Flavonoids, NodD1, NodD2, and Nod-Box NB15 Modulate Expression of the y4wEFG Locus That Is Required for Indole-3-Acetic Acid Synthesis in Rhizobium sp. strain NGR234

Флавоноиды, NodD1, NodD2 и nod-бокс NB15 регулируют экспрессию локуса y4wEFG, необходимого для синтеза индол-3-уксусной кислоты у Rhizobium sp. штамма NGR234
Mart Theunis, Hajime Kobayashi, W. J. Broughton, Els Prinsen
2004-10-01

NodD1 and NodD2flavonoid-inducible expressionindole-3-acetic acid synthesisnod-box NB15y4wEFG locus
Flavonoids secreted by host plants activate, in conjunction with the transcriptional activator NodD, nod gene expression of rhizobia resulting in the synthesis of Nod factors, which trigger nodule organogenesis. Interestingly, addition of inducing flavonoids also stimulates the production of the phytohormone indole-3-acetic acid (IAA) in several rhizobia. Here, the molecular basis of IAA synthesis in Rhizobium sp. NGR234 was investigated. Mass spectrometric analysis of culture supernatants indicated that NGR234 is capable of synthesizing IAA via three different pathways. The production of IAA is increased strongly by exposure of NGR234 to daidzein in a NodD1-, NodD2-, and SyrM2-dependent manner. This suggests that the y4wEFG locus that is downstream of nod-box NB15 encodes proteins involved in IAA synthesis. Knockout mutations in y4wE and y4wF abolished flavonoid-inducible IAA synthesis and a functional y4wF was required for constitutive IAA production. The promoter activity of NB15 and IAA production both were enhanced by introduction of a multicopy plasmid carrying nodD2 into NGR234. Surprisingly, the y4wE mutant still nodulated Vigna unguiculata and Tephrosia vogelii, although the nodules contained less IAA and IAA conjugates than those formed by the wild-type bacterium.
1
A functional y4wF gene is required for constitutive IAA production, while multicopy nodD2 enhances NB15 promoter activity and IAA synthesis.
2
Daidzein strongly increases IAA production through a NodD1-, NodD2-, and SyrM2-dependent regulatory mechanism.
3
Rhizobium sp. NGR234 synthesizes indole-3-acetic acid through three distinct pathways, as shown by mass spectrometric analysis of culture supernatants.
4
The y4wE mutant still nodulates Vigna unguiculata and Tephrosia vogelii, but produces nodules with reduced IAA and IAA-conjugate levels compared with wild type.
5
The y4wEFG locus downstream of nod-box NB15 is implicated in IAA synthesis; disrupting y4wE or y4wF abolishes flavonoid-inducible IAA production.

Rhizobium sp. strain NGR234 and its y4wEFG locus involved in indole-3-acetic acid synthesis

Flavonoid- and NodD1/NodD2/SyrM2-dependent regulation of y4wEFG expression and indole-3-acetic acid production, including the roles of y4wE and y4wF

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2004-10-01
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Mart Theunis
Hajime Kobayashi
W. J. Broughton
Els Prinsen
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