Improvement of Soil Properties, Growth of Cucumber and Protection against Fusarium Wilt by Piriformospora indica and Two Industrial Organic Wastes
The current work was focused on characterizing bagasse ash (BA) and press mud (PM) as soil amendments and to study their effect in combination with the endophytic fungus Piriformospora indica on Fusarium wilt (FW) of cucumber caused by Fusarium oxysporum f. sp. cucumerinum (Fo). Whereas BA and PM im...
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University of Agricultural Sciences and Veterinary Medicine, Cluj-Napoca
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doaj-199273cd4f2c456996c7119c8f228fdd2020-11-25T01:36:26ZengUniversity of Agricultural Sciences and Veterinary Medicine, Cluj-NapocaNotulae Scientia Biologicae2067-32052067-32642017-12-019452553810.15835/nsb94101798353Improvement of Soil Properties, Growth of Cucumber and Protection against Fusarium Wilt by Piriformospora indica and Two Industrial Organic WastesMoustafa Hemdan Ahmed MOHARAM0Mazhar MOHAMED1Osama NEGIM2Sohag University, Faculty of Agriculture, Plant Pathology Department, New Campus at El-Kawamel, Sohag P.O. 82755Sohag University, Faculty of Agriculture, Microbiology Department, New Campus at El-Kawamel, Sohag P.O. 82755Sohag University, Faculty of Agriculture, Soil and Water Sciences Department, New Campus at El-Kawamel, Sohag P.O. 82755The current work was focused on characterizing bagasse ash (BA) and press mud (PM) as soil amendments and to study their effect in combination with the endophytic fungus Piriformospora indica on Fusarium wilt (FW) of cucumber caused by Fusarium oxysporum f. sp. cucumerinum (Fo). Whereas BA and PM improved almost all physico-chemical properties of the soil evaluated, seed treatment with P. indica had no such effect. In shake culture in potato dextrose broth (PDB) medium amended with aqueous extracts of BA and PM, alone or in combination, production mycelial mass of Fo was significantly decreased by PM extract, while production mycelial mass of P. indica was highly improved. The colonization rate of cucumber roots by P. indica as determined by microscopy was highly increased by increasing amounts of BA, PM and BA+PM added to the soil. Seed treatment of cucumber with P. indica before plant cultivation in non-amended soil significantly decreased the disease severity of FW and improved plant growth. When seed treated with P. indica was sown into soil amended with BA, PM or the combination of both, the disease severity was even more reduced than after seed treatment with P. indica alone. In this respect, amendment with PM was more effective than with BA, and the combinations were more effective than the single treatments. Hence, there is a scope to integrate PM and BA as soil amendments in combination with P. indica for eco-friendly FW management, improving soil properties and growth of cucumber plants.http://www.notulaebiologicae.ro/index.php/nsb/article/view/10179 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Moustafa Hemdan Ahmed MOHARAM Mazhar MOHAMED Osama NEGIM |
spellingShingle |
Moustafa Hemdan Ahmed MOHARAM Mazhar MOHAMED Osama NEGIM Improvement of Soil Properties, Growth of Cucumber and Protection against Fusarium Wilt by Piriformospora indica and Two Industrial Organic Wastes Notulae Scientia Biologicae |
author_facet |
Moustafa Hemdan Ahmed MOHARAM Mazhar MOHAMED Osama NEGIM |
author_sort |
Moustafa Hemdan Ahmed MOHARAM |
title |
Improvement of Soil Properties, Growth of Cucumber and Protection against Fusarium Wilt by Piriformospora indica and Two Industrial Organic Wastes |
title_short |
Improvement of Soil Properties, Growth of Cucumber and Protection against Fusarium Wilt by Piriformospora indica and Two Industrial Organic Wastes |
title_full |
Improvement of Soil Properties, Growth of Cucumber and Protection against Fusarium Wilt by Piriformospora indica and Two Industrial Organic Wastes |
title_fullStr |
Improvement of Soil Properties, Growth of Cucumber and Protection against Fusarium Wilt by Piriformospora indica and Two Industrial Organic Wastes |
title_full_unstemmed |
Improvement of Soil Properties, Growth of Cucumber and Protection against Fusarium Wilt by Piriformospora indica and Two Industrial Organic Wastes |
title_sort |
improvement of soil properties, growth of cucumber and protection against fusarium wilt by piriformospora indica and two industrial organic wastes |
publisher |
University of Agricultural Sciences and Veterinary Medicine, Cluj-Napoca |
series |
Notulae Scientia Biologicae |
issn |
2067-3205 2067-3264 |
publishDate |
2017-12-01 |
description |
The current work was focused on characterizing bagasse ash (BA) and press mud (PM) as soil amendments and to study their effect in combination with the endophytic fungus Piriformospora indica on Fusarium wilt (FW) of cucumber caused by Fusarium oxysporum f. sp. cucumerinum (Fo). Whereas BA and PM improved almost all physico-chemical properties of the soil evaluated, seed treatment with P. indica had no such effect. In shake culture in potato dextrose broth (PDB) medium amended with aqueous extracts of BA and PM, alone or in combination, production mycelial mass of Fo was significantly decreased by PM extract, while production mycelial mass of P. indica was highly improved. The colonization rate of cucumber roots by P. indica as determined by microscopy was highly increased by increasing amounts of BA, PM and BA+PM added to the soil. Seed treatment of cucumber with P. indica before plant cultivation in non-amended soil significantly decreased the disease severity of FW and improved plant growth. When seed treated with P. indica was sown into soil amended with BA, PM or the combination of both, the disease severity was even more reduced than after seed treatment with P. indica alone. In this respect, amendment with PM was more effective than with BA, and the combinations were more effective than the single treatments. Hence, there is a scope to integrate PM and BA as soil amendments in combination with P. indica for eco-friendly FW management, improving soil properties and growth of cucumber plants. |
url |
http://www.notulaebiologicae.ro/index.php/nsb/article/view/10179 |
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