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SNP Bioinformatics
SNPs
[email protected]
miércoles 15 de julio de 2009
The USC Genomic Medicine Group
SNPs
CeGen Santiago node / Genomic Medicine!
GMX!
Forensic Genetics
Forensic Genetics!
SNPfor ID
miércoles 15 de julio de 2009
FPGMX!
The USC Genomic Medicine Group
SNPs
CeGen Santiago node / Genomic Medicine!
GMX!
Forensic Genetics
Forensic Genetics!
SNPfor ID
miércoles 15 de julio de 2009
FPGMX!
The USC Genomic Medicine Group
SNPs
CeGen Santiago node / Genomic Medicine!
GMX!
Forensic Genetics
Forensic Genetics!
SNPfor ID
miércoles 15 de julio de 2009
FPGMX!
The USC Genomic Medicine Group
SNPs
CeGen Santiago node / Genomic Medicine!
GMX!
Forensic Genetics
Forensic Genetics!
SNPfor ID
miércoles 15 de julio de 2009
FPGMX!
Simple guides to SNP searching
SNPs
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a SNP is a single
nucleotide
polymorphism
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a SNP is a single
nucleotide
polymorphism
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a SNP is a single
nucleotide
polymorphism
Single nucleotide poymorphism or simple
nucleotide poymorphism ?!
simple nucleotide polymorphisms!
ATCGGCTAGCTGCTCCGCTGACTCGTCGTCGGGCGTTAC
transitions!
transversions
insertion
deletion!
ATTGACTATCTGATCCGCATGACCGTCAGATGTCGGGCC
.
base substitutions!
!
single nucleotide polymorphisms!
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single base indels
!
small multi-base indels!
H sapiens
ancestral
G
GTAAGTC CCATAGTG
A derived
Pan troglodytes
GTCAGTCGCCATAGTG
Single nucleotide poymorphism or simple
nucleotide poymorphism ?!
simple nucleotide polymorphisms!
ATCGGCTAGCTGCTCCGCTGACTCGTCGTCGGGCGTTAC
transitions!
transversions
insertion
deletion!
ATTGACTATCTGATCCGCATGACCGTCAGATGTCGGGCC
.
base substitutions!
!
single nucleotide polymorphisms!
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single base indels
!
small multi-base indels!
15 million SNPs available
SNPs
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15 million SNPs available
NCBI
SNPs
dbSNP
The SNP consortium!
Celera & AOD!
HapMap!
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SNPs occur regularly
SNPs
3.3 gigabases of genome!
ACAGTCTGAC C GTACTAGTTA
ACAGTCTGAC T GTACTAGTTA!
1.42 million SNPs!
1 SNP / 2,300 bp!
ACAGTCTGAC C GTACTAGTTA
ACAGTCTGAC T GTACTAGTTA!
3 million!
1 SNP / 1,000 bp!
ACAGTCTGAC C GTACTAGTTA
ACAGTCTGAC T GTACTAGTTA!
10 million!
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1 SNP / 330 bp!
SNPs occur regularly
SNPs
3.3 gigabases of genome!
ACAGTCTGAC C GTACTAGTTA
ACAGTCTGAC T GTACTAGTTA!
1.42 million SNPs!
1 SNP / 2,300 bp!
ACAGTCTGAC C GTACTAGTTA
ACAGTCTGAC T GTACTAGTTA!
3 million!
1 SNP / 1,000 bp!
ACAGTCTGAC C GTACTAGTTA
ACAGTCTGAC T GTACTAGTTA!
10 million!
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1 SNP / 330 bp!
SNPs occur regularly
SNPs
3.3 gigabases of genome!
ACAGTCTGAC C GTACTAGTTA
ACAGTCTGAC T GTACTAGTTA!
1.42 million SNPs!
1 SNP / 2,300 bp!
ACAGTCTGAC C GTACTAGTTA
ACAGTCTGAC T GTACTAGTTA!
3 million!
1 SNP / 1,000 bp!
ACAGTCTGAC C GTACTAGTTA
ACAGTCTGAC T GTACTAGTTA!
10 million!
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1 SNP / 330 bp!
SNPs occur regularly
SNPs
3.3 gigabases of genome!
ACAGTCTGAC C GTACTAGTTA
ACAGTCTGAC T GTACTAGTTA!
1.42 million SNPs!
1 SNP / 2,300 bp!
ACAGTCTGAC C GTACTAGTTA
ACAGTCTGAC T GTACTAGTTA!
3 million!
1 SNP / 1,000 bp!
ACAGTCTGAC C GTACTAGTTA
ACAGTCTGAC T GTACTAGTTA!
10 million!
HapMap ENCODE!
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1 SNP / 330 bp!
1 SNP / 279bp!
SNPs are regular and dense making perfect genome markers
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SNPs
SNPs are regular and dense making perfect genome markers
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SNPs
SNP density is
consistent across
the genome but
gene density is
not
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constitutive
heterochromatin
is SNP free!
facultative
heterochromatin
has even SNPs
& uneven genes!
13
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13
21
21
SNP density
‘peaks’ can
signify
functionality
Chr 6 MHC [major
histocompatibility
complex] region
shown where
hyper-variability
infers a flexible
immune response
and recognition
of self vs non-self
6
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SNP density
‘peaks’ can
signify
functionality
Chr 6 MHC [major
histocompatibility
complex] region
shown where
hyper-variability
infers a flexible
immune response
and recognition
of self vs non-self
6
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SNP density
‘peaks’ can
signify
functionality
Chr 6 MHC [major
histocompatibility
complex] region
shown where
hyper-variability
infers a flexible
immune response
and recognition
of self vs non-self
6
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How SNPs
are created
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How SNPs
are created
350000
SNPs by substitution
(chromosome 1)
300000
250000
200000
150000
100000
50000
0
AG
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CT
AC
GT
CG
AT
How SNPs
are created
350000
SNPs by substitution
(chromosome 1)
300000
250000
methylation
200000
150000
thymine!
cytosine!
5-methylcytosine!
100000
50000
0
AG
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CT
AC
GT
CG
AT
How SNPs
are created
350000
SNPs by substitution
(chromosome 1)
300000
250000
methylation
200000
150000
thymine!
cytosine!
5-methylcytosine!
100000
50000
0
AG
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CT
AC
GT
CG
AT
CG
GC
C* G
GC
CT SNP created!
TG
AC
TG
GC
CG
GC
C methylation creates
an unstable base
CG
GC
CG
G C*
AG SNP created!
CG
GT
CA
GT
CG
GC
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SNPs
Types of SNP
SNPs
dbSNP
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Types of SNP
SNPs
gene!
transcription!
pre-mRNA
transcript!
dbSNP
splicing!
functional
mRNA!
translation!
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Types of SNP
SNPs
gene!
transcription!
non-synonymous
synonymous
pre-mRNA
transcript!
dbSNP
splicing!
functional
mRNA!
translation!
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SNPs
ATM: 146,267bp
723 SNPs [1/202bp] 63 exons
MC1R: 2,358bp
54 SNPs [1/44bp] 1 exon
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Types of SNP
promotor SNP
gene!
inter-genic SNP
transcription!
pre-mRNA
transcript!
splicing!
non-synonymous
coding
functional
mRNA!
promotor
splice-site
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!
translation!
!
Eye Colour is dictated by a
promotor in another gene
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SNPs
Eye Colour is dictated by a
promotor in another gene
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SNPs
Eye Colour is dictated by a
promotor in another gene
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SNPs
Eye Colour is dictated by a
promotor in another gene
GG
rs12913832
AG
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AG
AA
SNPs
Eye Colour is dictated by a
promotor in another gene
GG
rs12913832
AG
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AG
AA
SNPs
Types of SNP
!
SNPs
promotor SNP
gene!
inter-genic SNP
transcription!
pre-mRNA
transcript!
splicing!
non-synonymous
coding
functional
mRNA!
promotor
splice-site
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translation!
!
Types of SNP
!
SNPs
promotor SNP
gene!
inter-genic SNP
transcription!
pre-mRNA
transcript!
splicing!
non-synonymous
coding
functional
mRNA!
promotor
splice-site
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translation!
!
Types of SNP
!
SNPs
promotor SNP
gene!
inter-genic SNP
transcription!
pre-mRNA
transcript!
splicing!
non-synonymous
coding
functional
mRNA!
promotor
splice-site
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translation!
!
Types of SNP
!
SNPs
promotor SNP
gene!
inter-genic SNP
transcription!
pre-mRNA
transcript!
splicing!
non-synonymous
coding
functional
mRNA!
Linkage disequilibrium LD
promotor
splice-site
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translation!
!
Recombination in the genome
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SNPs
Recombination in the genome
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SNPs
Recombination in the genome
recombination
in females
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SNPs
Recombination in the genome
recombination
in females
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no recombination
haplotypic loci
SNPs
Recombination in the genome
SNPs
High LD!
Low LD!
recombination
in females
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no recombination
haplotypic loci
LD or haplotype blocks
SNPs
If haplotype diversity is low in each block a few SNPs
can define all the block variability and provide tags for
the presence of a gene variant in linkage
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LD or haplotype blocks
SNPs
If haplotype diversity is low in each block a few SNPs
can define all the block variability and provide tags for
the presence of a gene variant in linkage
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LD or haplotype blocks
SNPs
If haplotype diversity is low in each block a few SNPs
can define all the block variability and provide tags for
the presence of a gene variant in linkage
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LD or haplotype blocks
SNPs
If haplotype diversity is low in each block a few SNPs
can define all the block variability and provide tags for
the presence of a gene variant in linkage
miércoles 15 de julio de 2009
LD or haplotype blocks
SNPs
If haplotype diversity is low in each block a few SNPs
can define all the block variability and provide tags for
the presence of a gene variant in linkage
miércoles 15 de julio de 2009
LD or haplotype blocks
SNPs
If haplotype diversity is low in each block a few SNPs
can define all the block variability and provide tags for
the presence of a gene variant in linkage
miércoles 15 de julio de 2009
LD or haplotype blocks
SNPs
If haplotype diversity is low in each block a few SNPs
can define all the block variability and provide tags for
the presence of a gene variant in linkage
miércoles 15 de julio de 2009
LD or haplotype blocks
SNPs
If haplotype diversity is low in each block a few SNPs
can define all the block variability and provide tags for
the presence of a gene variant in linkage
miércoles 15 de julio de 2009
LD or haplotype blocks
SNPs
If haplotype diversity is low in each block a few SNPs
can define all the block variability and provide tags for
the presence of a gene variant in linkage
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http://www.hapmap.org/downloads/nature02168.pdf!
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http://www.hapmap.org/downloads/nature02168.pdf!
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http://www.hapmap.org/downloads/nature02168.pdf!
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LD block structure and tag SNPs
SNPs
recombination hotspots
SNPs
LD
blocks
genes
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LD block structure and tag SNPs
SNPs
recombination hotspots
SNPs
LD
blocks
genes
tag SNPs
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LD block structure and tag SNPs
SNPs
recombination hotspots
SNPs
LD
blocks
genes
tag SNPs
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LD block structure and tag SNPs
SNPs
recombination hotspots
SNPs
LD
blocks
genes
tag SNPs
non-synonymous
coding
promotor
splice-site
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LD block structure and tag SNPs
SNPs
recombination hotspots
SNPs
LD
blocks
genes
tag SNPs
non-synonymous
coding
promotor
splice-site
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tag SNPs
LD block structure and tag SNPs
SNPs
recombination hotspots
SNPs
LD
blocks
genes
tag SNPs
non-synonymous
coding
promotor
splice-site
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tag SNPs
CNV
(copy number variation)
CNVs: four models of effect
SNPs
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Simple association studies of
genes are now extended to the
whole genome - unbiased approach
Association study designs:
!
SNPs
Affymetrix!
Illumina!
60-100!
Sequenom!
SNPlex!
400-1000 each!
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The Affymetrix WGS system
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SNPs
Hybridization and signal generation
‘soup’ of DNA fragments from sample each with fluorescent tags
if complimentary base in middle is correct
DNA fragment hybridizes with DNA on GeneChip array
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SNPs
Hybridization and signal generation
SNPs
‘soup’ of DNA fragments from sample each with fluorescent tags
650k - 2M SNPs
on a single chip
if complimentary base in middle is correct
DNA fragment hybridizes with DNA on GeneChip array
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Hybridization and signal generation
SNPs
‘soup’ of DNA fragments from sample each with fluorescent tags
650k - 2M SNPs
on a single chip
Illumina or
Affymetrix
if complimentary base in middle is correct
DNA fragment hybridizes with DNA on GeneChip array
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Peaks of association P values then
highlight interesting areas - but
the probabilities are not strong
SNPs
Broad T2 Diabetes WGS
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Whole Genome Scans
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SNPs
Whole Genome Scans
SNPs
650k - 2M SNPs
on a single chip
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Whole Genome Scans
SNPs
650k - 2M SNPs
on a single chip
Illumina or
Affymetrix
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Whole Genome Scans
SNPs
650k - 2M SNPs
on a single chip
Illumina or
Affymetrix
USC: 16 chips in
four days
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Signal variation between
runs is a major problem
SNPs
If DNA is prepared separately
for case and control samples
or in different labs signal
consistency can create false
genotype patterns
Here heterozygote case data
may be clustered with
homozygous A
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Imputing data - practice
unimputed SNP genotypes
imputed SNP genotypes
TCF7L2
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SNPs
Imputation rescues data
rather than creates it
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SNPs
SNPs in forensic analysis
Identification as a supplement to STRs
Ancestry
Phenotyping - pigmentation (SHEP)
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SNPs
SNaPshot is system of choice for
forensic SNP typing
Non-human
pigtails
T
A
C
G
1.! Extension of locus specific
primers with allele specific ddNTPs
2.! Electrophoresis of
labelled fragments
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SNPs
SNP
G - ddNTP
A - ddNTP
T - ddNTP
C - ddNTP
Highly degraded DNA
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SNP casework application 1
Highly degraded DNA
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SNP casework application 1
Highly degraded DNA
•
SNP casework application 1
Fragmented and charred skeleton uncovered by major forest fire in 2006
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Highly degraded DNA
•
SNP casework application 1
Fragmented and charred skeleton uncovered by major forest fire in 2006
All available markers used to identify
remains by matching to a daughter
•
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Highly degraded DNA
•
SNP casework application 1
Fragmented and charred skeleton uncovered by major forest fire in 2006
All available markers used to identify
remains by matching to a daughter
•
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•
STRs
•
mini-STRs
•
mtDNA
•
SNPs
STRs
SNPs
23plex!
6plex!
29plex!
8plex!
34plex!
3plex!
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The CEPH diversity panel
SNPs
377 STRs
34 SNPs
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The CEPH diversity panel
SNPs
377 STRs
34 SNPs
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The CEPH diversity panel
SNPs
377 STRs
34 SNPs
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Afr
123/123
Eur
155/160
Asn
237/237
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Afr
123/123
Eur
155/160
Asn
237/237
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Afr
123/123
Eur
155/160
Asn
237/237
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Afr
123/123
Eur
155/160
Asn
237/237
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Establishing ancestry
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SNP casework application 2
Establishing ancestry
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SNP casework application 2
Establishing ancestry
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SNP casework application 2
Establishing ancestry
SNP casework application 2
TTCCCCTTGGAATTCTNNTTAAAATTCCAACTAACCAAGGCCAGCCGTAATTGGATAACGTTAACCNN
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Establishing ancestry
SNP casework application 2
32 SNPs
TTCCCCTTGGAATTCTNNTTAAAATTCCAACTAACCAAGGCCAGCCGTAATTGGATAACGTTAACCNN
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Establishing ancestry
SNP casework application 2
32 SNPs
TTCCCCTTGGAATTCTNNTTAAAATTCCAACTAACCAAGGCCAGCCGTAATTGGATAACGTTAACCNN
3,137,090,832,719 x more likely EUR than ASN
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Establishing ancestry
SNP casework application 2
32 SNPs
TTCCCCTTGGAATTCTNNTTAAAATTCCAACTAACCAAGGCCAGCCGTAATTGGATAACGTTAACCNN
3,137,090,832,719 x more likely EUR than ASN
18,042,414,120,482,412,544 x more likely EUR than AFR
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Melanocortin 1 receptor
MC1R variant detection is
the only current phenotyping
test in routine use
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Melanocortin 1 receptor
MC1R variant detection is
the only current
phenotyping
8%
test11%
in routine use
5%
miércoles 15 de julio de 2009
Melanocortin 1 receptor
MC1R variant detection is
the only current
phenotyping
8%
test11%
in routine use
5%
miércoles 15 de julio de 2009
Melanocortin 1 receptor
MC1R variant detection is
the only current
phenotyping
8%
test11%
in routine use
60
151 160
5%
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294
Melanocortin 1 receptor
MC1R variant detection is
the only current
phenotyping
8%
test11%
in routine use
60
151 160
5%
0.42
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0.27
294
0.07
Melanocortin 1 receptor
MC1R variant detection is
the only current
phenotyping
8%
test11%
in routine use
60
151 160
5%
0.42
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0.27
294
0.07
Genotype
Red hair
Other hair
wt / wt
0
35
wt / var
4
34
var1 / var2
32
2
var / var
14
0
MC1R SNP typing
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SNP casework application 3
MC1R SNP typing
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SNP casework application 3
MC1R SNP typing
SNP casework application 3
Contract killing in Glasgow of a man in
car park using a high velocity rifle
•
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MC1R SNP typing
SNP casework application 3
Contract killing in Glasgow of a man in
car park using a high velocity rifle
•
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MC1R SNP typing
SNP casework application 3
Contract killing in Glasgow of a man in
car park using a high velocity rifle
•
Ballistic angles indicated a particular
window on 14th floor of tower block
•
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MC1R SNP typing
SNP casework application 3
Contract killing in Glasgow of a man in
car park using a high velocity rifle
•
Ballistic angles indicated a particular
window on 14th floor of tower block
•
Eye witness reports of a red-haired
man hurrying away from tower block
•
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MC1R SNP typing
SNP casework application 3
Contract killing in Glasgow of a man in
car park using a high velocity rifle
•
Ballistic angles indicated a particular
window on 14th floor of tower block
•
Eye witness reports of a red-haired
man hurrying away from tower block
•
Multiple contact trace STR profiles
from 14th floor flat gave a single case of
a compound heterozygote (var1/var2)
MC1R type
•
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MC1R SNP typing
SNP casework application 3
Contract killing in Glasgow of a man in
car park using a high velocity rifle
•
Ballistic angles indicated a particular
window on 14th floor of tower block
•
Eye witness reports of a red-haired
man hurrying away from tower block
•
Multiple contact trace STR profiles
from 14th floor flat gave a single case of
a compound heterozygote (var1/var2)
MC1R type
•
Database hit from STR profile of MC1R
variant led to suspect
•
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SNPs
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SNPs
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SNPs
4
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SNPs
4
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SNPs
4
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SNP Databases
Markers (STRs and SNPs)
Genes
Phenotypes
Populations
miércoles 15 de julio de 2009
SNPs
SNP Databases
Markers (STRs and SNPs)
Genes
Phenotypes
Populations
miércoles 15 de julio de 2009
SNPs
SNPs
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