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It was proposed the ADH1B*47His allele may serve better as an ancestral marker for understanding expansions and migrations of ancient Central China populations, and is related to disease susceptibility and natural selection as well [29].
Mitochondrial DNA (mtDNA) is a popular molecular marker for understanding the phylogenetic relationships in animals.
Thus, mapping of rDNA sequences and heterochromatin may in some cases be used as an additional marker for understanding relationships and routes of speciation within Barbitistini.
It was concluded that the physical mapping of rDNA sequences and heterochromatin may be used as an additional marker for understanding interspecific relationships in these groups and their routes of speciation.
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The present study aimed to (i) apply next generation sequencing methods to linkage mapping analyses by identifying the genomic location of genes conferring resistance to phosphine and (ii) develop SNP markers for understanding the biological and genetic aspects (gene interactions and fitness) of this trait on grain insect pests.
This provides the basis for correlating changes in genotypes using marker polymorphisms, for understanding the fundamentals of biology, as well as for appreciating the nature of research and applying knowledge from one organism to another.
Genetic variation in neutral markers, while useful for understanding demographic processes, may have little predictive power for adaptation, because neutral genetic diversity does not necessarily predict quantitative variation in key traits (Holderegger et al. 2006).
Microsatellite markers are increasingly used for understanding population genetics and evolution (Thomson et al., 2010).
Genetic markers are important tools for understanding variation, and for identification of gene/QTLs for traits of interest in molecular breeding activities.
Identification of specific DNA methylation markers would be helpful for understanding pathogenetic mechanisms, as well as for developing new therapeutic strategies.
Together, all of these markers will be critical for understanding the regional patterning of the gut during development, as well as for in vitro differentiation of ES cells into endoderm lineages for therapeutic use.
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