A comparative study of genetic relationships among the AA-genome Oryza species using RAPD and SSR markers
Open Access
- 19 September 2003
- journal article
- research article
- Published by Springer Nature in Theoretical and Applied Genetics
- Vol. 108 (1) , 113-120
- https://doi.org/10.1007/s00122-003-1414-x
Abstract
In order to estimate genetic relationships of the AA-genome Oryza species, RAPD and SSR analyses were performed with 45 accessions, including 13 cultivated varieties (eight Oryza sativa and five Oryza glaberrima) and 32 wild accessions (nine Oryza rufipogon, seven Oryza nivara, three Oryza glumaepatula, four Oryza longistaminata, six Oryza barthii, and three Oryza meridionalis). A total of 181 clear and repeatable bands were amplified from 27 selected RAPD primers, and 101 alleles were detected from 29 SSR primer pairs. The dendrogram constructed using UPGMA from a genetic-similarity matrix based on the RAPD data supported the clustering of distinct five groups with a few exceptions: O. rufipogon/O. nivara/O. meridionalis, O. barthii/O. glaberrima, O. glumaepatula, O. sativa and O. longistaminata. The dendrogram based on the SSR analysis showed a more-complicated genetic variation pattern, but the O. longistaminata and O. barthii/O. glaberrima accessions were consistently separated from all other accessions, indicating significant differentiation of the African AA-genome Oryza species. For accessions in the O. rufipogon/O. nivara/O. sativa complex, it is apparent that geographical isolation has played an important role in differentiation of the Asian AA-genome Oryza taxa. It is also demonstrated from this study that both RAPD and SSR analyses are powerful methods for detecting polymorphisms among the different AA-genome Oryza accessions. However, the RAPD analysis provides a more-informative result in terms of the overall genetic relationships at the species level compared to the SSR analysis. The SSR analysis effectively reveals diminutive variation among accessions or individuals within the same species, given approximately the same number of primers or primer-pairs used in the studies.Keywords
This publication has 34 references indexed in Scilit:
- Nuclear- and chloroplast-microsatellite variation in A-genome species of riceGenome, 2001
- Size homoplasy in chloroplast microsatellites of wild perennial relatives of soybean (Glycine subgenus Glycine)Molecular Biology and Evolution, 1998
- Analysis of genetic variability of South American wild rice populations (Oryza glumaepatula) with isozymes and RAPD markersMolecular Ecology, 1998
- Phylogenetic relationships in A-genome species of rice as revealed by RAPD analysisGenes & Genetic Systems, 1996
- Simple repeat DNA is not replicated simplyNature Genetics, 1994
- Optimizing parental selection for genetic linkage mapsGenome, 1993
- Introgression of genes from Oryza officinalis Well ex Watt to cultivated rice, O. sativa L.Theoretical and Applied Genetics, 1990
- Origin of Cultivated RiceTaxon, 1988
- Origin of the genic diversity of cultivated rice (Oryza spp.): study of the polymorphism scored at 40 isozyme loci.The Japanese Journal of Genetics, 1982
- REPRODUCTIVE BARRIERS DISTRIBUTED IN CULTIVATED RICE SPECIES AND THEIR WILD RELATIVESThe Japanese Journal of Genetics, 1969