ISOFLAVONOID-INDUCIBLE RESISTANCE TO THE PHYTOALEXIN GLYCEOLLIN IN SOYBEAN RHIZOBIA

被引:91
作者
PARNISKE, M
AHLBORN, B
WERNER, D
机构
[1] Fachbereich Biologie der, Philipps-Universitat, D-3550 Marburg/Lahn, Karl-von-Frisch-Strasse
关键词
D O I
10.1128/jb.173.11.3432-3439.1991
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
The antibacterial effect of the soybean phytoalexin glyceollin was assayed using a liquid microculture technique. Log-phase cells of Bradyrhizobium japonicum and sinorhizobium fredii were sensitive to glyceollin. As revealed by growth rates and survival tests, these species were able to tolerate glyceollin after adaptation. Incubation in low concentrations of the isoflavones genistein and daidzein induced resistance to potentially bactericidal concentrations of glyceollin. This inducible resistance is not due to degradation or detoxification of the phytoalexin. The inducible resistance could be detected in B. japonicum 110spc4 and 61A101, representing the two taxonomically divergent groups of this species, as well as in S. fredii HH103, suggesting that this trait is a feature of all soybean-nodulating rhizobia. Glyceollin resistance was also inducible in a nodD1D2YABC deletion mutant of B. japonicum 110spc4, suggesting that there exists another recognition site for flavonoids besides the nodD genes identified so far. Exudate preparations from roots infected with Phytophthora megasperma f. sp. glycinea exhibited a strong bactericidal effect toward glyceollin-sensitive cells of B. japonicum. This killing effect was not solely due to glyceollin since purified glyceollin at concentrations similar to those present in exudate preparations had a much lower toxicity. However, glyceollin-resistant cells were also more resistant to exudate preparations than glyceollin-sensitive cells. Isoflavonoid-inducible resistance must therefore be ascribed an important role for survival of rhizobia in the rhizosphere of soybean roots.
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页码:3432 / 3439
页数:8
相关论文
共 48 条
[1]   REGULATION OF NOD GENE-EXPRESSION IN BRADYRHIZOBIUM-JAPONICUM [J].
BANFALVI, Z ;
NIEUWKOOP, A ;
SCHELL, M ;
BESL, L ;
STACEY, G .
MOLECULAR & GENERAL GENETICS, 1988, 214 (03) :420-424
[2]   GLYCEOLLIN - A SITE-SPECIFIC INHIBITOR OF ELECTRON-TRANSPORT IN ISOLATED SOYBEAN MITOCHONDRIA [J].
BOYDSTON, R ;
PAXTON, JD ;
KOEPPE, DE .
PLANT PHYSIOLOGY, 1983, 72 (01) :151-155
[3]   NUMERICAL TAXONOMIC STUDY OF FAST-GROWING SOYBEAN RHIZOBIA AND A PROPOSAL THAT RHIZOBIUM-FREDII BE ASSIGNED TO SINORHIZOBIUM GEN-NOV [J].
CHEN, WX ;
YAN, GH ;
LI, JL .
INTERNATIONAL JOURNAL OF SYSTEMATIC BACTERIOLOGY, 1988, 38 (04) :392-397
[5]  
DENNY TP, 1983, J GEN MICROBIOL, V129, P2903
[6]  
DENNY TP, 1983, J GEN MICROBIOL, V129, P2893
[7]   IDENTIFICATION OF BRADYRHIZOBIUM NOD-GENES INVOLVED IN HOST-SPECIFIC NODULATION [J].
DESHMANE, N ;
STACEY, G .
JOURNAL OF BACTERIOLOGY, 1989, 171 (06) :3324-3330
[8]  
DJORDJEVIC MA, 1987, ANNU REV PHYTOPATHOL, V25, P145, DOI 10.1146/annurev.py.25.090187.001045
[9]   INDUCTION OF PATHOGENIC-LIKE RESPONSES IN THE LEGUME MACROPTILIUM-ATROPURPUREUM BY A TRANSPOSON-INDUCED MUTANT OF THE FAST-GROWING, BROAD-HOST-RANGE RHIZOBIUM STRAIN NGR234 [J].
DJORDJEVIC, SP ;
RIDGE, RW ;
CHEN, H ;
REDMOND, JW ;
BATLEY, M ;
ROLFE, BG .
JOURNAL OF BACTERIOLOGY, 1988, 170 (04) :1848-1857
[10]   DEFENSE STRATEGIES OF SOYBEAN AGAINST THE FUNGUS PHYTOPHTHORA-MEGASPERMA F SP GLYCINEA - A MOLECULAR ANALYSIS [J].
EBEL, J ;
GRISEBACH, H .
TRENDS IN BIOCHEMICAL SCIENCES, 1988, 13 (01) :23-27