Sequence Analysis of the 144-Kilobase Accessory Plasmid pSmeSM11a, Isolated from a Dominant
Sinorhizobium meliloti
Strain Identified during a Long-Term Field Release Experiment
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Published:2006-05
Issue:5
Volume:72
Page:3662-3672
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ISSN:0099-2240
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Container-title:Applied and Environmental Microbiology
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language:en
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Short-container-title:Appl Environ Microbiol
Author:
Stiens M.1, Schneiker S.1, Keller M.1, Kuhn S.1, Pühler A.1, Schlüter A.1
Affiliation:
1. Lehrstuhl für Genetik, Fakultät für Biologie, Universität Bielefeld, Postfach 100131, D-33501 Bielefeld, Germany
Abstract
ABSTRACT
The genome of
Sinorhizobium meliloti
type strain Rm1021 consists of three replicons: the chromosome and two megaplasmids, pSymA and pSymB. Additionally, many indigenous
S. meliloti
strains possess one or more smaller plasmids, which represent the accessory genome of this species. Here we describe the complete nucleotide sequence of an accessory plasmid, designated pSmeSM11a, that was isolated from a dominant indigenous
S. meliloti
subpopulation in the context of a long-term field release experiment with genetically modified
S. meliloti
strains. Sequence analysis of plasmid pSmeSM11a revealed that it is 144,170 bp long and has a mean G+C content of 59.5 mol%. Annotation of the sequence resulted in a total of 160 coding sequences. Functional predictions could be made for 43% of the genes, whereas 57% of the genes encode hypothetical or unknown gene products. Two plasmid replication modules, one belonging to the
repABC
replicon family and the other belonging to the plasmid type A replicator region family, were identified. Plasmid pSmeSM11a contains a mobilization (
mob
) module composed of the type IV secretion system-related genes
traG
and
traA
and a putative
mobC
gene. A large continuous region that is about 42 kb long is very similar to a corresponding region located on
S. meliloti
Rm1021 megaplasmid pSymA. Single-base-pair deletions in the homologous regions are responsible for frameshifts that result in nonparalogous coding sequences. Plasmid pSmeSM11a carries additional copies of the nodulation genes
nodP
and
nodQ
that are responsible for Nod factor sulfation. Furthermore, a
tauD
gene encoding a putative taurine dioxygenase was identified on pSmeSM11a. An
acdS
gene located on pSmeSM11a is the first example of such a gene in
S. meliloti
. The deduced
acdS
gene product is able to deaminate 1-aminocyclopropane-1-carboxylate and is proposed to be involved in reducing the phytohormone ethylene, thus influencing nodulation events. The presence of numerous insertion sequences suggests that these elements mediated acquisition of accessory plasmid modules.
Publisher
American Society for Microbiology
Subject
Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology
Reference78 articles.
1. Andronov, E. E., M. L. Rumiantseva, and B. V. Simarov. 2001. Genetic diversity of a natural population of Sinorhizobium meliloti, detected during analysis of a cryptic plasmid and ISRm2011-2 fingerprints. Genetika37:610-616. 2. Banfalvi, Z., V. Sakanyan, C. Koncz, A. Kiss, I. Dusha, and A. Kondorosi. 1981. Location of nodulation and nitrogen fixation genes on a high molecular weight plasmid of R. meliloti. Mol. Gen. Genet.184:318-325. 3. Barnett, M. J., R. F. Fisher, T. Jones, C. Komp, A. P. Abola, F. Barloy-Hubler, L. Bowser, D. Capela, F. Galibert, J. Gouzy, M. Gurjal, A. Hong, L. Huizar, R. W. Hyman, D. Kahn, M. L. Kahn, S. Kalman, D. H. Keating, C. Palm, M. C. Peck, R. Surzycki, D. H. Wells, K. C. Yeh, R. W. Davis, N. A. Federspiel, and S. R. Long. 2001. Nucleotide sequence and predicted functions of the entire Sinorhizobium meliloti pSymA megaplasmid. Proc. Natl. Acad. Sci. USA98:9883-9888. 4. Barran, L. R., and E. S. P. Bromfield. 1988. Symbiotic gene probes hybridize to cryptic plasmids of indigenous Rhizobium meliloti. Can. J. Microbiol.34:703-707. 5. Bartosik, D., J. Baj, E. Piechucka, E. Waker, and M. Wlodarczyk. 2002. Comparative characterization of repABC-type replicons of Paracoccus pantotrophus composite plasmids. Plasmid48:130-141.
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