Identification of simple sequence repeat markers tightly linked to plum pox virus resistance in apricot View Full Text


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Article Info

DATE

2012-08

AUTHORS

José Miguel Soriano, María Luisa Domingo, Elena Zuriaga, Carlos Romero, Tetyana Zhebentyayeva, Albert G. Abbott, María Luisa Badenes

ABSTRACT

Sharka disease, caused by the plum pox virus (PPV), is one of the major limiting factors for stone fruit production in Europe and America. Attempts to stop the disease through the eradication of infected trees have been unsuccessful. Introgression of PPV resistance for crop improvement is therefore the most important goal in Prunus breeding programs. Due to time- and labour-consuming protocols, phenotyping for sharka is still the major bottleneck in the breeding pipeline. In this context, screening of seedlings at early stages of development and marker-assisted selection (MAS) provide the best solution for enhancing breeding efficiency. In this study, we generated 42 simple sequence repeat (SSR) markers from the peach genome assembly v1.0 and an apricot bacterial artificial chromosome clone identified in the physical map of the PPV resistance locus previously defined in apricot. Using a linkage mapping approach, we found SSR markers tightly linked to PPV resistance trait in all our progenies. Three SSR markers, PGS1.21 PGS1.23 and PGS1.24, showed allelic variants associated with PPV resistance with no recombinants in the crosses analysed. These markers unambiguously discriminated resistant from susceptible accessions in different genetic backgrounds. The results presented here are the first successful application of their use in MAS for breeding resistance in Prunus species. More... »

PAGES

1017-1026

References to SciGraph publications

  • 2010-04. Quantitative trait analysis of resistance to plum pox virus in the apricot F1 progeny “Harlayne” × “Vestar” in TREE GENETICS & GENOMES
  • 1999-08-26. Primer3 on the WWW for General Users and for Biologist Programmers in BIOINFORMATICS METHODS AND PROTOCOLS
  • 2011-03. Identification of QTL for resistance to plum pox virus strains M and D in Lito and Harcot apricot cultivars in MOLECULAR BREEDING
  • 2007-10. QTL analysis of resistance to sharka disease in the apricot (Prunus armeniaca L.) ‘Polonais’ × ‘Stark Early Orange’ F1 progeny in TREE GENETICS & GENOMES
  • 2000-02. An economic method for the fluorescent labeling of PCR fragments in NATURE BIOTECHNOLOGY
  • 2008-07. Origin of resistance to plum pox virus in Apricot: what new AFLP and targeted SSR data analyses tell in TREE GENETICS & GENOMES
  • 1992-09. Accuracy of mapping quantitative trait loci in autogamous species in THEORETICAL AND APPLIED GENETICS
  • 2008-07. Identification and mapping of a locus conferring plum pox virus resistance in two apricot-improved linkage maps in TREE GENETICS & GENOMES
  • 2002-08. Genetic linkage maps of two apricot cultivars (Prunus armeniaca L.), and mapping of PPV (sharka) resistance in THEORETICAL AND APPLIED GENETICS
  • 2008-07. A genetic linkage map for an apricot (Prunus armeniaca L.) BC1 population mapping plum pox virus resistance in TREE GENETICS & GENOMES
  • 2008-04. Inheritance of resistance to Plum pox virus in apricot (Prunus armeniaca L.) in TREE GENETICS & GENOMES
  • 2004-11. Molecular markers linked to the apple scab resistance gene Vbj derived from Malus baccata jackii in THEORETICAL AND APPLIED GENETICS
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    http://scigraph.springernature.com/pub.10.1007/s11032-011-9685-4

    DOI

    http://dx.doi.org/10.1007/s11032-011-9685-4

    DIMENSIONS

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    43 schema:description Sharka disease, caused by the plum pox virus (PPV), is one of the major limiting factors for stone fruit production in Europe and America. Attempts to stop the disease through the eradication of infected trees have been unsuccessful. Introgression of PPV resistance for crop improvement is therefore the most important goal in Prunus breeding programs. Due to time- and labour-consuming protocols, phenotyping for sharka is still the major bottleneck in the breeding pipeline. In this context, screening of seedlings at early stages of development and marker-assisted selection (MAS) provide the best solution for enhancing breeding efficiency. In this study, we generated 42 simple sequence repeat (SSR) markers from the peach genome assembly v1.0 and an apricot bacterial artificial chromosome clone identified in the physical map of the PPV resistance locus previously defined in apricot. Using a linkage mapping approach, we found SSR markers tightly linked to PPV resistance trait in all our progenies. Three SSR markers, PGS1.21 PGS1.23 and PGS1.24, showed allelic variants associated with PPV resistance with no recombinants in the crosses analysed. These markers unambiguously discriminated resistant from susceptible accessions in different genetic backgrounds. The results presented here are the first successful application of their use in MAS for breeding resistance in Prunus species.
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