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  • flavonoid inducers  (1)
  • flavonoid specificity  (1)
  • 1985-1989  (2)
  • 1
    ISSN: 1573-5028
    Keywords: Rhizobium ; nodA promoter ; flavonoid inducers ; root exudate ; Vicia sativa ; nodD
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology
    Notes: Abstract Root exudate of Vicia sativa contains 7 inducers for the nodA promoter of Rhizobium leguminosarum biovar viciae. Six of these inducers are flavanones. One inducer was identified as 3,5,7,3′-tetrahydroxy-4′-methoxyflavanone, and a second inducer most likely is 7,3′-dihydroxy-4′-methoxyflavanone. The inducing activity of these compounds and the other inducers depends on the nodD gene present in the test strains, which orginated either from R. leguminosarum biovars viciae or trifolii, or from R. meliloti. Three inducers are ‘common’, three others almost exclusively induce the nodA promoter in the presence of the R. leguminosarum biovar viciae nodD gene, and the last one is active with the noD genes of either R. leguminosarum biovar viciae or that of R. meliloti. Testing of a large number of flavonoids revealed two classes of structural features required for inducing ability: (i) features required for induction in general, and (ii), features restricting the inducing ability to (a) specific nodD gene(s). These features are discussed in relation to current models of the process of nodD-mediated transcription activation of the inducible nod genes.
    Type of Medium: Electronic Resource
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  • 2
    ISSN: 1573-5028
    Keywords: autoregulation ; flavonoid independent transcription ; flavonoid specificity ; gene regulation ; nodD gene ; Rhizobium
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology
    Notes: Abstract The flavonoid-inducible nod promoters of Rhizobium are positively regulated by the nodD gene which is highly conserved in various Rhizobium species. The nodD gene are functionally different in (i) their response to various exogenously added flavonoid inducers, (ii) the extent to which they mediate the activation of the flavonoid-inducible promoters, and (iii) the extent to which they repress their own constitutive transcription. In order to localize the regions of the nodD product which determine these differences, two series of nodD hybrid genes have been constructed. In one series the 5′ moiety is derived from the R. meliloti nodD1 gene and the 3′ moiety from the R. trifolii nodD gene. In the other series, the origins of the nodD moieties are reversed. Two regions of the nodD product appeared to be involved in autoregulation and it was also shown that the nodD promoters differ in their susceptibility to autoregulation. Many regions, dispersed over the entire nodD product, are involved in the specificity of activation by flavonoids. Several hybrid nodD genes were characterized which activate transcription with novel inducers. Furthermore, two classes of hybrid nodD genes were found from which the activation characteristics differ completely from those of the parental nodD genes. The first class activates the nodABCIJ promoter to the maximum level in the absence of flavonoid inducer. This level can no longer be influenced, positively or negatively, by the presence of (iso-)flavonoids. With the second class of hybrids, activation of the nodABCIJ promoter, even in the presence of flavonoid inducers, is no longer possible.
    Type of Medium: Electronic Resource
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