Auxin Carriers Localization Drives Auxin Accumulation in Plant Cells Infected by Frankia in Casuarina glauca Actinorhizal Nodules

Author:

Perrine-Walker Francine1,Doumas Patrick1,Lucas Mikael1,Vaissayre Virginie1,Beauchemin Nicholas J.1,Band Leah R.1,Chopard Jérome1,Crabos Amandine1,Conejero Geneviève1,Péret Benjamin1,King John R.1,Verdeil Jean-Luc1,Hocher Valérie1,Franche Claudine1,Bennett Malcolm J.1,Tisa Louis S.1,Laplaze Laurent1

Affiliation:

1. UMR DIAPC, Institut de Recherche pour le Développement, 34394 Montpellier cedex 5, France (F.P.-W., P.D., V.V., A.C., B.P., V.H., C.F., L.L.); Centre for Plant Integrative Biology, University of Nottingham, Loughborough LE12 5RD, United Kingdom (M.L., L.R.B., B.P., J.R.K., M.J.B.); Department of Cellular, Molecular and Biomedical Sciences, University of New Hampshire, Durham, New Hampshire 03824–

Abstract

Abstract Actinorhizal symbioses are mutualistic interactions between plants and the soil bacteria Frankia that lead to the formation of nitrogen-fixing root nodules. Little is known about the signaling mechanisms controlling the different steps of the establishment of the symbiosis. The plant hormone auxin has been suggested to play a role. Here we report that auxin accumulates within Frankia-infected cells in actinorhizal nodules of Casuarina glauca. Using a combination of computational modeling and experimental approaches, we establish that this localized auxin accumulation is driven by the cell-specific expression of auxin transporters and by Frankia auxin biosynthesis in planta. Our results indicate that the plant actively restricts auxin accumulation to Frankia-infected cells during the symbiotic interaction.

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Genetics,Physiology

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