DNA restriction fragment length polymorphisms correlate with isozyme diversity in Phaseolus vulgaris L. View Full Text


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Article Info

DATE

1991-06

AUTHORS

C. D. Chase, V. M. Ortega, C. E. Vallejos

ABSTRACT

Genetic variation in Phaseolus vulgaris L. (P. vulgaris) was investigated at the isozyme and DNA levels. We constructed a library of size-selected Pst I clones of P. vulgaris nuclear DNA. Clones from this library were used to examine 14 P. vulgaris accessions for restriction fragment length polymorphisms (RFLPs). DNAs from each accession were analyzed with three restriction enzymes and 18 single copy probes. The same accessions were also examined for variability at 16 isozyme loci. Accessions included four representatives of the T phaseolin group and five representatives each of the C and S phaseolin groups. One member of the S group (the breeding line XR-235-1-1) was derived from a cross between P. vulgaris and P. coccineus. Isozymes and RFLPs revealed very similar patterns of genetic variation. Little variation was observed among accessions with C and T phaseolin types or among those with the S phaseolin type. However, both isozyme and RFLP data grouped accessions with S phaseolin separately from those accessions with C or T phaseolin. The highest degree of polymorphism was observed between XR-235-1-1 and members of the C/T group. RFLP markers will supplement isozymes, increasing the number of polymorphic loci that can be analyzed in breeding, genetic, and evolutionary studies of Phaseolus. More... »

PAGES

806-811

References to SciGraph publications

  • 1979-12. Evolution of mating systems inLycopersicon hirsutum as deduced from genetic variation in electrophoretic and morphological characters in PLANT SYSTEMATICS AND EVOLUTION
  • 1986-03. Restriction fragment length polymorphisms and genetic improvement of agricultural species in EUPHYTICA
  • 1985-12. Heritable variation in the phaseolin protein of nondomesticated common bean, Phaseolus vulgaris L. in THEORETICAL AND APPLIED GENETICS
  • 1970-11. Interspecific hybridization between cultivated american species of the genusphaseolus in EUPHYTICA
  • 1989-12. Allozyme diversity in wild Phaseolus vulgaris: further evidence for two major centers of genetic diversity in THEORETICAL AND APPLIED GENETICS
  • 1986-10. Phaseolin variability among wild and cultivated common beans (Phaseolus vulgaris) from Colombia in ECONOMIC BOTANY
  • 1986-03. The suitability of restriction fragment length polymorphisms as genetic markers in maize in THEORETICAL AND APPLIED GENETICS
  • 1985-03. Restriction fragment polymorphisms as probes for plant diversity and their development as tools for applied plant breeding in PLANT MOLECULAR BIOLOGY
  • 1978-10. Evaluation of common bean cultivar relationships by means of isozyme electrophoretic patterns in EUPHYTICA
  • 1991-03. Linkage between isozyme markers and a locus affecting seed size in Phaseolus vulgaris L. in THEORETICAL AND APPLIED GENETICS
  • 1978-06. An electrophoretic survey of seedling isozymes in several Phaseolus species in EUPHYTICA
  • 1982-03. Embryo development in reciprocal crosses of Phaseolus vulgaris L. and P. coccineus Lam. in THEORETICAL AND APPLIED GENETICS
  • 1984-03. Distinguishing among white seeded bean cultivars by means of allozyme genotypes in EUPHYTICA
  • 1986-03. Predicting interspecific compatibilities in beans (Phaseolus) by seed protein electrophoresis in EUPHYTICA
  • 1986-10. Phaseolin-protein Variability in Wild Forms and Landraces of the Common Bean(Phaseolus vulgaris): Evidence for Multiple Centers of Domestication in ECONOMIC BOTANY
  • 1986-09. Construction of genetic linkage maps in maize and tomato using restriction fragment length polymorphisms in THEORETICAL AND APPLIED GENETICS
  • 1977-06. Genetic variation inLycopersicon pimpinellifolium: Evidence of evolutionary change in mating systems in PLANT SYSTEMATICS AND EVOLUTION
  • Journal

    TITLE

    Theoretical and Applied Genetics

    ISSUE

    6

    VOLUME

    81

    Author Affiliations

    Identifiers

    URI

    http://scigraph.springernature.com/pub.10.1007/bf00224994

    DOI

    http://dx.doi.org/10.1007/bf00224994

    DIMENSIONS

    https://app.dimensions.ai/details/publication/pub.1008990808

    PUBMED

    https://www.ncbi.nlm.nih.gov/pubmed/24221445


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    39 schema:description Genetic variation in Phaseolus vulgaris L. (P. vulgaris) was investigated at the isozyme and DNA levels. We constructed a library of size-selected Pst I clones of P. vulgaris nuclear DNA. Clones from this library were used to examine 14 P. vulgaris accessions for restriction fragment length polymorphisms (RFLPs). DNAs from each accession were analyzed with three restriction enzymes and 18 single copy probes. The same accessions were also examined for variability at 16 isozyme loci. Accessions included four representatives of the T phaseolin group and five representatives each of the C and S phaseolin groups. One member of the S group (the breeding line XR-235-1-1) was derived from a cross between P. vulgaris and P. coccineus. Isozymes and RFLPs revealed very similar patterns of genetic variation. Little variation was observed among accessions with C and T phaseolin types or among those with the S phaseolin type. However, both isozyme and RFLP data grouped accessions with S phaseolin separately from those accessions with C or T phaseolin. The highest degree of polymorphism was observed between XR-235-1-1 and members of the C/T group. RFLP markers will supplement isozymes, increasing the number of polymorphic loci that can be analyzed in breeding, genetic, and evolutionary studies of Phaseolus.
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