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Application of inter simple sequence repeat (ISSR) markers to plant genetics

Electrophoresis · 1997 · Vol. 18(9) · pp. 1524–1528
Ian D. GodwinE. A. B. AitkenLawrence W. Smith

Abstract

Microsatellites or simple sequence repeats (SSRs) are ubiquitous in eukaryotic genomes. Single-locus SSR markers have been developed for a number of species, although there is a major bottleneck in developing SSR markers whereby flanking sequences must be known to design 5'-anchors for polymerase chain reaction (PCR) primers. Inter SSR (ISSR) fingerprinting was developed such that no sequence knowledge was required. Primers based on a repeat sequence, such as (CA)n, can be made with a degenerate 3'-anchor, such as (CA)8RG or (AGC)6TY. The resultant PCR reaction amplifies the sequence between two SSRs, yielding a multilocus marker system useful for fingerprinting, diversity analysis and genome mapping. PCR products are radiolabelled with 32P or 33P via end-labelling or PCR incorporation, and separated on a polyacrylamide sequencing gel prior to autoradiographic visualisation. A typical reaction yields 20-100 bands per lane depending on the species and primer. We have used ISSR fingerprinting in a number of plant species, and report here some results on two important tropical species, sorghum and banana. Previous investigators have demonstrated that ISSR analysis usually detects a higher level of polymorphism than that detected with restriction fragment length polymorphism (RFLP) or random amplified polymorphic DNA (RAPD) analyses. Our data indicate that this is not a result of greater polymorphism genetically, but rather technical reasons related to the detection methodology used for ISSR analysis.

Plant Disease Resistance and GeneticsPlant Pathogens and Fungal DiseasesGenetic diversity and population structureMicrosatelliteBiologyGeneticsRAPDDNA profilingGenetic markerPolymerase chain reactionGenomePrimer (cosmetics)Restriction fragment length polymorphism

MeSH terms

AutoradiographyEdible GrainFruitGenetic MarkersPolymorphism, GeneticRepetitive Sequences, Nucleic AcidPolymerase Chain ReactionDNA FingerprintingGenes, PlantMinisatellite RepeatsDNA, Plant
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References
Location of ?-amylase sequences in wheat and its relatives
Theoretical and Applied Genetics · 1988 · 460 citations
AFLP: a new technique for DNA fingerprinting
Nucleic Acids Research · 1995 · 12,428 citations
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