Transcriptome analysis of Sinorhizobium meliloti during symbiosis -: art. no. R15

被引:94
作者
Ampe, F [1 ]
Kiss, E [1 ]
Sabourdy, F [1 ]
Batut, J [1 ]
机构
[1] INRA, Lab Biol Mol Relat Plantes Microorganismes, CNRS, UMR 215, F-31326 Castanet Tolosan, France
关键词
D O I
10.1186/gb-2003-4-2-r15
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Background: Rhizobia induce the formation on specific legumes of new organs, the root nodules, as a result of an elaborated developmental program involving the two partners. In order to contribute to a more global view of the genetics underlying this plant-microbe symbiosis, we have mined the recently determined Sinorhizobium meliloti genome sequence for genes potentially relevant to symbiosis. We describe here the construction and use of dedicated nylon macroarrays to study simultaneously the expression of 200 of these genes in a variety of environmental conditions, pertinent to symbiosis. Results: The expression of 214 S. meliloti genes was monitored under ten environmental conditions, including free-living aerobic and microaerobic conditions, addition of the plant symbiotic elicitor luteolin, and a variety of symbiotic conditions. Five new genes induced by luteolin have been identified as well as nine new genes induced in mature nitrogen-fixing bacteroids. A bacterial and a plant symbiotic mutant affected in nodule development have been found of particular interest to decipher gene expression at the intermediate stage of the symbiotic interaction. S. meliloti gene expression in the cultivated legume Medicago sativa ( alfalfa) and the model plant M. truncatula were compared and a small number of differences was found. Conclusions: In addition to exploring conditions for a genome-wide transcriptome analysis of the model rhizobium S. meliloti, the present work has highlighted the differential expression of several classes of genes during symbiosis. These genes are related to invasion, oxidative stress protection, iron mobilization, and signaling, thus emphasizing possible common mechanisms between symbiosis and pathogenesis.
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共 64 条
[1]   Distinct types of diffuse large B-cell lymphoma identified by gene expression profiling [J].
Alizadeh, AA ;
Eisen, MB ;
Davis, RE ;
Ma, C ;
Lossos, IS ;
Rosenwald, A ;
Boldrick, JG ;
Sabet, H ;
Tran, T ;
Yu, X ;
Powell, JI ;
Yang, LM ;
Marti, GE ;
Moore, T ;
Hudson, J ;
Lu, LS ;
Lewis, DB ;
Tibshirani, R ;
Sherlock, G ;
Chan, WC ;
Greiner, TC ;
Weisenburger, DD ;
Armitage, JO ;
Warnke, R ;
Levy, R ;
Wilson, W ;
Grever, MR ;
Byrd, JC ;
Botstein, D ;
Brown, PO ;
Staudt, LM .
NATURE, 2000, 403 (6769) :503-511
[2]   CLONING OF THE 2ND ADENYLATE-CYCLASE GENE (CYA2) FROM RHIZOBIUM-MELILOTI F34 - SEQUENCE SIMILARITY TO EUKARYOTIC CYCLASES [J].
ARCHDEACON, J ;
TALTY, J ;
BOESTEN, B ;
DANCHIN, A ;
OGARA, F .
FEMS MICROBIOLOGY LETTERS, 1995, 128 (02) :177-184
[3]   Global gene expression profiling in Escherichia coli K12 -: The effects of integration host factor [J].
Arfin, SM ;
Long, AD ;
Ito, ET ;
Tolleri, L ;
Riehle, MM ;
Paegle, ES ;
Hatfield, GW .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2000, 275 (38) :29672-29684
[4]   Nucleotide sequence and predicted functions of the entire Sinorhizobium meliloti pSymA megaplasmid [J].
Barnett, MJ ;
Fisher, RF ;
Jones, T ;
Komp, C ;
Abola, AP ;
Barloy-Hubler, F ;
Bowser, L ;
Capela, D ;
Galibert, F ;
Gouzy, J ;
Gurjal, M ;
Hong, A ;
Huizar, L ;
Hyman, RW ;
Kahn, D ;
Kahn, ML ;
Kalman, S ;
Keating, DH ;
Palm, C ;
Peck, MC ;
Surzycki, R ;
Wells, DH ;
Yeh, KC ;
Davis, RW ;
Federspiel, NA ;
Long, SR .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2001, 98 (17) :9883-9888
[5]   An ABC transporter system of Yersinia pestis allows utilization of chelated iron by Escherichia coli SAB11 [J].
Bearden, SW ;
Staggs, TM ;
Perry, RD .
JOURNAL OF BACTERIOLOGY, 1998, 180 (05) :1135-1147
[6]   TE7, AN INEFFICIENT SYMBIOTIC MUTANT OF MEDICAGO-TRUNCATULA GAERTN CV JEMALONG [J].
BENABEN, V ;
DUC, G ;
LEFEBVRE, V ;
HUGUET, T .
PLANT PHYSIOLOGY, 1995, 107 (01) :53-62
[7]  
Brewin N.J., 1998, RHIZOBIACEAE, P417
[8]   Symbiotic induction of pyruvate dehydrogenase genes from Sinorhizobium meliloti [J].
Cabanes, D ;
Boistard, P ;
Batut, J .
MOLECULAR PLANT-MICROBE INTERACTIONS, 2000, 13 (05) :483-493
[9]   Analysis of the chromosome sequence of the legume symbiont Sinorhizobium meliloti strain 1021 [J].
Capela, D ;
Barloy-Hubler, F ;
Gouzy, J ;
Bothe, G ;
Ampe, F ;
Batut, J ;
Boistard, P ;
Becker, A ;
Boutry, M ;
Cadieu, E ;
Dréano, S ;
Gloux, S ;
Godrie, T ;
Goffeau, A ;
Kahn, D ;
Kiss, E ;
Lelaure, V ;
Masuy, D ;
Pohl, T ;
Portetelle, D ;
Pühler, A ;
Purnelle, B ;
Ramsperger, U ;
Renard, C ;
Thébault, P ;
Vandenbol, M ;
Weidner, S ;
Galibert, F .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2001, 98 (17) :9877-9882
[10]   Four genes of Medicago truncatula controlling components of a nod factor transduction pathway [J].
Catoira, R ;
Galera, C ;
de Billy, F ;
Penmetsa, RV ;
Journet, EP ;
Maillet, F ;
Rosenberg, C ;
Cook, D ;
Gough, C ;
Dénarié, J .
PLANT CELL, 2000, 12 (09) :1647-1665