Increasing maize productivity by presowing usage of biologies Mycofriend, Mikovital and Florobacillin

The aim is to study how presowing usage of biologies Mycofriend, Mikovital and Florobacillin influences on biometric indicators of maize, its productivity and soil moisture holding capacity. Using mycorrhizal fungi and nitrogen-fixing bacteria, we have received positive results about their influence...

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Main Authors: Dymytrov Serhii, Sabluk Vasil, Tanchyk Semen, Gumentyk Mykhailo, Balagura Oleg
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/2021/31/e3sconf_iscmee2021_01006.pdf
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spelling doaj-efd0acc5731044f6a61fb1e03e15343f2021-05-04T12:19:54ZengEDP SciencesE3S Web of Conferences2267-12422021-01-012550100610.1051/e3sconf/202125501006e3sconf_iscmee2021_01006Increasing maize productivity by presowing usage of biologies Mycofriend, Mikovital and FlorobacillinDymytrov Serhii0Sabluk Vasil1Tanchyk Semen2Gumentyk Mykhailo3Balagura Oleg4National University of Life and Environmental ScienсesInstitute of Energy Crops and Sugar BeetNational University of Life and Environmental ScienсesInstitute of Energy Crops and Sugar BeetInstitute of Energy Crops and Sugar BeetThe aim is to study how presowing usage of biologies Mycofriend, Mikovital and Florobacillin influences on biometric indicators of maize, its productivity and soil moisture holding capacity. Using mycorrhizal fungi and nitrogen-fixing bacteria, we have received positive results about their influence on plant growth and development and maize yield forming. Leaf surface area in variants with fungi Trichoderma harzianum Rifai (Mycofriend bio-based product), and Tuber melanosporum Vittad (Mikovital bio-based product) and bacteria Bacillus subtilis Cohn. (Florobacillin bio-based product) was counted on 30th, 60th, 90th and 120th days of vegetation and was estimated by 11.2–90.0% higher compared to the control. Leaf mass and root system mass exceeded control indicators by 24.0–48.9%, respectively. Plants height in these accounted periods was higher by 4.0–31.5% compared to the control. In addition, in these variants, soil moisture holding capacity increased by 7.3–38.1%, share of soil lumps smaller than 0.25 mm decreased by 2.8–7.2%. Grain yield of Maize in variants with mycorrhizal fungi and nitrogen-fixing bacteria was 1.64–2.68 t/ha higher than in the control. It should be noted that presowing usage of fungus Trichoderma harzianum Rifai on plants seeds, provides better efficiency on plants’ growth and development and their productivity.https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/31/e3sconf_iscmee2021_01006.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Dymytrov Serhii
Sabluk Vasil
Tanchyk Semen
Gumentyk Mykhailo
Balagura Oleg
spellingShingle Dymytrov Serhii
Sabluk Vasil
Tanchyk Semen
Gumentyk Mykhailo
Balagura Oleg
Increasing maize productivity by presowing usage of biologies Mycofriend, Mikovital and Florobacillin
E3S Web of Conferences
author_facet Dymytrov Serhii
Sabluk Vasil
Tanchyk Semen
Gumentyk Mykhailo
Balagura Oleg
author_sort Dymytrov Serhii
title Increasing maize productivity by presowing usage of biologies Mycofriend, Mikovital and Florobacillin
title_short Increasing maize productivity by presowing usage of biologies Mycofriend, Mikovital and Florobacillin
title_full Increasing maize productivity by presowing usage of biologies Mycofriend, Mikovital and Florobacillin
title_fullStr Increasing maize productivity by presowing usage of biologies Mycofriend, Mikovital and Florobacillin
title_full_unstemmed Increasing maize productivity by presowing usage of biologies Mycofriend, Mikovital and Florobacillin
title_sort increasing maize productivity by presowing usage of biologies mycofriend, mikovital and florobacillin
publisher EDP Sciences
series E3S Web of Conferences
issn 2267-1242
publishDate 2021-01-01
description The aim is to study how presowing usage of biologies Mycofriend, Mikovital and Florobacillin influences on biometric indicators of maize, its productivity and soil moisture holding capacity. Using mycorrhizal fungi and nitrogen-fixing bacteria, we have received positive results about their influence on plant growth and development and maize yield forming. Leaf surface area in variants with fungi Trichoderma harzianum Rifai (Mycofriend bio-based product), and Tuber melanosporum Vittad (Mikovital bio-based product) and bacteria Bacillus subtilis Cohn. (Florobacillin bio-based product) was counted on 30th, 60th, 90th and 120th days of vegetation and was estimated by 11.2–90.0% higher compared to the control. Leaf mass and root system mass exceeded control indicators by 24.0–48.9%, respectively. Plants height in these accounted periods was higher by 4.0–31.5% compared to the control. In addition, in these variants, soil moisture holding capacity increased by 7.3–38.1%, share of soil lumps smaller than 0.25 mm decreased by 2.8–7.2%. Grain yield of Maize in variants with mycorrhizal fungi and nitrogen-fixing bacteria was 1.64–2.68 t/ha higher than in the control. It should be noted that presowing usage of fungus Trichoderma harzianum Rifai on plants seeds, provides better efficiency on plants’ growth and development and their productivity.
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/31/e3sconf_iscmee2021_01006.pdf
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