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PMID: 18279342 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

The role of Variovorax and other Comamonadaceae in sulfur transformations by microbial wheat rhizosphere communities exposed to different sulfur fertilization regimes.

Environmental microbiology ·Vol. 10 ·No. 6 ·2008-06-00 ·Pages 1486-500

Schmalenberger A, Hodge S, Bryant A, Hawkesford MJ, Singh BK, Kertesz MA

Abstract

Sulfonates are a key component of the sulfur present in agricultural soils. Their mobilization as part of the soil sulfur cycle is mediated by rhizobacteria, and involves the oxidoreductase AsfA. In this study, the effect of fertilization regime on rhizosphere bacterial asfA distribution was examined at the Broadbalk long-term wheat experiment, Rothamsted, UK, which was established in 1843, and has included a sulfur-free treatment since 2001. Direct isolation of desulfonating rhizobacteria from the wheat rhizospheres led to the identification of several Variovorax and Polaromonas strains, all of which contained the asfA gene. Rhizosphere DNA was isolated from wheat rhizospheres in plots fertilized with inorganic fertilizer with and without sulfur, with farmyard manure or from unfertilized plots. Genetic profiling of 16S rRNA gene fragments [denaturing gradient gel electrophoresis (DGGE)] from the wheat rhizospheres revealed that the level of inorganic sulfate in the inorganic fertilizer was correlated with changes in the general bacterial community structure and the betaproteobacterial community structure in particular. Community analysis at the functional gene level (asfA) showed that 40% of clones in asfAB clone libraries were affiliated to the genus Variovorax. Analysis of asfAB-based terminal restriction fragment length polymorphism (T-RFLP) fingerprints showed considerable differences between sulfate-free treatments and those where sulfate was applied. The results suggest the occurrence of desulfonating bacterial communities that are specific to the fertilization regime chosen and that arylsulfonates play an important role in rhizobacterial sulfur nutrition.

MeSH Terms
Bacterial Proteins/genetics Cluster Analysis Comamonadaceae/classification,genetics,isolation & purification,metabolism DNA Fingerprinting DNA, Bacterial/chemistry,genetics,isolation & purification DNA, Ribosomal/chemistry,genetics,isolation & purification Electrophoresis, Polyacrylamide Gel Molecular Sequence Data Nucleic Acid Denaturation Oxidoreductases/genetics Phylogeny Plant Roots/microbiology Polymorphism, Restriction Fragment Length Sequence Analysis, DNA Soil Microbiology Sulfur/metabolism Triticum/microbiology United Kingdom
Chemicals
Bacterial Proteins DNA, Bacterial DNA, Ribosomal Sulfur Oxidoreductases
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Schmalenberger Achim
Faculty of Life Sciences, University of Manchester, Oxford Rd, Manchester M13 9PT, UK.
Hodge Sarah
Bryant Anna
Hawkesford Malcolm J
Singh Brajesh K
Kertesz Michael A
Article Info
Journal
Environmental microbiology
Abbr.
Environ Microbiol
ISSN
1462-2920
Published
2008-06-00
Epub
2008-00-15
Pages
1486-500
Language
English
Region
England
NLM ID
100883692
Subset
IM
Grants
Biotechnology and Biological Sciences Research Council · BBS/E/C/00004955 · United Kingdom
Databases
GENBANK
AM492161, AM492162, AM492163, AM492164, AM494454, AM494455, AM494456, AM494457, AM494458, AM494459, AM494460, AM494461, AM494462, AM494463, AM494464, AM494465, AM494466, AM494467, AM494468, AM494469, AM494470, AM494471, AM494472, AM494473, AM494474
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