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Lee, M. et al. Expanding the genetic map of maize with the intermated B73 × Mo17 (IBM) population.
McClintock demonstrated the role of telomeres and centromeres on chromosomes and produced the first genetic map of maize.
The integrated genetic and physical map of maize [25] was used to determine the physical location of each genetic marker on B73 RefGen_v1.
Genes of interest were placed on the physical-genetic map of maize using the BLAST tool implemented by the Maize Genome Sequencing Project [42].
The genetic map of maize is subdivided into approximately 100 10-to 15-cM bins [ 56].
The results can be viewed on the integrated map of maize [ 1, 2].
Similar(49)
Lu, F. et al. High-resolution genetic mapping of maize pan-genome sequence anchors.
A classic example of this form of gene regulation was originally identified through genetic mapping of maize mutations affecting seed-coat color.
The fluorescent-based high-information-content fingerprinting (HICF) technique taking the advantage of automated capillary DNA sequencing instruments have recently been developed for physical mapping of maize [10], tilapia [12], catfish [13] and rainbow trout [14].
This provides a new means for intuitively comparing the cytogenetic, linkage, and physical maps of maize.
Mapping of maize NCED genes led to the identification of six different loci, only three being common to the nine previously reported loci.
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