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2006-04-15 00:00
Figure 4.6 Comparison of Northern blots with DNA microarray
2006-04-15 00:00
Figure 4.5 Red-green color scale for changes in transcriptio
2006-04-15 00:00
Figure 4.4 Measuring fluorescence on a DNA chip
2006-04-15 00:00
Figure 4.3 Results from a single DNA chip
2006-04-15 00:00
Figure 4.2 Production of cDNA probes for a yeast DNA chip
2006-04-15 00:00
Figure 4.1 DNA microarray
2006-04-15 00:00
Figure 3.14Continuum for the utility of a particular genetic
2006-04-15 00:00
Figure 3.13 Evolution of total catabolic potential during 20
2006-04-15 00:00
Figure 3.12Changes in fitness for E. coli during an evolutio
2006-04-15 00:00
Figure 3.11 Comparison of fitness between food-restricted l
2006-04-15 00:00
Figure 3.10 Relative fitness of long-lived worms
2006-04-15 00:00
Figure 3.9 Polymorphic drug metabolizing enzymes
2006-04-15 00:00
Figure 3.8 Genotype and phenotype interaction for drug effic
2006-04-15 00:00
Figure 3.7 Prevalence of a trait in two populations (P1 and
2006-04-15 00:00
Figure 3.6 Comparison of SNP data for two populations
2006-04-15 00:00
FIgure 3.5 Diatom population simulations
2006-04-15 00:00
Figure 3.4 Growth rates of genetically distinct isolates
2006-04-15 00:00
Figure 3.3 Electropherograms of microsatellite alleles from
2006-04-15 00:00
Figure 3.2 Microsatellite Dbr4
2006-04-15 00:00
Figure 3.1 Diatom study organism
2006-04-15 00:00
Figure 2.34 A time course assay to measure the effectiveness
2006-04-15 00:00
Figure 2.33 The minimum EGS
2006-04-15 00:00
Figure 2.32 Two-dimensional representations of tRNA-like EGS
2006-04-15 00:00
Figure 2.31 Structures and effectiveness of new class of an
2006-04-15 00:00
Figure 2.30 Schematics of gram-negative cell membranes and w
2006-04-15 00:00
Figure 2.29 Two vaccine candidates
2006-04-15 00:00
Figure 2.28 Amino acid sequence variation within N. meningit
2006-04-15 00:00
Figure 2.27 Rooted phylogenetic tree of Nile viruses
2006-04-15 00:00
Figure 2.26 Distribution of Nile viruses
2006-04-15 00:00
Figure 2.25 New herpesviruses
2006-04-15 00:00
Figure 2.24 Elephant viruses
2006-04-15 00:00
Figure 2.23 Amplilication of DNA by PCR using various source
2006-04-15 00:00
Figure 2.22 Opened thorax of Egyptian mummy
2006-04-15 00:00
Figure 2.21 Nested PCR for IS6110
2006-04-15 00:00
Figure 2.20Tuberculosis-like lesions on the right lung and h
2006-04-15 00:00
Figure 2.19 Rooted phylogenetic tree using ribosomal DNA seq
2006-04-15 00:00
Figure 2.18Salt crystals from 1,850 feet down an air intake
2006-04-15 00:00
Figure 2.17 Quantitative real-time PCR performed with a 17-s
2006-04-15 00:00
Figure 2.16 The portable Advanced Nucleic Acid Analyzer(ANAA
2006-04-15 00:00
Figure 2.15 Integrated nanoliter DNA analysis
2006-04-15 00:00
Figure 2.14 Schematic of continuous-flow PCR
2006-04-15 00:00
Figure 2.13 Map showing the origin and dispersal of modern h
2006-04-15 00:00
Figure 2.12 Rooted phylogenetic1 Chukchi tree based on the c
2006-04-15 00:00
Figure 2.11 Phylogenetic tree of placental mammals with a ma
2006-04-15 00:00
Figure 2.10 Updated schematic of missing links in evolution
2006-04-15 00:00
Figure 2.9 Distribution of genes by functional category
2006-04-15 00:00
Figure 2.8 Differences between Mycobacterium genomes
2006-04-15 00:00
Figure 2.7 Updated schematic of missing links in evolution o
2006-04-15 00:00
Figure 2.6 Whole-cell view of Buchnera metabolism as deduced
2006-04-15 00:00
Figure 2.6 Whole-cell view of Buchnera metabolism as deduced
2006-04-15 00:00
Figure 2.5 Schematic of missing links in the evolution of th
2006-04-15 00:00
Figure 2.4 Summary of the prokaryotic origins for eukaryotic
2006-04-15 00:00
Figure 2.3 Cytoplasmic genes
2006-04-15 00:00
Figure 2.2 Mitochondrial and energy genes
2006-04-15 00:00
Figure 2.1 Nuclear genes
2006-04-15 00:00
Figure 1.11 Four proposed models to explain imprinted gene s
2006-04-15 00:00
Figure 1.10 Expression of Igf2 alleles
2006-04-15 00:00
Figure 1.9 Gene orientation
2006-04-15 00:00
Figure 1.8 Functional categories of proteins
2006-04-15 00:00
Figure 1.7 Genome-wide comparisons of transcription factor f
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