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2008 | 49 | 1 |

Tytuł artykułu

Endonuclease restriction of SCAR amplicons SC811 is required to identify Ns-false-positive markers in PVS-susceptible potato cultivars

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
The Ns gene confers resistance of potato to Potato virus S (PVS). Sixteen German and Dutch potato cultivars, all registered in Poland, were found to be susceptible to PVS infection. However, scoring of the cultivars for the presence of the Ns-linked SCAR marker SC811₄₅₄ revealed additional amplicons with a similar electrophoretic migration rate as that of SC81₄₅₄, which resulted in ambiguous determination of the genotype at the Ns locus. MboI or FokI treatment of the PCR products allowed to detect their Ns-unspecificity in PVS-susceptible potato cultivars.

Słowa kluczowe

Wydawca

-

Rocznik

Tom

49

Numer

1

Opis fizyczny

p.45-47,fig.,ref.

Twórcy

autor
  • Plant Breeding and Acclimatization Institute, Platanowa 19, 05831 Mlochow, Poland
  • Plant Breeding and Acclimatization Institute, Platanowa 19, 05831 Mlochow, Poland
  • Plant Breeding and Acclimatization Institute, Platanowa 19, 05831 Mlochow, Poland
autor
  • Plant Breeding and Acclimatization Institute, Platanowa 19, 05831 Mlochow, Poland
autor
  • Plant Breeding and Acclimatization Institute, Platanowa 19, 05831 Mlochow, Poland

Bibliografia

  • Chen X, Salamini F, Gebhardt C, 2001. A potato molecular-function map for carbohydrate metabolism and transport. Theor Appl Genet 102: 284-295.
  • Collard BCY, Jahufer MZZ, Brouwer JB, Pang ECK, 2005. An introduction to markers, quantitative trait loci (QTL) mapping and marker-assisted selection for crop improvement: The basic concepts. Euphytica 142: 169-196.
  • De Jong W, 2005. Approaches to gene isolation in potato. In: Razdan MK, Mattoo AK, eds. Genetic improvement of solanaceous crops. Vol. I: Potato. Science Publishers, Inc., Enfield/Plymouth: 165-184.
  • Gebhardt C, 2005. Potato genetics: Molecular maps and more. In: Lörz H, Wenzel G, eds. Molecular markers systems in Plant Breeding and Crop Improvement. Vol. 55. Berlin, Heidelberg: Springer- Verlag: 215-224.
  • Gebhardt C, Schmidt R, Schneider K, 2005. Plant genome analysis: The state of the art. Intern Rev Cytol 247: 223-284.
  • Konieczny A, Ausubel FM, 1993. A procedure for mapping Arabidopsis mutations using co-dominant ecotype-specific PCR-based markers. Plant J 4: 403-410.
  • Marczewski W, 2001. Inter-simple sequence repeat (ISSR) markers for the Ns resistance gene in potato (Solanum tuberosum L.). J Appl Genet 42: 139-144.
  • Marczewski W, Hennig J, Gebhardt C, 2002. The Potato virus S resistance gene Ns maps to potato chromosome VIII. Theor Appl Genet 105: 564-567.
  • Marczewski W, Strzelczyk-Żyta D, Hennig J, Witek K, Gebhardt C, 2006. Potato chromosomes IX and XI carry genes for resistance to potato virus M. Theor Appl Genet 112: 1232-1238.
  • Paran I, Michelmore RW, 1993. Development of reliable PCR-based markers linked to downy mildew resistance genes in lettuce. Theor Appl Genet 85: 985-993.
  • Staub JE, Serquen FC, Gupta M, 1996. Genetic markers, map construction and their application in plant breeding. HortScience 31: 729-741.
  • Thormann CE, Ferreira ME, Camargo LEA, 1994. Comparison of RFLP and RAPD markers to estimating genetic relationships within and among cruciferous species. Theor Appl Genet 88: 973-980.
  • Witek K, Strzelczyk-Żyta D, Hennig J, Marczewski W, 2006. A multiplex PCR approach to simultaneously genotype potato towards the resistance alleles Ry-fₛₜₒ and Ns. Mol Breeding: 18: 273-275.

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

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