The effect of soil type on imazamox phytotoxicity to tomato
A bioassay was performed to evaluate the susceptibility of tomato to imazamox residues in loamy and sandy soils. The effects of three different levels of soil moisture (20, 50 and 70% FWC) were also examined. Imazamox was applied at rates ranging from 6.25 to 800 μg a.i./ kg soil. Shoot and root...
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doaj-e85e9031c4414db5b641e08ba466aec92020-11-25T02:03:43ZengInstitute of Pesticides and Environmental ProtectionPesticidi i Fitomedicina1820-39491820-39492015-12-0130421722410.2298/PIF1504217GThe effect of soil type on imazamox phytotoxicity to tomatoJelena Gajić Umiljendić0Marija Sarić-Krsmanović1Ljiljana Šantrić2Ljiljana Radivojević3Institute of Pesticides and Environmental Protection, Banatska 31b, Belgrade, SerbiaInstitute of Pesticides and Environmental Protection, Banatska 31b, Belgrade, SerbiaInstitute of Pesticides and Environmental Protection, Banatska 31b, Belgrade, SerbiaInstitute of Pesticides and Environmental Protection, Banatska 31b, Belgrade, SerbiaA bioassay was performed to evaluate the susceptibility of tomato to imazamox residues in loamy and sandy soils. The effects of three different levels of soil moisture (20, 50 and 70% FWC) were also examined. Imazamox was applied at rates ranging from 6.25 to 800 μg a.i./ kg soil. Shoot and root fresh weight and root length were the parameters measured 21 days after treatment, as well as the content of water soluble proteins. Imazamox caused growth delay and lower protein contents in both types of soil at all levels of soil moisture, and the degree of change depended on application rates. Inhibition was higher in plants grown in the sandy soil. The root parameters were more reliable as indicators of plant sensitivity to imazamox in soil. Soluble protein contents were lower in all trial variants but the changes did not depend on herbicide concentrations.http://www.pesting.org.rs/media/casopis/2015/no.4/30-4_217-224.pdfHerbicides; Residues; Soils; Phytotoxicity; Tomatoes |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Jelena Gajić Umiljendić Marija Sarić-Krsmanović Ljiljana Šantrić Ljiljana Radivojević |
spellingShingle |
Jelena Gajić Umiljendić Marija Sarić-Krsmanović Ljiljana Šantrić Ljiljana Radivojević The effect of soil type on imazamox phytotoxicity to tomato Pesticidi i Fitomedicina Herbicides; Residues; Soils; Phytotoxicity; Tomatoes |
author_facet |
Jelena Gajić Umiljendić Marija Sarić-Krsmanović Ljiljana Šantrić Ljiljana Radivojević |
author_sort |
Jelena Gajić Umiljendić |
title |
The effect of soil type on imazamox phytotoxicity to tomato |
title_short |
The effect of soil type on imazamox phytotoxicity to tomato |
title_full |
The effect of soil type on imazamox phytotoxicity to tomato |
title_fullStr |
The effect of soil type on imazamox phytotoxicity to tomato |
title_full_unstemmed |
The effect of soil type on imazamox phytotoxicity to tomato |
title_sort |
effect of soil type on imazamox phytotoxicity to tomato |
publisher |
Institute of Pesticides and Environmental Protection |
series |
Pesticidi i Fitomedicina |
issn |
1820-3949 1820-3949 |
publishDate |
2015-12-01 |
description |
A bioassay was performed to evaluate the susceptibility of tomato to imazamox residues
in loamy and sandy soils. The effects of three different levels of soil moisture (20, 50 and 70%
FWC) were also examined. Imazamox was applied at rates ranging from 6.25 to 800 μg a.i./
kg soil. Shoot and root fresh weight and root length were the parameters measured 21 days
after treatment, as well as the content of water soluble proteins.
Imazamox caused growth delay and lower protein contents in both types of soil at all
levels of soil moisture, and the degree of change depended on application rates. Inhibition
was higher in plants grown in the sandy soil. The root parameters were more reliable as
indicators of plant sensitivity to imazamox in soil. Soluble protein contents were lower in all
trial variants but the changes did not depend on herbicide concentrations. |
topic |
Herbicides; Residues; Soils; Phytotoxicity; Tomatoes |
url |
http://www.pesting.org.rs/media/casopis/2015/no.4/30-4_217-224.pdf |
work_keys_str_mv |
AT jelenagajicumiljendic theeffectofsoiltypeonimazamoxphytotoxicitytotomato AT marijasarickrsmanovic theeffectofsoiltypeonimazamoxphytotoxicitytotomato AT ljiljanasantric theeffectofsoiltypeonimazamoxphytotoxicitytotomato AT ljiljanaradivojevic theeffectofsoiltypeonimazamoxphytotoxicitytotomato AT jelenagajicumiljendic effectofsoiltypeonimazamoxphytotoxicitytotomato AT marijasarickrsmanovic effectofsoiltypeonimazamoxphytotoxicitytotomato AT ljiljanasantric effectofsoiltypeonimazamoxphytotoxicitytotomato AT ljiljanaradivojevic effectofsoiltypeonimazamoxphytotoxicitytotomato |
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