Nodrm-1, a Sulphated Lipo-Oligosaccharide Signal of Rhizobium Meliloti Elicits Hair Deformation, Cortical Cell Division and Nodule Organogenesis on Alfalfa Roots View Full Text


Ontology type: schema:Chapter     


Chapter Info

DATE

1991

AUTHORS

P. Roche , P. Lerouge , J. C. Prome , C. Faucher , J. Vasse , F. Maillet , S. Camut , F. De Billy , J. Denarie , G. Truchet

ABSTRACT

We have addressed the questions of how nodulation (nod) genes of the symbiotic bacterium R. meliloti operate to determine host specificity, plant (alfalfa) infection and nodulation. Using a root hair deformation assay we have shown that the common nodABC genes and the hostrange nodH and nodQ genes are all involved in the production of an extracellular signal. The structure of the major alfalfa-specific signal, NodRm-1, has been determined by mass spectrometry, NMR spectroscopy, radioactive labelling and chemical modifications. This signal is a sulphated and acylated glucosamine tetrasaccharide. NodRm-1 elicits root hair deformation, cortical cell divisions and nodule formation, on aseptically-grown alfalfa seedlings, at nanomolar concentrations. Hostrange nodH or nodQ mutants are able to infect a non-homologous host, common vetch and were found to excrete another signal, NodRm-2, which differs from NodRm-1 by the absence of the sulphate group. Purified NodRm-2 elicits hair deformation on vetch but not on alfalfa. The function of nodH and nodQ is to make the signal alfalfa-specific by transfer of a sulphate group. We propose that the nod genes of R.meliloti determine host specificity, root hair curling and nodule formation via the production of NodRm-1. More... »

PAGES

119-126

Book

TITLE

Advances in Molecular Genetics of Plant-Microbe Interactions Vol. 1

ISBN

978-90-481-4083-1
978-94-015-7934-6

Identifiers

URI

http://scigraph.springernature.com/pub.10.1007/978-94-015-7934-6_19

DOI

http://dx.doi.org/10.1007/978-94-015-7934-6_19

DIMENSIONS

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