Duplication and Specialization of NUDX1 in Rosaceae Led to Geraniol Production in Rose Petals

Author:

Conart Corentin1,Saclier Nathanaelle2,Foucher Fabrice3ORCID,Goubert Clément4,Rius-Bony Aurélie1,Paramita Saretta N1,Moja Sandrine1,Thouroude Tatiana3,Douady Christophe25,Sun Pulu6,Nairaud Baptiste1,Saint-Marcoux Denis1,Bahut Muriel7,Jeauffre Julien3,Hibrand Saint-Oyant Laurence3,Schuurink Robert C6,Magnard Jean-Louis1,Boachon Benoît1,Dudareva Natalia89,Baudino Sylvie1ORCID,Caissard Jean-Claude1

Affiliation:

1. Université Lyon, Université Saint-Etienne, CNRS, UMR 5079, Laboratoire de Biotechnologies Végétales appliquées aux Plantes Aromatiques et Médicinales, Saint-Etienne, France

2. Université Lyon, Université Claude Bernard Lyon 1, CNRS, UMR 5023, ENTPE, Laboratoire d’Ecologie des Hydrosystèmes Naturels et Anthropisés, Villeurbanne, France

3. Univ Angers, Institut Agro, INRAE, IRHS, SFR QUASAV, Angers, France

4. Department of Human Genetics, McGill University Genome Center, Montreal, QC, Canada

5. Institut Universitaire de France, Paris, France

6. Green Life Sciences Research Cluster, Swammerdam Institute for Life Sciences, University of Amsterdam, Amsterdam, The Netherlands

7. Univ Angers, SFR QUASAV, Angers, France

8. Department of Biochemistry, Purdue University, West Lafayette, IN, USA

9. Purdue Center for Plant Biology, Purdue University, West Lafayette, IN, USA

Abstract

Abstract Nudix hydrolases are conserved enzymes ubiquitously present in all kingdoms of life. Recent research revealed that several Nudix hydrolases are involved in terpenoid metabolism in plants. In modern roses, RhNUDX1 is responsible for formation of geraniol, a major compound of rose scent. Nevertheless, this compound is produced by monoterpene synthases in many geraniol-producing plants. As a consequence, this raised the question about the origin of RhNUDX1 function and the NUDX1 gene evolution in Rosaceae, in wild roses or/and during the domestication process. Here, we showed that three distinct clades of NUDX1 emerged in the Rosoidae subfamily (Nudx1-1 to Nudx1-3 clades), and two subclades evolved in the Rosa genus (Nudx1-1a and Nudx1-1b subclades). We also showed that the Nudx1-1b subclade was more ancient than the Nudx1-1a subclade, and that the NUDX1-1a gene emerged by a trans-duplication of the more ancient NUDX1-1b gene. After the transposition, NUDX1-1a was cis-duplicated, leading to a gene dosage effect on the production of geraniol in different species. Furthermore, the NUDX1-1a appearance was accompanied by the evolution of its promoter, most likely from a Copia retrotransposon origin, leading to its petal-specific expression. Thus, our data strongly suggest that the unique function of NUDX1-1a in geraniol formation was evolved naturally in the genus Rosa before domestication.

Publisher

Oxford University Press (OUP)

Subject

Genetics,Molecular Biology,Ecology, Evolution, Behavior and Systematics

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