Abstract

Grapevine (Vitis vinifera) proanthocyanidins contribute to plant defense mechanisms against biotic stress and also play a critical role in organoleptic properties of wine. In grapevine berry, these compounds are mainly accumulated in exocarps and seeds in the very early stages of development. A previous study has already identified VvMybPA1 as the first transcription factor involved in the regulation of the proanthocyanidin pathway during seed development in grapevine. A novel Myb factor, VvMybPA2, which is described in this study, is in contrast mainly expressed in the exocarp of young berries and in the leaves. This transcription factor shows very high protein sequence homology with other plant Myb factors, which regulate flavonoid biosynthesis. Ectopic expression of either VvMybPA1 or VvMybPA2 in grapevine hairy roots induced qualitative and quantitative changes of the proanthocyanidin profiles. High-throughput transcriptomic analyses of transformed grapevine organs identified a large set of putative targets of the VvMybPA1 and VvMybPA2 transcription factors. Both genes significantly activated enzymes of the flavonoid pathway, including anthocyanidin reductase and leucoanthocyanidin reductase 1, the specific terminal steps in the biosynthesis of epicatechin and catechin, respectively, but not leucoanthocyanidin reductase 2. The functional annotation of the genes whose expression was modified revealed putative new actors of the proanthocyanidin pathway, such as glucosyltransferases and transporters.

Highlights

  • To cite this version: Nancy Terrier, Laurent Torregrosa, Agnes Ageorges, Sandrine Vialet, Clotilde Verries, et al

  • The sequences were assembled in a contig, and the fulllength cDNA was amplified from cDNA of 3-weekpostflowering Shiraz berries, a developmental stage corresponding to the maximum rate of PA biosynthesis

  • PAs of these different tissues exhibit noticeable structural differences whose biological determinism is unknown, it is probably linked to the differential regulation of F3#H, flavonoid 3#,5#hydroxylase (F3#5#H), anthocyanidin reductase (ANR), LAR1, and LAR2 isogenes in a precise time- and tissue-specific manner

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Summary

Introduction

To cite this version: Nancy Terrier, Laurent Torregrosa, Agnes Ageorges, Sandrine Vialet, Clotilde Verries, et al. L’archive ouverte pluridisciplinaire HAL, est destinée au dépôt et à la diffusion de documents scientifiques de niveau recherche, publiés ou non, émanant des établissements d’enseignement et de recherche français ou étrangers, des laboratoires publics ou privés. A novel Myb factor, VvMybPA2, which is described in this study, is in contrast mainly expressed in the exocarp of young berries and in the leaves This transcription factor shows very high protein sequence homology with other plant Myb factors, which regulate flavonoid biosynthesis. High-throughput transcriptomic analyses of transformed grapevine organs identified a large set of putative targets of the VvMybPA1 and VvMybPA2 transcription factors Both genes significantly activated enzymes of the flavonoid pathway, including anthocyanidin reductase and leucoanthocyanidin reductase 1, the specific terminal steps in the biosynthesis of epicatechin and catechin, respectively, but not leucoanthocyanidin reductase 2. The functional annotation of the genes whose expression was modified revealed putative new actors of the proanthocyanidin pathway, such as glucosyltransferases and transporters

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