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Genome analysis comparative

Mouse Genome Sequencing Consortium Initial sequencing and comparative analysis of the mouse genome. Nature 2002 420 520. [Pg.340]

Carlton, J. M. et al. Genome sequence and comparative analysis of the model rodent malaria parasite Plasmodium yoelii. Nature 2002, 419,512-519. [Pg.177]

The methods for genome-wide analysis of ribosomal association are conceptually different from those for analysis of a single mRNA (e.g., northern analysis). While in assays of a single gene by northern analysis it is simple to compare the distribution of an mRNA in different fractions, in a genome-wide assay, the mRNAs are usually compared relative to others within the fraction. Because of that, it is important to analyze by northern analysis several mRNAs that appeared to be affected to different extents, and to compare the relative effects among this group between the microarrays and the northern analysis. [Pg.233]

Jolly, R. A. et al., Pooling Samples Within Microarray Studies A Comparative Analysis of Rat Liver Transcription Response to Prototypical Toxicants, Physiol. Genomics, 22, 346, 2005. [Pg.92]

Bernstein, B.E. et ol. (2005) Genomic maps and comparative analysis of histone modifications, in human and mouse. Cell, 120, 169-181. [Pg.18]

Jameson, D., Gibson, A.P., Hudelot, C. and Higgs, P.G. (2003) OGRe a relational database for comparative analysis of mitochondrial genomes. Nucleic Acids Research 31, 202-206. [Pg.74]

Lodmell, J.S., Paillart, J.C., Mignot, D., Ehresmann, B., Ehresmann, C. and Marquet, R. (1998) Oligonucleotide-mediated inhibition of genomic RNA dimerization of HIV-1 strains MAL and LAI A comparative analysis. Antisense Nucleic Acid Drug Dev., 8, 517-529. [Pg.105]

Genome Database structure and functional network of S. cerevisiae and comparative analysis for related yeasts (http // mips.helmholtz-muenchen.de/genre/proj/yeast/)... [Pg.20]

Markowitz VM, Chen IM, Palaniappan K et al (2010) The integrated microbial genomes system an expanding comparative analysis resource. Nucleic Acids Res 38 D382-D390... [Pg.38]

Dandekar T, Schuster S, Snel B, Huynen M, Bork P (1999) Pathway alignment application to comparative analysis of glycolytic enzymes. Biochem J 343 115-124 Daubin V, Moran NA, Ochman H (2003) Phylogenetics and the cohesion of bacterial genomes. Science 301 829-832... [Pg.234]

Comparative genomics, the analysis of DNA sequence patterns of humans and other model organisms, has become one of the most powerful strategies for identifying human genes and interpreting their function. [Pg.285]

Ikeda H, Ishikawa J, Hanamoto A, Shinose M, Kikuchi H, Shiba T, Sakaki Y, Hattori M, Omura S (2003) Complete Genome Sequence and Comparative Analysis of the Industrial Microorganism Streptomyces avermitilis. Nat Biotechnol 21 526... [Pg.233]

Ikeda H, et al. Complete genome sequence and comparative analysis of the industrial microorganism Streptomyces avermitilis. Nat. Biotechnol. 2003 21 526-531. [Pg.1205]

Wasenius, V. M., Jekunen, A., Monni, O., Joensuu, H., Aebi, S., Howell, S. B. and Knuutila, S. (1997) Comparative genomic hybridization analysis of chromosomal changes occurring during development of acquired resistance to cisplatin in human ovarian carcinoma cells. Genes Chromosomes Cancer 18, 286-291. [Pg.233]

Sun YV, Boverhof DR, Burgoon LD, Fielden MR, Zacharewski TR. Comparative analysis of dioxin response elements in human, mouse and rat genomic sequences. Nucleic Acids Res 2004 32 4512-23. [Pg.94]


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See also in sourсe #XX -- [ Pg.13 ]




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