A genetic analysis of seed and berry weight in grapevine

  1. Cabezas, J.A. 2
  2. Cervera, M.T. 1
  3. Ruiz-García, L. 3
  4. Carreño, J. 3
  5. Martínez-Zapater, J.M. 2
  1. 1 Instituto Nacional de Investigación y Tecnología Agraria y Alimentaria
    info

    Instituto Nacional de Investigación y Tecnología Agraria y Alimentaria

    Madrid, España

    ROR https://ror.org/011q66e29

  2. 2 Centro Nacional de Biotecnología
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    Centro Nacional de Biotecnología

    Madrid, España

    ROR https://ror.org/015w4v032

  3. 3 Instituto Murciano de Investigacion y Desarrollo Agrario y Alimentario
    info

    Instituto Murciano de Investigacion y Desarrollo Agrario y Alimentario

    La Alberca de Záncara, España

Revista:
Genome

ISSN: 0831-2796

Año de publicación: 2006

Volumen: 49

Número: 12

Páginas: 1572-1585

Tipo: Artículo

DOI: 10.1139/G06-122 PMID: 17426772 SCOPUS: 2-s2.0-34249672111 GOOGLE SCHOLAR

Otras publicaciones en: Genome

Resumen

Fruit size and seedlessness are highly relevant traits in many fruit crop species, and both are primary targets of breeding programs for table grapes. In this work we performed a quantitative genetic analysis of size and seedlessness in an F1 segregating population derived from the cross between a classical seeded (Vitis vinifera L. 'Dominga') and a newly bred seedless ('Autumn Seedless') cultivar. Fruit size was scored as berry weight (BW), and for seedlessness we considered both seed fresh weight (SFW) and the number of seeds and seed traces (SN) per berry. Quantitative trait loci (QTL) analysis of BW detected 3 QTLs affecting this trait and accounting for up to 67% of the total phenotypic variance. QTL analysis for seedlessness detected 3 QTLs affecting SN (explaining up to 35% of total variance) and 6 affecting SFW (explaining up to 90% of total variance). Among them, a major effect QTL explained almost half of the phenotypic variation for SFW. Comparative analysis of QTLs for these traits reduced the number of grapevine genomic regions involved, one of them being a major effect QTL for seedlessness. Association analyses showed that microsatellite locus VMC7F2, closely linked to this QTL, is a useful marker for selection of seedlessnes. © 2006 NRC.