Assessment of microbial activity and biomass in different soils exposed to nicosulfuron
The effects of the herbicide nicosulfuron on the abundance of cellulolytic and proteolytic microorganisms, activity of β-glucosidase and protease enzymes, and microbial phosphorus biomass were examined. A laboratory bioassay was set up on two types of agricultural soils differing in physicochemic...
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doaj-a5d44a53737146079d4c77b00caef7c52020-11-24T23:44:14ZengInstitute of Pesticides and Environmental ProtectionPesticidi i Fitomedicina1820-39492014-09-0129321321910.2298/PIF1403213SAssessment of microbial activity and biomass in different soils exposed to nicosulfuronLjiljana Šantrić0Ljiljana Radivojević1Jelena Gajić-Umiljendić2Rada Đurović-Pejčev3Marija Sarić-Krsmanović4Institute 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, SerbiaInstitute of Pesticides and Environmental Protection, Banatska 31b, Belgrade, SerbiaThe effects of the herbicide nicosulfuron on the abundance of cellulolytic and proteolytic microorganisms, activity of β-glucosidase and protease enzymes, and microbial phosphorus biomass were examined. A laboratory bioassay was set up on two types of agricultural soils differing in physicochemical properties. The following concentrations were tested: 0.3, 0.6, 3.0 and 30.0 mg a.i./kg of soil. Samples were collected 3, 7, 14, 30 and 45 days after treatment with nicosulfuron. The results showed that nicosulfuron significantly reduced the abundance of cellulolytic microorganisms in both soils, as well as microbial biomass phosphorus in sandy loam soil. The herbicide was found to stimulate β-glucosidase and protease activity in both types of soil and microbial biomass phosphorus in loamy soil. Proteolytic microorganisms remained unaffected by nicosulfuron.http://www.pesting.org.rs/download.php/documents/29-3/29-3%20213-219.pdfSoil; Phosphorus; Nicosulfuron; Microorganisms; Biomass |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Ljiljana Šantrić Ljiljana Radivojević Jelena Gajić-Umiljendić Rada Đurović-Pejčev Marija Sarić-Krsmanović |
spellingShingle |
Ljiljana Šantrić Ljiljana Radivojević Jelena Gajić-Umiljendić Rada Đurović-Pejčev Marija Sarić-Krsmanović Assessment of microbial activity and biomass in different soils exposed to nicosulfuron Pesticidi i Fitomedicina Soil; Phosphorus; Nicosulfuron; Microorganisms; Biomass |
author_facet |
Ljiljana Šantrić Ljiljana Radivojević Jelena Gajić-Umiljendić Rada Đurović-Pejčev Marija Sarić-Krsmanović |
author_sort |
Ljiljana Šantrić |
title |
Assessment of microbial activity and biomass in different soils exposed to nicosulfuron |
title_short |
Assessment of microbial activity and biomass in different soils exposed to nicosulfuron |
title_full |
Assessment of microbial activity and biomass in different soils exposed to nicosulfuron |
title_fullStr |
Assessment of microbial activity and biomass in different soils exposed to nicosulfuron |
title_full_unstemmed |
Assessment of microbial activity and biomass in different soils exposed to nicosulfuron |
title_sort |
assessment of microbial activity and biomass in different soils exposed to nicosulfuron |
publisher |
Institute of Pesticides and Environmental Protection |
series |
Pesticidi i Fitomedicina |
issn |
1820-3949 |
publishDate |
2014-09-01 |
description |
The effects of the herbicide nicosulfuron on the abundance of cellulolytic and proteolytic
microorganisms, activity of β-glucosidase and protease enzymes, and microbial phosphorus biomass
were examined. A laboratory bioassay was set up on two types of agricultural soils differing in
physicochemical properties. The following concentrations were tested: 0.3, 0.6, 3.0 and 30.0 mg
a.i./kg of soil. Samples were collected 3, 7, 14, 30 and 45 days after treatment with nicosulfuron.
The results showed that nicosulfuron significantly reduced the abundance of cellulolytic
microorganisms in both soils, as well as microbial biomass phosphorus in sandy loam soil.
The herbicide was found to stimulate β-glucosidase and protease activity in both types of
soil and microbial biomass phosphorus in loamy soil. Proteolytic microorganisms remained
unaffected by nicosulfuron. |
topic |
Soil; Phosphorus; Nicosulfuron; Microorganisms; Biomass |
url |
http://www.pesting.org.rs/download.php/documents/29-3/29-3%20213-219.pdf |
work_keys_str_mv |
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