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Article|06 Mar 2025|OPEN
A divergent haplotype with a large deletion at the berry color locus causes a white-skinned phenotype in grapevine 
Jean-Sébastien Reynard1 , , Justine Brodard2 , David Roquis3 , Eric Droz2 , Komlan Avia4 , Thibaut Verdenal1 , Vivian Zufferey1 , Thierry Lacombe5,6 and Daniel Croll7 , Jean-Laurent Spring,1
1Viticulture, Agroscope, Av. de Rochettaz 21, 1009 Pully, Switzerland
2Virology, Agroscope, Route de Duillier 60, 1260 Nyon, Switzerland
3Hepia, Route de Presinge 150,1254 Jussy, Switzerland
4INRAE, Université de Strasbourg, UMR SVQV, 68000 Colmar, France
5UMR AGAP Institut, CIRAD, INRAE, Institut Agro, Univ Montpellier, F-34398 Montpellier, France
6IFV-INRAE-Institut Agro, UMT Geno-Vigne®, F-34398 Montpellier, France
7Institute of Biology, Laboratory of Evolutionary Genetics, 2000 Neuchâtel, Switzerland
*Corresponding author. E-mail: jean-sebastien.reynard@agroscope.admin.ch

Horticulture Research 12,
Article number: uhaf069 (2025)
doi: https://doi.org/10.1093/hr/uhaf069
Views: 1306

Received: 10 Oct 2024
Accepted: 25 Feb 2025
Published online: 06 Mar 2025

Abstract

The current genetic model explaining berry skin color in Vitis vinifera is incomplete and fails to predict berry skin color phenotypes for one allele of VvMybA1, referred to as VvMybA1_SUB. Our study focuses on this specific allele, revealing that the haplotype containing VvMybA1_SUB (haplotype F) represents an ancient lineage of the berry color locus. Within haplotype F, we identified two functional subhaplotypes, HapF1 and HapF2, associated with black-skinned phenotype, and one non-functional subhaplotype, HapFDEL, responsible for white-skinned phenotype. HapF1 likely originated from wild populations domesticated in the Near East and subsequently spread globally with the expansion of viticulture. In contrast, HapF2 has a more restricted distribution and may have emerged from hybridization events between cultivated grapevines and local wild populations as viticulture migrated to the Italian peninsula. Furthermore, we found that in white-skinned berry cultivar, HapF has undergone a large deletion at the berry color locus, removing the majority of the VvMybA genes. Previous works suggested a single common origin for white-skinned varieties during grapevine domestication. Our results challenge this notion, instead proposing that white-skinned grape cultivars arose at least twice during grapevine domestication history. Alongside the major haplotype A, some white-skinned cultivars, such as cv. ‘Sultanina’ harbor HapFDEL. Since HapFDEL is present only in table grape varieties, we suggest that it likely arose from a recent mutational event and dispersed along the ancient Silk Road into East Asia. These findings enhance our understanding of the genetic diversity and evolutionary trajectory of grapevine cultivars, offering insights into their domestication and spread across different geographical regions.