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Molecular Marker based Genetic Diversity Analysis in Rice ( Oryza sativa L.) using RAPD and SSR markers

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TLDR
SSR analysis resulted in a more definitive separation of clusters of genotypes indicating a higher level of efficiency of SSR markers for the accurate determination of relationships between accessions that are too close to be accurately differentiated by RAPD markers.
Abstract
The availability of an array of molecular marker systems allowed comparing the efficiency of two of these marker systems to estimate the relationships among various taxa. The objective of this study was to assess the genetic diversity among 40 cultivated varieties and five wild relatives of rice, Oryza sativa L. involving simple sequence repeat (SSR) randomly amplified polymorphic DNA (RAPD) markers. The accessions were evaluated for polymorphisms after amplification with 36 decamer primers and 38 SSR primer pairs. A total of 499 RAPD markers were produced among the 40 cultivated varieties and five wild relatives with a polymorphism percentage of 90.0. Out of 38 SSR primer pairs used, only one locus viz., RM115 was monomorphic. The average Polymorphism Information Content (PIC) value was 0.578 and it ranged from a low of zero (RM 115) to a high of 0.890 (RM 202). The Mantel matrix correspondence test was used to compare the similarity matrices and the correlation coefficient was 0. 582. The test indicated that clusters produced based on RAPD and SSR markers were not conserved since matrix correlation value was 0.582 as against the minimum required value of 0.800. The two marker systems contrasted most notably in pair-by-pair comparisons of relationships. SSR analysis resulted in a more definitive separation of clusters of genotypes indicating a higher level of efficiency of SSR markers for the accurate determination of relationships between accessions that are too close to be accurately differentiated by RAPD markers.

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Journal ArticleDOI

Genetic diversity among cultivars, landraces and wild relatives of rice as revealed by microsatellite markers

TL;DR: Allelic variability among the SSR markers was high enough to categorize cultivars, landraces and wild relatives of the rice germplasm, and to catalogue the genetic variability observed for future use.
Journal ArticleDOI

Efficiency of RAPD and ISSR markers system in accessing genetic variation of rice bean (Vigna umbellata) landraces

TL;DR: RAPD and ISSR marker systems were found to be useful for the genetic diversity studies in V. umbellata and identify variation within landraces.
Journal ArticleDOI

Assessment of Genetic Diversity of Philippine Rice Cultivars Carrying Good Quality Traits using SSR Markers

TL;DR: The study revealed that SSR markers facilitated the classification of these quality rice cultivars according to their subspecies, and exhibited a higher genetic diversity and therefore very useful for rice breeding programs, especially for genetic mapping studies and eventually for application of marker-assisted selection (MAS) in the programs.
Journal ArticleDOI

Genetic diversity associated with agronomic traits using microsatellite markers in Pakistani rice landraces

TL;DR: It is inferred that Pakistani landraces have diverse genetic bases and can be utilized in future breeding programs, and the DNA markers developed will assist in genotype identification, purity testing and plant variety protection.
References
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Journal ArticleDOI

DNA polymorphisms amplified by arbitrary primers are useful as genetic markers

TL;DR: A new DNA polymorphism assay based on the amplification of random DNA segments with single primers of arbitrary nucleotide sequence is described, suggesting that these polymorphisms be called RAPD markers, after Random Amplified Polymorphic DNA.
Journal Article

The Detection of Disease Clustering and a Generalized Regression Approach

Nathan Mantel
- 01 Feb 1967 - 
TL;DR: The technic to be given below for imparting statistical validity to the procedures already in vogue can be viewed as a generalized form of regression with possible useful application to problems arising in quite different contexts.
Journal ArticleDOI

Analysis of Gene Diversity in Subdivided Populations

TL;DR: A method is presented by which the gene diversity (heterozygosity) of a subdivided population can be analyzed into its components, i.e., the gene diversities within and between subpopulations.
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