Development of biologized system of protection of garden strawberry against dominant berry rot in the conditions of Western Ciscaucasia

In connection with an increase in the harmfulness of pathogens causing berry rot on strawberries, a high risk of developing resistance to chemical synthesis drugs and a long waiting period for these fungicides, research on the selection of microbiological means of protecting crops from the dominant...

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Main Authors: Kashchits Yulia, Yakuba Galina
Format: Article
Language:English
Published: EDP Sciences 2021-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/30/e3sconf_farba2021_07008.pdf
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spelling doaj-dd43604931b84c018e22291ad1e48f372021-05-28T12:41:42ZengEDP SciencesE3S Web of Conferences2267-12422021-01-012540700810.1051/e3sconf/202125407008e3sconf_farba2021_07008Development of biologized system of protection of garden strawberry against dominant berry rot in the conditions of Western CiscaucasiaKashchits YuliaYakuba GalinaIn connection with an increase in the harmfulness of pathogens causing berry rot on strawberries, a high risk of developing resistance to chemical synthesis drugs and a long waiting period for these fungicides, research on the selection of microbiological means of protecting crops from the dominant pathogens of berry rot is relevant. The purpose of the research: assessment of the biological effectiveness against sulfur and berry’s anthracnose rot of microbiological preparations and the development of regulations for their use in the conditions of the Western Ciscaucasia. The studies were carried out in 2019-2020 in the Krasnodar Territory on the Onda variety. The greatest biological effectiveness against the pathogen of gray rot was noted for the drug Fitosporin-M, Zh (with a consumption rate of 2.0 l / ha) - 81.2%. Slightly lower efficiency was obtained for Alirin-B, Zh (40 l / ha) and Alirin-B, SP (40 g / ha): 75.4 and 70.0%, respectively. Fitosporin-M, Zh (2.0 l / ha) and Alirin-B, SP (40 g / ha), respectively, showed high biological effectiveness against the causative agent of anthracnose rot - 86.1 and 81.9%. The elements of a biologized technology for protecting garden strawberries from these pathogens are recommended, which allow maximizing the yield, improving the quality of products by increasing its environmental safety, and preventing a decrease in the sensitivity of B. cinerea and C. acutatu to chemical fungicides. Highly effective reduction of the infectious stock in the period after flowering and before harvesting, inclusive, allows in the second half of the growing season to reduce the number of treatments by 1-2, thereby reducing energy consumption.https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/30/e3sconf_farba2021_07008.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Kashchits Yulia
Yakuba Galina
spellingShingle Kashchits Yulia
Yakuba Galina
Development of biologized system of protection of garden strawberry against dominant berry rot in the conditions of Western Ciscaucasia
E3S Web of Conferences
author_facet Kashchits Yulia
Yakuba Galina
author_sort Kashchits Yulia
title Development of biologized system of protection of garden strawberry against dominant berry rot in the conditions of Western Ciscaucasia
title_short Development of biologized system of protection of garden strawberry against dominant berry rot in the conditions of Western Ciscaucasia
title_full Development of biologized system of protection of garden strawberry against dominant berry rot in the conditions of Western Ciscaucasia
title_fullStr Development of biologized system of protection of garden strawberry against dominant berry rot in the conditions of Western Ciscaucasia
title_full_unstemmed Development of biologized system of protection of garden strawberry against dominant berry rot in the conditions of Western Ciscaucasia
title_sort development of biologized system of protection of garden strawberry against dominant berry rot in the conditions of western ciscaucasia
publisher EDP Sciences
series E3S Web of Conferences
issn 2267-1242
publishDate 2021-01-01
description In connection with an increase in the harmfulness of pathogens causing berry rot on strawberries, a high risk of developing resistance to chemical synthesis drugs and a long waiting period for these fungicides, research on the selection of microbiological means of protecting crops from the dominant pathogens of berry rot is relevant. The purpose of the research: assessment of the biological effectiveness against sulfur and berry’s anthracnose rot of microbiological preparations and the development of regulations for their use in the conditions of the Western Ciscaucasia. The studies were carried out in 2019-2020 in the Krasnodar Territory on the Onda variety. The greatest biological effectiveness against the pathogen of gray rot was noted for the drug Fitosporin-M, Zh (with a consumption rate of 2.0 l / ha) - 81.2%. Slightly lower efficiency was obtained for Alirin-B, Zh (40 l / ha) and Alirin-B, SP (40 g / ha): 75.4 and 70.0%, respectively. Fitosporin-M, Zh (2.0 l / ha) and Alirin-B, SP (40 g / ha), respectively, showed high biological effectiveness against the causative agent of anthracnose rot - 86.1 and 81.9%. The elements of a biologized technology for protecting garden strawberries from these pathogens are recommended, which allow maximizing the yield, improving the quality of products by increasing its environmental safety, and preventing a decrease in the sensitivity of B. cinerea and C. acutatu to chemical fungicides. Highly effective reduction of the infectious stock in the period after flowering and before harvesting, inclusive, allows in the second half of the growing season to reduce the number of treatments by 1-2, thereby reducing energy consumption.
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/30/e3sconf_farba2021_07008.pdf
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AT yakubagalina developmentofbiologizedsystemofprotectionofgardenstrawberryagainstdominantberryrotintheconditionsofwesternciscaucasia
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