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Genomic maps types

Lake, S., A. Krook, and J. R. Zierath. 2003. Analysis of insulin signaling pathways through comparative genomics. Mapping mechanisms for insulin resistance in type 2 (non-insulin-dependent) diabetes mellitus. Exp Clin Endocrinol Diabetes 111 191-7. [Pg.319]

Figure 2. A. Genomic mapping of transposon-tagged insertions conferring NP-1 -resistance to wild type Synechocystis. Arrows show the insertion sites, asterisks show the mutation sites determined by sequencing. Figure 2. A. Genomic mapping of transposon-tagged insertions conferring NP-1 -resistance to wild type Synechocystis. Arrows show the insertion sites, asterisks show the mutation sites determined by sequencing.
Miller JM. Whole-genome mapping a new paradigm in strain-typing technology. J Clin Microbiol. 2013 51 1066-70. doi 10.1128/JCM.00093-13. [Pg.143]

A link to molecular map data curated from the literature by FlyBase is provided by the gene report all maps that include the gene of interest are shown. Molecular maps are genomic maps of wild-type chromosomes. Each map represents the data presented in one... [Pg.517]

Wang DG, Fan JB, Siao CJ et al. Large-scale identification, mapping, and geno-typing of single-nucleotide polymorphisms in the human genome. Science 1998 280 1077-1082. [Pg.231]

SNPs are variable positions in a genome they have different allele types that differ by a single base. There is an estimated one SNP every 300 nucleotides in the approximately 3 billion base pairs of the human genome (25,26). They can be used as measures of genetic diversity in humans. Presently, more than 5 million SNPs have been mapped (21). An individual can have two alleles of the same sequence (homozygous) or alleles of different sequences (heterozygous) at each SNP locus. [Pg.77]


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