Literature DB >> 28959290

Monitoring Three Plasmopara halstedii Resistance Genes in Iranian Sunflower Inbred Lines.

Masood Soltani Najafabadi1, Raha Abedini1, Hassan Eskandari1, Rahim Mehrabi1.   

Abstract

BACKGROUND: Downy mildew caused by Plasmopara halstedii is a devastating disease in sunflower worldwide. Several dominant resistance genes designated as Pl have been identified and linked molecular markers have been demonstrated. However, no information on theresistance genes is available forIranian lines.
OBJECTIVES: The presence of three map-based molecular markers previously proved to be linked to different resistance genes were evaluated in sunflower inbred lines.
MATERIALS AND METHODS: Using PCR-based and CAPS molecular markers, 26 sunflower inbred lines with different responses to P. halstedii race 100 were used to detect the presence of three resistance loci including Pl1 , Pl6 and Pl13 within the lines.
RESULTS: Molecular marker linked to Pl13 was present in some of the sunflower lines but was not correlated with the phenotypic reaction of the lines to race 100. Despite the use of three markers linked to Pl6 , PCR failed to amplify any corresponding product. This data may suggest that none of the genotypes possessed Pl6 locus. Pl1 -linked cleaved amplified polymorphic sequences (CAPS) were present in several resistance lines and effectively differentiated susceptible and resistant sunflower lines.
CONCLUSIONS: Applicability of molecular markers in breeding programs revisited in disease management.

Entities:  

Keywords:  CAPS; Downy mildew; Molecular marker; PCR; Pl1 locus

Year:  2015        PMID: 28959290      PMCID: PMC5435005          DOI: 10.15171/ijb.1047

Source DB:  PubMed          Journal:  Iran J Biotechnol        ISSN: 1728-3043            Impact factor:   1.671


  19 in total

1.  Identification of molecular markers linked to the mildew resistance gene Pl-d in apple.

Authors:  C M James; J B Clarke; K M Evans
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Review 3.  Marker-assisted selection: an approach for precision plant breeding in the twenty-first century.

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4.  A genetic analysis of segregation distortion revealed by molecular markers in Lophopyrum ponticum chromosome 7E.

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5.  Molecular analysis of a major locus for resistance to downy mildew in sunflower with specific PCR-based markers.

Authors:  M. F. Bouzidi; S. Badaoui; F. Cambon; F. Vear; D. T. De Labrouhe; P. Nicolas; S. Mouzeyar
Journal:  Theor Appl Genet       Date:  2002-03       Impact factor: 5.699

6.  Candidate disease resistance genes in sunflower cloned using conserved nucleotide-binding site motifs: genetic mapping and linkage to the downy mildew resistance gene Pl1.

Authors:  M A Gedil; M B Slabaugh; S Berry; R Johnson; R Michelmore; J Miller; T Gulya; S J Knapp
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7.  Single nucleotide polymorphisms reveal multiple introductions into France of Plasmopara halstedii, the plant pathogen causing sunflower downy mildew.

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8.  Development of PCR markers for the Pl5/Pl8 locus for resistance to Plasmopara halstedii in sunflower, Helianthus annuus L. from complete CC-NBS-LRR sequences.

Authors:  O Radwan; M F Bouzidi; P Nicolas; S Mouzeyar
Journal:  Theor Appl Genet       Date:  2004-03-09       Impact factor: 5.699

9.  Molecular variability of sunflower downy mildew, Plasmopara halstedii, from different continents.

Authors:  P Roeckel-Drevet; J Tourvieille; T J Gulya; G Charmet; P Nicolas; D Tourvieille de Labrouhe
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10.  Molecular Marker Analysis of Soybean Plant Introductions with Resistance to Phytophthora sojae.

Authors:  S G Gordon; K Kowitwanich; W Pipatpongpinyo; S K St Martin; A E Dorrance
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