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2010 | 52 | 1 |

Tytuł artykułu

The usefulness of RAPD and AFLP markers for determining genetic similarity in rye [Secale L.] species and subspecies

Treść / Zawartość

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
In this work we searched for genetic similarities in twelve wild rye species and subspecies and a control (S. cereale ssp. cereale, cv. Walet), using RAPD and AFLP markers. AFLP is useful for distinguishing homo- and heterozygotes but is not recommended for evaluation of codominant markers. We assessed the usefulness of the applied methods for examining genetic similarity in rye. RAPD yielded four groups of genetic similarity, with similarity values between 0.32 and 0.81. AFLP markers distinguished two groups of genetic similarity, ranging from 0.49 to 0.79.

Wydawca

-

Rocznik

Tom

52

Numer

1

Opis fizyczny

p.19-25,fig.,ref.

Twórcy

autor
  • Poznan University of Life Sciences, Wojska Polskiego 71c, 60-625 Poznan, Poland
autor
autor

Bibliografia

  • BRODA Z, and WOJCIECHOWSKA A. 2004. Przyszłość hodowli roślin w diagnostyce molekularnej. Biuletyn HodowliRoślin i Nasiennictwa 2/2004: 16–18.
  • BEDNAREK PT, MASOJĆ P, LEWANDOWSKA R, and MYŚKÓW B. 2003. Saturating rye genetic map with amplified fragmentlength polymorphism (AFLP) and random amplifiedpolymorphic DNA (RAPD) markers. Journal ofApplied Genetic 44(1): 21–33.
  • CHIKMAWATI T. SKOVMAND B, and GUSTAFSON JP. 2005. Phylogenetic relationships among Secale speciesrevealed by amplified fragment length polymorphisms.Genome 48: 792–801.
  • COLOMBO C, GERARD S, and CHARRIER, A. 2000. Diversity within American cassava germ plasm based on RAPD markers.Genetics and Molecular Biology 23(1): 189–199.
  • CHRZĄSTEK M, PACZOS-GRZĘDA E, and KRUK K. 2006. Ocena zróżnicowania genetycznego polskich odmian owsa(Avena sativa L.) Acta Agrophysica 8(2): 319–326.
  • CHRZĄSTEK M, and PACZOS-GRZĘDA E. 2003. Analiza molekularna i cytologiczna oraz ocena niektórych cech ilościowychmieszańców międzygatunkowych Avena sativaL. × Avena fatua L. Biuletyn IHAR 230: 387–397.
  • CHWEDORZEWSKA KJ, BEDNAREK PT, LEWANDOWSKA R, KRAJEWSKI P, and PUCHALSKI J. 2006. Studies on genetic changes in ryesamples (Secale cereale L.) maintained in a seed bank.Cellular and Molecular Biology Letters 11: 338–347.
  • DROSSOU A, KATSIOTIS A, LEGGETT JM, LOUKAS M, and TSAKAS S. 2004. Genome and species relationships in genus Avenabased on RAPD and AFLP molecular markers.Theoretical and Applied Genetics 109: 48–54.
  • GALETA M, BRYNGELSSON T, BEKELE E, and DAGNE K. 2007. Comparative analysis of genetic relationship and diagnosticmarkers of several taxa of Guizotia Cass.(Asteraceae) as revealed by AFLPs and RAPDs. PlantSystematics and Evolution 265: 221–239.
  • HALLDEN C, NILSSON NO, READING IM, and SÄLL T. 1994. Evaluation of RFLP and RAPD markers in a comparison of Brassica napus breeding lines. Theoretical andApplied Genetics 88: 123–128.
  • KOCH G, and JUNG C. 1997. Phylogenetic relationships of industrial chicory varieties revealed by RAPD and AFLP.Agronomie 17: 323–333.
  • KUCZYŃSKA A, BOCIANOWSKI J, MASOJĆ P, SURMA M, and ADAMSKI T. 2003. Zastosowanie markerów RAPD dookreślenia podobieństwa genetycznego odmianjęczmienia ozimego (Hordeum vulgare L.). BiuletynIHAR 226/227/1: 81–85.
  • MATOS M, PINTO-CARNIDE O, and BENITO C. 2001. Phylogenetic relationships among Portuguese rye based on isoenzyme, RAPD and ISSR markers. Hereditas 134: 299–236.
  • NEI M, and LI WH, 1979. Mathematical model for studying genetic variation in terms of restriction endonucleases.Proceedings of the National Academy of Sciences USA79: 5269–5273.
  • NOWOSIELSKI J, PODYMA W, and NOWOSIELSKA D. 2002. Molecular research on the genetic diversity of Polish varietiesand landraces of Phaseolus coccineus L. andPhaseolus vulgaris L. Using the RAPD and AFLPmethod. Cellular and Molecular Biology Letters 7:753–762.
  • PACZOS-GRZĘDA E. 2004. Pedigree, RAPD and simplified AFLPbased assessment of genetic relationships among Avenasativa L. cultivars. Euphytica 138: 13–22.
  • PACZOS-GRZĘDA E, CHRZĄSTEK M, and MIAZGA D. 2005. Badania genetyczno-hodowlane mieszańców heksaploidalnegoowsa Avena sativa L. × Avena byzantina Koch.Biuletyn IHAR 236: 193–201.
  • PARAN I, AFTERGOOT E, and SHIFRISS CH. 1998. Variation in Capsicum annuum revealed by RAPD and AFLP markers.Euphytica 99: 167–173.
  • PUECHER DI, KATSIOTIS A, LEGGETT JM, LOUKAS M, and TSAKAS S. 2001. Genetic variability measures among Bromuscatharticus Vahl. Populations and cultivars with RAPDand AFLP markers. Euphytica 121: 229–236.
  • SEMAN K, BJORNSTAD A, and STEDJE B. 2003. Genetic diversity and differentiation in Ethiopian populations ofPhytolacca dodecandra as revealed by AFLP and RAPDanalyses. Genetic Resources and Crop Evolution 50:649–661.
  • SHANG HY, WEI YM, WANG XR, and ZHENG YL. 2006. Genetic diversity and polygenetic relationships in the genus Secale L. (rye) based on Secale cereale microsatellite markers. Genetics and Molecular Biology 29, 4: 685–691.
  • SZTUBA-SOLIŃSKA J. 2005. Systemy markerów molekularnych i ich zastosowanie w hodowli roślin. Kosmos 54: 227–239.
  • THOMPSON D, and HENRY R. 1995. Single step protocol for preparation of plant tissue for analysis by PCR.Biotechniques 19: 394–400
  • WILLIAMS CE, and STCLAIR DA. 1993. Phenotypic relationships and levels of variability detected by restriction fragment length polymorphism and random amplified polymorphic DNA analysis of cultivated and wild accessions of Lycopersicon esculentum. Genome 36: 619–630.
  • VAILLANCOURT A, NKONGOLO KK, MICHAEL P, and MEHES M. 2008. Identification, characterisation, and chromosome locations of rye and wheat specific USSR and SCAR markers useful for breeding purposes. Euphytica 159:297–306.
  • VOS P, HOGERS R, BLEEKER M, REIJANS M, LEE TV, HORNES M, FRIJTERS A, POT J, PELEMAN J, KUIPER M, and ZABEAU M. 1995. AFLP: a new technique for DNA fingerprinting.Nuclear Acids Research 23: 4407–4414

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

bwmeta1.element.agro-article-3f7885ac-5a00-4497-a2a4-c3dd5790b082
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