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Identification and Localization of Molecular Markers Linked to the Lr9 Leaf Rust Resistance Gene of Wheat

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Publisher Springer
Specialty Genetics
Date 2013 Nov 5
PMID 24185890
Citations 28
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Abstract

Near-isogenic lines (NILs) for the leaf rust resistance gene Lr9 were screened for polymorphisms at the molecular level. RAPD (random amplified polymorphic DNA) primers as well as RFLP (restriction fragment length polymorphism) markers were used. Out of 395 RAPD primers tested, three showed polymorphisms between NILs, i.e., an additional band was found in resistant lines. One of these polymorphic bands was cloned and sequenced. Specific primers were synthesized, and after amplification only resistant lines showed an amplified product. Thus, these primers define a sequence-tagged site that is specific for the translocated fragment carrying the Lr9 gene. A cross between a resistant NIL and the spelt (Triticum spelta) variety 'Oberkulmer' was made, and F2 plants were analyzed for genetic linkage. All three polymorphisms detected by the PCR (polymerase chain reaction) and one RFLP marker (cMWG684) showed complete linkage to the Lr9 gene in 156 and 133 plants analyzed, respectively. A second RFLP marker (PSR546) was closely linked (8±2.4 cM) to the Lr9 gene and the other four DNA markers. As this marker maps to the distal part of the long arm of chromosome 6B of wheat, Lr9 and the other DNA markers also map to the distal region of 6BL. All three PCR markers detected the Lr9 gene in independently derived breeding lines and varieties, thus proving their general applicability in wheat breeding programs.

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References
1.
Dente L, Cesareni G, Cortese R . pEMBL: a new family of single stranded plasmids. Nucleic Acids Res. 1983; 11(6):1645-55. PMC: 325826. DOI: 10.1093/nar/11.6.1645. View

2.
Liu Y, Tsunewaki K . Restriction fragment length polymorphism (RFLP) analysis in wheat. II. Linkage maps of the RFLP sites in common wheat. Jpn J Genet. 1991; 66(5):617-33. DOI: 10.1266/jjg.66.617. View

3.
Paran I, Michelmore R . Development of reliable PCR-based markers linked to downy mildew resistance genes in lettuce. Theor Appl Genet. 2013; 85(8):985-93. DOI: 10.1007/BF00215038. View

4.
Devos K, Atkinson M, Chinoy C, Liu C, Gale M . RFLP-based genetic map of the homoeologous group 3 chromosomes of wheat and rye. Theor Appl Genet. 2013; 83(8):931-9. DOI: 10.1007/BF00232953. View

5.
Bentolila S, Guitton C, Bouvet N, Sailland A, Nykaza S, Freyssinet G . Identification of an RFLP marker tightly linked to theHt1 gene in maize. Theor Appl Genet. 2013; 82(4):393-8. DOI: 10.1007/BF00588588. View