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TABLE 17 (CONTINUED) 34
DNA Microarrays--. . .(Continued) 35
FIGURE 5 MICROARRAYS IN GENE SYNTHESIS 36
DNA SEQUENCING TECHNOLOGIES 36
DNA Sequencing TECHNOLOGIES (continued) 37
FIGURE 6 SEQUENCING THROUGHPUT TREND, 1977-2008 38
FIGURE 7 DNA SEQUENCING TECHNOLOGIES 39
BIOINFORMATICS TECHNOLOGIES 40
TABLE 18 SYNTHETIC BIOLOGY BIOINFORMATICS TECHNOLOGIES 41
BIOLOGICAL COMPONENTS AND INTEGRATED SYSTEMS TECHNOLOGIES 41
TABLE 19 NUCLEIC ACIDS, GENES, AND GENOMES 41
SYNTHETIC GENES 42
TABLE 20 SYNTHETIC GENES AS MOLECULAR BIOLOGY TOOL 42
Synthetic Genes (Continued) 43
TABLE 21 SYNTHETIC GENES VERSUS PCR CLONING 44
BIOBRICKS/IGEM PARTS 45
TABLE 22 BIOBRICKS/IGEM PARTS 46
FIGURE 8 ROLE OF PROMOTERS AND REPORTERS IN SYNTHETIC BIOLOGY SYSTEMS 47
MINIMAL GENOMES AND CHASSIS ORGANISMS 48
TABLE 23 ATTRIBUTES OF A MINIMAL GENOME 48
Minimal Genomes and . . . (Continued) 49
CASE STUDY: MINIMAL E.COLI GENOME 50
Role of Directed Evolution in Designing Biologic Parts 50
ENABLED TECHNOLOGIES 51
OVERVIEW 51
TABLE 24 ENABLED TECHNOLOGIES: EXISTING AND NEAR-TERM APPLICATIONS 51
Pathway Engineering 52
FIGURE 9 HOW SYNTHETIC BIOLOGY CREATES ENABLED PRODUCTS 52
TABLE 25 METABOLIC ENGINEERING FOR ARTEMISINIC ACID 53
Synthetic Microbial Consortia 54
TABLE 26 APPLICATIONS FOR SYNTHETIC MICROBIAL CONSORTIA 55
BIOFUELS TECHNOLOGIES 56
Biofuels Feedstocks 56
TABLE 27 ENERGY BALANCE OF SELECTED FIRST-GENERATION BIOFUEL FEEDSTOCKS 57
Advanced-Generation Biofuels 57
TABLE 28 FIRST- AND ADVANCED-GENERATION BIOFUELS COMPARED 58
Cellulosic Biomass 59
FIGURE 10 APPROXIMATE COMPOSITION OF CELLULOSIC BIOMASS (%) 59
TABLE 29 SYNTHETIC BIOLOGY
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