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Results of this study solidified the basis for studying important agricultural traits and implementing marker-assisted selection (MAS) toward genetic improvement in sesame.
Accuracy of QTL mapping is important in implementing marker-assisted selection (MAS) for polygenic traits, but small confidence intervals for QTL positions are not easily obtained [ 39, 40], although typical approximate 95% confidence intervals for QTL positions are of the order of 20 cM [ 41, 42].
This information is essential to implement marker assisted selection programs useful for the turbot industry.
To implement marker assisted selection in the swine breeding industry, information about extent and degree of LD is essential.
However, for practical applications, i.e. to implement marker assisted selection in commercial populations, it will be important to identify which of these genes are the most important.
This is a valuable resource that turfgrass breeders and others in the turfgrass research community can use as a reference for comparative transcriptome studies, as a platform for genetic marker development, to characterize buffalograss variety differences, and to implement marker assisted breeding strategies for future cultivar development.
Profound knowledge of the genetic architecture of these traits is needed to successfully implement marker-assisted selection programs.
Since simulation studies require molecular genetic and pedigree datasets to ascertain selection methods, our primary aim was to develop a software program capable of producing a dataset for a base population in the honey bee and which could be used to implement marker-based selection procedures.
By implementing biochemical markers in all stages of drug development, novel drug candidates may be identified at early decision points and potential safety issues may be addressed in a timely way, thereby increasing efficiency, reducing costs and prompting efficient allocation of limited resources.
AlGaN and Si-doped GaN layers were implemented as marker layers during GaN epitaxial growth in order to get a deeper scientific understanding of the growth process on structured substrates.
In addition, we implemented the marker clumping procedure used by PLINK.
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