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Effectiveness of the Complex Microbial Formulation for Disease Protection and Productivity Enhancement of Plants

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Aasfar, A., Yaakoubi, K., Hilalibderraouf, A., Bennis, I., Zeroual, Y., and Kadmiri, I. M. (2021). Nitrogen fixing Azotobacter species as potential soil biological enhancers for crop nutrition and yield stability. Frontiers in Microbiology, 12, 1 – 19. DOI:10.3389/fmicb.2021.628379. Search in Google Scholar

Aipova, R., Abdykadyrova, A. and Kurmanbayev, А. (2020). Biological products in organic agriculture. Рlant Biotechnology and Breeding, 2(4), 36 – 41. DOI:10.30901/2658-6266-2019-4-o4. Search in Google Scholar

Azizbekyan, R. R. (2019). Biological preparations for the protection of agricultural plants (Review). Applied Biochemistry & Microbiology, 55(7), 816 – 823. DOI:10.1134/ S0003683819080027. Search in Google Scholar

Borzykh, O. I., Sergiienko, V. G., Tytova, L. V., Biliavska, L. O., Boroday, V. V., Tkalenko, G. M., and Balan, G. O. (2022). Potential of some bioagents in fungal diseases controlling and productivity enhancement of tomatoes. Archives оf Phytopathology аnd Plant Protection, 55(15), 1750 – 1765. DOI:10.1080/03235408.2022.2116685. Search in Google Scholar

Clare, B. G. (1990). “Agrobacterium” in plant disease, biological disease control and plant genetic engineering. Science Progress (1933-), 74(1), 293, 1 – 13. Available at: http://www.jstor.org/stable/43423873. Search in Google Scholar

Compant, S. (2005). Use of plant growth-promoting bacteria for biocontrol of plant diseases: principles, mechanisms of action, and future prospects. Applied and Environmental Microbiology, 71, 4951 – 4959. DOI:10.1128/AEM.71.9.4951-4959.2005. Search in Google Scholar

Elnahal, A. S. M., El-Saadony, M. T., Saad, A. M., Desoky, E. S. M., El-Tahan, A. M., Rady, M. M., AbuQamar, S. F., and El-Tarabily, K. A. (2022). The use of microbial inoculants for biological control, plant growth promotion, and sustainable agriculture: A review. European Journal of Plant Pathology, 162, 759 – 792. DOI:10.1007/s10658-021-02393-7. Search in Google Scholar

Commission Regulation (EC) No 889/2008 of 5 September 2008. In Official Journal of the European Union, L250, 18.09.2008, pp. 1‒ 84. Available at: http://data.europa.eu/eli/reg/2008/889/2022-01-01 [Accessed 23 April. 2024]. Search in Google Scholar

He, Dun-Chun, He, Meng-Han, Amalin, D. M., Liu, W., Alvindia, D. G., and Zhan, J. (2021). Biological control of plant diseases: An evolutionary and eco-economic consideration. Pathogens, 10(10), 1311. DOI:10.3390/pathogens10101311. Search in Google Scholar

Iutynska, G. A., Tytova, L. V., Pinaev, A. G., Andronow, E. E., and Vozniuk, S. V. (2017). Bioraznoobrazie mikrobioma rizosferi soi pri primenenii fungitsidov i inokulyatsii mikrobnim biopreparatom Ekovital [Microbiome biodiversity of soybean rhizosphere under application of fungicides and inoculation by microbial bioformulation Ecovital]. Microbiology and Biotechnology, 1, 23 – 35 (In Russian). DOI:10.18524/2307-4663.2017.1(37).96322. Search in Google Scholar

Jiménez-Gómez, A., Celador-Lera, L., Fradejas-Bayón, M., and Rivas, R. (2017). Plant probiotic bacteria enhance the quality of fruit and horticultural crops [J]. AIMS Microbiology, 3(3), 483 ‒ 501. DOI:10.3934/microbiol.2017.3.483. Search in Google Scholar

Karnwal, A. (2019). Screening, isolation and characterization of culturable stress-tolerant bacterial endophytes associated with Salicornia brachiata and their effect on wheat (Triticum aestivum L.) and maize (Zea mays) growth. Journal of Plant Protection Research, 59(3), 293 – 303. DOI:10.24425/jppr.2019.129747. Search in Google Scholar

Kirichenko, E. V. and Kots’, S. Y. A. (2011). Ispol’zovaniye Azotobacter chroococcum dlya sozdaniya kompleksnykh biologicheskikh preparatov [Use of Аzotobacter chroococcum for development of complex biological preparations]. Biotechnology, 4(3), 74 – 80 (In Ukrainian). Available at: http://nbuv.gov.ua/UJRN/biot_2011_4_3_11/. Search in Google Scholar

Köhl, J., Kolnaar, R. and Ravensberg, W. J. (2019). Mode of action of microbial biological control agents against plant diseases: relevance beyond efficacy. Frontiers in Plant Science, 10, 845. DOI:10.3389/fpls.2019.00845. Search in Google Scholar

Kolomiyets', YU. V., Tarhonya, V. S. and Hryhoryuk, I. P. (2016). Systemnyy pidkhid do rozroblennya kompleksnykh zakhodiv zakhystu roslyn tomativ na osnovi vykorystannya biotekhnolohichnykh al'ternatyv [A systematic approach to the development of tomato plant integrated protection measures based on biotechnology alternatives]. Ahrobiolohiya, 2, 27 – 33 (In Ukrainian). Available at: http://nbuv.gov.ua/UJRN/agr_2016_2_7 Search in Google Scholar

Kumar, S. V., Kishore, S. A. and Kumar, A. (2017). Disease management of tomato through PGPB: current trends and future perspective. 3 Biotech, 7(4), 255. DOI:10.1007/ s13205-017-0896-1. Search in Google Scholar

Legein, M., Smets, W., Vandenheuvel, D., Eilers, T., Muyshondt, B., Prinsen, E., Samson, R., and Lebeer, S. (2020). Modes of action of microbial biocontrol in the phyllosphere. Frontiers in Microbiology, 11, 1619. DOI:10.3389/fmicb.2020.01619. Search in Google Scholar

Liu, H., Pan, F., Han, X., Song, F., Zhang, Z., Yan, J., and Xu, Y. (2019). Response of soil fungal community structure to long-term continuous soybean cropping. Frontiers in Microbiology, 9, 3316. DOI:10.3389/fmicb.2018.03316. Search in Google Scholar

Manasfi, Y., Cannesan, M., Riah, W., and Bressan, M. (2018). Potential of combined biological control agents to cope with Phytophthora parasitica, a major pathogen of Choisya ternate. European Journal of Plant Pathology, 152, 1011–1025. DOI:10.1007/s10658-018-1495-7. Search in Google Scholar

Ministry of Environmental Protection of Ukraine (2024). Державний реєстр пестицидів і агрохімікатів, дозволених до використання в Україні [State Register of Pesticides and Agrochemicals Approved for Use in Ukraine.]. Available at: https://eco.gov.ua/registers/perelik-pesticidiv-i-agrohimikativ-dozvolenih-dlya-vikoristannya [Accessed 23 April. 2024]. Search in Google Scholar

O’Brien, Ph.A. (2017). Biological control of plant diseases. Australasian Plant Pathology, 46(4), 293 – 304. DOI:10.1007/ s13313-017-0481-4. Search in Google Scholar

Pandit, M. A., Kumar, J., Gulati, S., Bhandari, N., Mehta, P., Katyal, R., Rawat, C. D., Mishra, V., and Kaur, J. (2022). Major biological control strategies for plant pathogens. Pathogens, 11(2), 273. DOI:10.3390/pathogens11020273. Search in Google Scholar

Patent of Ukraine (2014) № 105276. IPC C05F 11/08, C12P 39/00. Kompleksnyy bakterial'nyy preparat Ekophosphoryn dlya obrobky kul'turnykh roslyn [Complex bacterial preparation Ecophosphoryn for the treatment of cultivated plants]. Tytova, L. V., Iutynska, G. O., Brovko, I. S. Publ. 04.25.2014. Bull. №8. (In Ukrainian). Search in Google Scholar

Perez-Garcia, A., Romero, D. and de Vicente, A. (2011). Plant protection and growth stimulation by microorganisms: biotechnological applications of Bacillus in agriculture. Current Opinion in Biotechnology, 22(2), 187 – 93. DOI:10.1016/j.copbio.2010.12.003. Search in Google Scholar

Sergiienko, V. H. (2001). Funhitsydy. Khvoroby kartopli i ovochevykh kulʹtur [Fungicides. Diseases of potatoes and vegetable crops]. In Trybel, S. О. (Ed.) Metodyky vyprobuvannya i zastosuvannya pestytsydiv [Test methods and application of pesticides]. Kyiv: Svit., pp. 277 ‒ 285 (In Ukrainian). Search in Google Scholar

Shoham, J. (2020). Rise of biological products in crop protection and plant nutrition markets. Outlooks on Pest Management, 31(3), 129 131. DOI:10.1564/v31_jun_09. Search in Google Scholar

Tariq, M., Khan, A., Asif, M., Khan, F., Ansari, T., and Shariq, M. (2020). Biological control: a sustainable and practical approach for plant disease management. Review. Acta Agriculturae Scandinavica, Section B-Soil & Plant Science, 70 (6), 507 – 524. DOI:10.1080/09064710.2020.1784262. Search in Google Scholar

Trybel, S. O. (2001). Metody otsinky efektyvnosti [Efficiency assessment methods]. In Trybel, S.О. (Ed.). Metodyky vyprobuvannya i zastosuvannya pestytsydiv [Test methods and application of pesticides]. Kyiv: Svit. Р. 94 ‒ 96 (In Ukrainian). Search in Google Scholar

eISSN:
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Sujets de la revue:
Life Sciences, Plant Science, Ecology, other