son va fuzarioz ildiz chirishi koʻkat sabzavotlarning eng xavfli kasalliklaridan hisoblanadi. Kasallik
taʼsirida urugʻlarning chirib ketishi va ildizchalarning chirishi natijasida koʻchatlarning katta qismi yoʻqotilishiga olib keladi.
Ushbu maqolada koʻkat sabzavot ekinlari (shivit, petrushka va selder) da qorason va fuzarioz ildiz chirish kasalligiga qarshi
biopreparatlarning samaradorligini oʻrganish boʻyicha olib borilgan tajribamiz natijalari keltirildi. Tajriba natijasiga koʻra,
Fitodok BS26 biofungitsidini 2,0 ml/kg sarf-meʼyorda shivitda 78,7%, petrushkada 76,6% hamda selderda 78,0% biologik
samaradorlikni namoyon qildi.

Русский

Чёрная ножка и фузариозная корневая гниль являются одними из самых опасных заболеваний зелёных
овощных культур. Под воздействием этих болезней происходит загнивание семян и корешков, что приводит к
массовой гибели сеянцев. В данной статье приведены результаты нашего эксперимента по изучению эффективности
биопрепаратов против заболеваний чёрной ножки и фузариозной корневой гнили у зелёных овощей (укроп, петрушка и
сельдерей). По результатам опыта биофунгицид Фитодок BS26, применённый в норме 2,0 мл/кг, показал биологическую
эффективность 78,7% у укропа, 76,6% у петрушки и 78,0% у сельдерея.

English

Black rot and Fusarium root rot are among the most dangerous diseases affecting leafy vegetable crops. Under
the influence of these diseases, seed decay and rootlet rot can lead to significant seedling loss. This article presents the results
of our experiment on evaluating the effectiveness of biological preparations against black rot and Fusarium root rot in leafy
vegetable crops (dill, parsley, and celery). According to the experimental results, the biofungicide Phytodoc BS26, applied at
a rate of 2.0 ml/kg, demonstrated biological efficacy of 78.7% in dill, 76.6% in parsley, and 78.0% in celery.

Muallifning F.I.Sh. Lavozimi Tashkilot nomi
1 Babajanova .A. mustaqil izlanuvchi Toshkent davlat agrar universiteti
Havola nomi
1 1. Mathre, D. E., Johnston, R. H., & Grey, W. E. (2001). Controlled environment and field evaluations of fungicide seed treatments for control of Fusarium crown and root rot of spring wheat. Plant Disease, 85(5), 561–566
2 2. Smiley, R. W., Paulitz, T. C., Wilkins, D. E., Yan, H., & Sprague, L. (2013). Fungicide seed treatments provide effective protection against Fusarium crown and root rot in wheat. Plant Disease, 97(3), 309–314
3 3. Abdelrhim, A. S., et al. (2023). Comparative Study of Three Biological Control Agents and Two Conventional Fungicides against Coriander Damping-off and Root Rot (Rhizoctonia solani). Plants, 12(8), 1694
4 4. Lamichhane, J. R., Dürr, C., Schwanck, A. A., Robin, M. H., Sarthou, J. P., Cellier, V., ... & Aubertot, J. N. (2017). Integrated management of damping-off diseases: a review. Agronomy for Sustainable Development, 37, 10
5 5. Lamichhane, J. R. (2022). Biological seed treatments promote crop establishment: A meta-analysis. Agronomy for Sustainable Development, 42, 56.
6 6. Harman, G. E. (2000). Myths and dogmas of biocontrol: Changes in perceptions derived from research on Trichoderma harzianum T-22. Plant Disease, 84(4), 377–393.
7 7. Compant, S., Duffy, B., Nowak, J., Clément, C., & Barka, E. A. (2005). Use of plant growth-promoting bacteria for biocontrol of plant diseases: principles, mechanisms of action, and future prospects. Applied and Environmental Microbiology, 71(9), 4951–4959.
8 8. Mastouri, F., Björkman, T., & Harman, G. E. (2010). Seed treatment with Trichoderma harzianum alleviates biotic, abiotic stresses. Phytopathology, 100(11), 1213–1221.
9 9. Coninck, E. de, Scauflaire, J., Gollier, M., Liénard, C., & Munaut, F. (2020). Trichoderma atroviride seed coating reduces Fusarium damping-off. Biological Control, 144, 104240
10 10. Fravel, D. (2003). Commercialization and implementation of biocontrol of Fusarium oxysporum. New Phytologist, 157(3), 493–502.
11 11. Mao, W., Lewis, J. A., Lumsden, R. D., & Hebbar, K. P. (1997). Seed treatment with fungal and bacterial biocontrol agents for control of soil-borne pathogens of soybean. Plant Di sease, 81(4), 450–454.
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