Effect of fertilization on composition and spatial distribution of dissolved organic nitrogen in paddy soil microbial systems

Dissolved organic nitrogen (DON) has high bioavailability and is an important source of soil nutrients. In order to determine the concentrations and the composition of DON in different depths (0-30 cm), and provide a theoretical basis for further deep research into the paddy soil nitrogen supply, ex...

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Main Authors: H. Zhang, Z. Zhao, X. Yi, Y. Lu, L. Cao
Format: Article
Language:English
Published: Czech Academy of Agricultural Sciences 2012-03-01
Series:Plant, Soil and Environment
Subjects:
Online Access:https://pse.agriculturejournals.cz/artkey/pse-201203-0004_effect-of-fertilization-on-composition-and-spatial-distribution-of-dissolved-organic-nitrogen-in-paddy-soil-mic.php
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author H. Zhang
Z. Zhao
X. Yi
Y. Lu
L. Cao
author_facet H. Zhang
Z. Zhao
X. Yi
Y. Lu
L. Cao
author_sort H. Zhang
collection DOAJ
description Dissolved organic nitrogen (DON) has high bioavailability and is an important source of soil nutrients. In order to determine the concentrations and the composition of DON in different depths (0-30 cm), and provide a theoretical basis for further deep research into the paddy soil nitrogen supply, experiments based on the lysimeter method were carried out to investigate the effect of fertilization on composition and spatial distribution of DON in paddy soil. Paddy soil was treated under chemical fertilization treatment (CT) and mixed fertilization treatment (MT). With methods of PCR-DGGE and HPLC-MS, the results of the experiments suggested that the samples in 10-20 cm and 20-30 cm under MT had significantly higher bacterial diversity than those under CT except in 0-10 cm. DON had a high percentage (63.1-79.9%) in Ntot of soil solution. The results of the correlation analysis revealed that DON had a significant positive correlation with organic matter content, Shannon-Wiener diversity index (H') and a significant negative correlation with pH. The possible results of HPLC-MS identification of DON from paddy soil solution were that (a) 3-(4-thiazolyl)-l-alanine; (b) 2-phenylbenzimidazole-5-sulfonic acid; (c) 4-(2, 4-difluorophenyl)-3-nitrobenzene carbaldehyde; (d) fendizoic acid.
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spelling doaj.art-ce90223c8cd5449489e65b5661ce4af02023-02-23T03:45:52ZengCzech Academy of Agricultural SciencesPlant, Soil and Environment1214-11781805-93682012-03-0158312813410.17221/533/2011-PSEpse-201203-0004Effect of fertilization on composition and spatial distribution of dissolved organic nitrogen in paddy soil microbial systemsH. Zhang0Z. Zhao1X. Yi2Y. Lu3L. Cao4School of Environmental Science and Engineering, Shanghai Jiao Tong University, Shanghai, P.R. ChinaKey Laboratory of Urban Agriculture, Ministry of Agriculture, P.R.C, Shanghai, P.R. ChinaShanghai Exit and Entry Inspection & Quarantine Bureau, Technical Center For Food, Animal and Plant Inspection and Quarantine, Shanghai, P.R. ChinaKey Laboratory of Urban Agriculture, Ministry of Agriculture, P.R.C, Shanghai, P.R. ChinaKey Laboratory of Urban Agriculture, Ministry of Agriculture, P.R.C, Shanghai, P.R. ChinaDissolved organic nitrogen (DON) has high bioavailability and is an important source of soil nutrients. In order to determine the concentrations and the composition of DON in different depths (0-30 cm), and provide a theoretical basis for further deep research into the paddy soil nitrogen supply, experiments based on the lysimeter method were carried out to investigate the effect of fertilization on composition and spatial distribution of DON in paddy soil. Paddy soil was treated under chemical fertilization treatment (CT) and mixed fertilization treatment (MT). With methods of PCR-DGGE and HPLC-MS, the results of the experiments suggested that the samples in 10-20 cm and 20-30 cm under MT had significantly higher bacterial diversity than those under CT except in 0-10 cm. DON had a high percentage (63.1-79.9%) in Ntot of soil solution. The results of the correlation analysis revealed that DON had a significant positive correlation with organic matter content, Shannon-Wiener diversity index (H') and a significant negative correlation with pH. The possible results of HPLC-MS identification of DON from paddy soil solution were that (a) 3-(4-thiazolyl)-l-alanine; (b) 2-phenylbenzimidazole-5-sulfonic acid; (c) 4-(2, 4-difluorophenyl)-3-nitrobenzene carbaldehyde; (d) fendizoic acid.https://pse.agriculturejournals.cz/artkey/pse-201203-0004_effect-of-fertilization-on-composition-and-spatial-distribution-of-dissolved-organic-nitrogen-in-paddy-soil-mic.phpmicrobial diversitypaddy soilcorrelation analysishplc-ms
spellingShingle H. Zhang
Z. Zhao
X. Yi
Y. Lu
L. Cao
Effect of fertilization on composition and spatial distribution of dissolved organic nitrogen in paddy soil microbial systems
Plant, Soil and Environment
microbial diversity
paddy soil
correlation analysis
hplc-ms
title Effect of fertilization on composition and spatial distribution of dissolved organic nitrogen in paddy soil microbial systems
title_full Effect of fertilization on composition and spatial distribution of dissolved organic nitrogen in paddy soil microbial systems
title_fullStr Effect of fertilization on composition and spatial distribution of dissolved organic nitrogen in paddy soil microbial systems
title_full_unstemmed Effect of fertilization on composition and spatial distribution of dissolved organic nitrogen in paddy soil microbial systems
title_short Effect of fertilization on composition and spatial distribution of dissolved organic nitrogen in paddy soil microbial systems
title_sort effect of fertilization on composition and spatial distribution of dissolved organic nitrogen in paddy soil microbial systems
topic microbial diversity
paddy soil
correlation analysis
hplc-ms
url https://pse.agriculturejournals.cz/artkey/pse-201203-0004_effect-of-fertilization-on-composition-and-spatial-distribution-of-dissolved-organic-nitrogen-in-paddy-soil-mic.php
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AT xyi effectoffertilizationoncompositionandspatialdistributionofdissolvedorganicnitrogeninpaddysoilmicrobialsystems
AT ylu effectoffertilizationoncompositionandspatialdistributionofdissolvedorganicnitrogeninpaddysoilmicrobialsystems
AT lcao effectoffertilizationoncompositionandspatialdistributionofdissolvedorganicnitrogeninpaddysoilmicrobialsystems