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Although the use of some recently developed marker techniques in plant sciences is not yet as extensive as that of well established methods such as SSR markers, the number of studies utilizing these advanced methods is rapidly increasing [ 5].
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The objective of the present study was to explore the potential utility of the SCoT marker technique in assessing the genetic diversity and phylogenetic relationship within a local sugarcane germplasm collection.
Here, we used PCR-based molecular marker techniques involving retrotransposons and microsatellites to uncover polyploidization induced genetic restructuring in triticale.
In situ measurements of soil and rock compressibility through radioactive marker techniques (RMT) are here discussed.
Molecular marker techniques, viz.
Therefore, we attempted to overcome this loss by using marker-assisted techniques in the first 10 generations of inbreeding to select mating pairs most apt to increase the number of recombination segments.
Here, we employed the Simple Sequence Repeat (SSR) molecular marker technique to characterize genetic variation in scions and rootstocks of old olive trees from the East Mediterranean.
TRAP is a novel molecular marker technique which has been effectively used in genetic diversity analysis of germplasm and genetic mapping.
Methods and Results: Using the compound microsatellite marker technique, 12 microsatellite primers were identified in S. incisa.
In parallel to the analysis of BAC-derived SSR markers, we have also used the TRAP marker technique to determine the potential application in peanut.
The compound microsatellite marker technique based on a dual-suppression-PCR technique outlined in Lian et al. (2001) was also used to develop additional polymorphic microsatellite markers.
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