Structural Genomics
Human Genome Project (HGP)
Functional Genomics
Comparative Genomics
100

Genetic Map

Based on recombination frequency

100

Launched???

1990

100

Focus

Study of gene products (mRNA, proteins)

100

Purpose

Compare genomes across species to understand evolution and gene function

200

Cytological Map

Chromosome apearance

200

Goal

Sequence all 3 BILLION bases by 2005

200

Techniques

Microarrays: Assess gene expression across the genome

GFP fusions: Visualize protein localization (also YFP,CFP,RFP)

200

Key Concepts

Homologs: Common ancestry

Paralogs: Same species, Gene duplication

Orthologs: Different Species, Same Function

300

Physical Map

DNA sequence overlap via restriction analysis

300

Key Playaaassss

COLLINS: Clone-by-Clone sequencing (HGP)

VENTER: Whole-Genome shotgun method (Celera)

300

Notes

mRNA doesn't fully reflect protein activity

300

Bioinformatics

Analyzes sequence data

Finds conserved exons, amino acids, and protein functions

400

RFLPs

(Restriction Fragment-Length Polymorphisms)

SNPs change DNA fragment lengths after enzyme digestion.

Useful as co-dominant genetic markers.

400

Results Published

Nature (HGP) - Feb 15, 2001

Science (Celera) - Feb 16, 2001

400

Notes part 2

Some functions inferred from protein structure similarity

500

VNTRs

(Variable Number Tandem Repeats)

Short sequences repeated in tandom

Used in genetic fingerprinting

500

Key Discoveries

~30,000-35,000 genes (less than expected)

BONUS how many where expected (__-__ expected)

Exons: 1.1% | Introns: 24% |Intergenic DNA:~75%

ENCODE project followed to study regulatory sequences

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