SlideShare a Scribd company logo
1 of 22
DNA sequencing
• Introduction:
• Knowledge of DNA sequences has become indispensable
for basic biological research, other research branches
utilizing DNA sequencing, and in numerous applied fields
such as diagnostic, biotechnology, forensic biology and
biological systematics. The advent of DNA sequencing has
significantly accelerated biological research and discovery.
The rapid speed of sequencing attained with modern DNA
sequencing technology has been instrumental in the
sequencing of the human genome, in the human genome
project. Related projects, often by scientific collaboration
across continents, have generated the complete DNA
sequences of many animal, plant, and microbial genomes.
• DNA sequencing includes several methods
and technologies that are used for determining
the order of the nucleotide bases—adenine,
guanine, cytosine, and thymine—in a molecule
of DNA.
Two similar methods used for determining the order of the nucleotide
sequences:
1. Maxam and Gilbert method
2. Sanger method
 They depend on the production of a mixture of oligonucleotides labeled
either radioactively or fluorescing, with one common end and differing in
length by a single nucleotide at the other end
 This mixture of oligonucleotides is separated by high resolution
electrophoresis on polyacrilamide gels and the position of the bands
determined
The Maxam-Gilbert
Technique
• Principle - Chemical Degradation
of Purines
– Purines (A, G) damaged by
dimethylsulfate
– Methylation of base
– Heat releases base
– Alkali cleaves G
– Dilute acid cleave A>G
Maxam-Gilbert
Technique
• Principle
Chemical Degradation
of Pyrimidines
– Pyrimidines (C, T) are
damaged by hydrazine
– Piperidine cleaves the
backbone
– 2 M NaCl inhibits the
reaction with T
Maxam and Gilbert Method
Chemical degradation of purified fragments (chemical degradation)
The single stranded DNA fragment to be sequenced is end-labeled by
treatment with alkaline phosphatase to remove the 5’phosphate
It is then followed by reaction with P-labeled ATP in the presence of
polynucleotide kinase, which attaches P labeled to the 5’terminal
The labeled DNA fragment is then divided into four aliquots, each of which is
treated with a reagent which modifies a specific base
1. Aliquot A + dimethyl sulphate, which methylates guanine residue
2. Aliquot B + formic acid, which modifies adenine and guanine residues
3. Aliquot C + Hydrazine, which modifies thymine + cytosine residues
4. Aliquot D + Hydrazine + 5 mol/l NaCl, which makes the reaction specific for cytosine
The four are incubated with piperidine which cleaves the sugar phosphate
backbone of DNA next to the residue that has been modified
Maxam-Gilbert
sequencing - modifications
• Chain-termination methods (Sanger method)
• The key principle of the Sanger method was the use of
dideoxynucleotide triphosphates (ddNTPs) as DNA
chain terminators.
• The classical chain-termination method requires
1- single-stranded DNA template
2- DNA primer
3- DNA polymerase
4- normal deoxynucleotidephosphates (dNTPs)
5-modified nucleotides (dideoxyNTPs) that terminate
DNA strand elongation.
These ddNTPs will also be radioactively or fluorescently
labeled for detection in automated sequencing
machines.
In a synthesis reaction, if a dideoxynucleotide is
added instead of the normal deoxynucleotide,
the synthesis stops at that point because the
3’OH necessary for the addition of the next
nucleotide is absent.
•In the dideoxy method of sequencing, the template DNA that is
to be sequenced is mixed with a primer complementary to the
template DNA and the four normal dNTPs, one of which is
radioactively labeled for subsequent visualization purposes.
•This mixture is then splint into four different tubes that are
labeled A, C, G, and T. Each tube is then “spiked” with a
different ddNTP (ddATP for tube A, ddCTP for tube C, ddGTT
for tube G, or ddTTP for tube T).
•DNA polymerase is added and using the DNA template and its’
complementary primer, the synthesis of new strands of DNA
complementary to the template begins.
•Occasionally a dideoxynucleotide is added instead of the normal
deoxynucleotide and synthesis of that strand is terminated at that
point.
•In the tube containing ddATP, some percentage of newly
synthesized molecules will get a ddATP in each place that there is
a T in the template DNA.
•The result is a set of new DNA molecules in tube A, each of
which ends in an A.
•A similar type of reaction occurs in the three other tubes to result
in molecules that end in C, G, and T in tubes C, G, and T
respectively.
•After the synthesis reactions are complete, the products of the
four different tubes are loaded onto four adjacent lane of a
polyacrylamide gel and the different fragments are separated by
size.
•The sequencing gel is able to resolve fragments that differ in size
from each other by only one base.
•After electrophoresis to separate the fragments by size,
the fragments are visualized to exposing the gel to
photographic film (Remember that one nucleotide was
radioactively labeled).
•All fragments in lane A will end in an A, fragments in
lane C will all end in a C, fragments in lane G will all
end in a G, and fragments in lane T will all end in a T.
•The sequence of the DNA is read from the gel by
starting at the bottom and reading upward.
Dideoxy Chain Termination
DNA sequencing: the Sanger method
Four separate polymerization
reactions are performed
DNA sequencing: the Sanger (dideoxy)
method
Dye-terminator sequencing
–Automated DNA sequencing – in automated DNA sequencing a
radioactive deoxynucleotide is not used and all four dideoxy
reactions are done in a single tube.
– This is possible because each ddNTPs is labeled with a different
flourescent dye.
–Therefore the dye present in each synthesized fragment
corresponds to the dye attached to the dideoxynucleotide that
was added to terminate the synthesis of that particular
fragment.
–The contents of the single tube reaction are loaded onto a
single lane of a gel and electrophoresis is done.
– A flourimeter and computer are hooked up to the
gel and they detect and record the dye attached
to the fragments as they come off the gel.
– The sequence is determined by the order of the
dyes coming off the gel.
Semi-Automated Sequencing

•thermal cycler
•fluorescent ddNTPs
•unique spectra
•measure intensity of
DNA products on gel
Automated DNA sequencing
DNA Sequencing
Chromatogram file
Automated DNA Sequencing with Fluorescent Dyes
Each different ddNTP is coupled to a different colored fluorescent dye
ddTTP is red; ddGTP is black etc.

More Related Content

What's hot

DNA SEQUENCING METHOD
DNA SEQUENCING METHODDNA SEQUENCING METHOD
DNA SEQUENCING METHOD
Musa Khan
 
Lectut btn-202-ppt-l26. polymerase chain reaction for dna amplification
Lectut btn-202-ppt-l26. polymerase chain reaction for dna amplificationLectut btn-202-ppt-l26. polymerase chain reaction for dna amplification
Lectut btn-202-ppt-l26. polymerase chain reaction for dna amplification
Rishabh Jain
 

What's hot (20)

Dna sequencing
Dna sequencingDna sequencing
Dna sequencing
 
Lecture on DNA sequencing
Lecture on DNA sequencingLecture on DNA sequencing
Lecture on DNA sequencing
 
DNA sequencing
DNA sequencingDNA sequencing
DNA sequencing
 
DNA Sequencing
DNA SequencingDNA Sequencing
DNA Sequencing
 
DNA SEQUENCING METHOD
DNA SEQUENCING METHODDNA SEQUENCING METHOD
DNA SEQUENCING METHOD
 
Sanger & maxam gilbert sequencing @ujjwalsirohi
Sanger & maxam gilbert sequencing @ujjwalsirohiSanger & maxam gilbert sequencing @ujjwalsirohi
Sanger & maxam gilbert sequencing @ujjwalsirohi
 
Sanger sequencing
Sanger sequencingSanger sequencing
Sanger sequencing
 
GENE SEQUENCING
GENE SEQUENCINGGENE SEQUENCING
GENE SEQUENCING
 
SNP Detection Methods and applications
SNP Detection Methods and applications SNP Detection Methods and applications
SNP Detection Methods and applications
 
Pcr and primer designing
Pcr and primer designingPcr and primer designing
Pcr and primer designing
 
Sanger sequencing (DNA sequencing by ENZYMATIC METHOD)
Sanger sequencing (DNA sequencing by ENZYMATIC METHOD)Sanger sequencing (DNA sequencing by ENZYMATIC METHOD)
Sanger sequencing (DNA sequencing by ENZYMATIC METHOD)
 
Maxam–Gilbert sequencing
Maxam–Gilbert sequencingMaxam–Gilbert sequencing
Maxam–Gilbert sequencing
 
Dna sequencing ppt
Dna sequencing pptDna sequencing ppt
Dna sequencing ppt
 
PacBio SMRT - THIRD GENERATION SEQUENCING TECHNIQUE
PacBio SMRT - THIRD GENERATION SEQUENCING TECHNIQUEPacBio SMRT - THIRD GENERATION SEQUENCING TECHNIQUE
PacBio SMRT - THIRD GENERATION SEQUENCING TECHNIQUE
 
Next generation sequencing
Next generation sequencingNext generation sequencing
Next generation sequencing
 
Ion torrent sequencing
Ion torrent sequencingIon torrent sequencing
Ion torrent sequencing
 
Single nucleotide polymorphism, (SNP)
Single nucleotide polymorphism, (SNP)Single nucleotide polymorphism, (SNP)
Single nucleotide polymorphism, (SNP)
 
Real time PCR
Real time PCRReal time PCR
Real time PCR
 
Dna Sequencing
Dna SequencingDna Sequencing
Dna Sequencing
 
Lectut btn-202-ppt-l26. polymerase chain reaction for dna amplification
Lectut btn-202-ppt-l26. polymerase chain reaction for dna amplificationLectut btn-202-ppt-l26. polymerase chain reaction for dna amplification
Lectut btn-202-ppt-l26. polymerase chain reaction for dna amplification
 

Viewers also liked

Different methods of gene sequencing durgesh sirohi
Different methods of  gene sequencing   durgesh sirohiDifferent methods of  gene sequencing   durgesh sirohi
Different methods of gene sequencing durgesh sirohi
D. Sirohi
 
Biotransformation of steroids
Biotransformation of steroidsBiotransformation of steroids
Biotransformation of steroids
sudha rajput
 
Dna sequencing powerpoint
Dna sequencing powerpointDna sequencing powerpoint
Dna sequencing powerpoint
14cummke
 

Viewers also liked (20)

Dna sequencing
Dna    sequencingDna    sequencing
Dna sequencing
 
Dna sequencing
Dna sequencingDna sequencing
Dna sequencing
 
Sequencing: The Next Generation
Sequencing: The Next GenerationSequencing: The Next Generation
Sequencing: The Next Generation
 
DNA sequencing
DNA sequencingDNA sequencing
DNA sequencing
 
Dna sequencing techniques
Dna sequencing techniquesDna sequencing techniques
Dna sequencing techniques
 
DNA sequencing methods
DNA sequencing methodsDNA sequencing methods
DNA sequencing methods
 
Dna sequencing methods
Dna sequencing methods Dna sequencing methods
Dna sequencing methods
 
DNA sequencing
DNA sequencingDNA sequencing
DNA sequencing
 
Dna sequencing by Dideoxy method
Dna sequencing by Dideoxy methodDna sequencing by Dideoxy method
Dna sequencing by Dideoxy method
 
Microbial production of solvents
Microbial production of solventsMicrobial production of solvents
Microbial production of solvents
 
Dna sequencing
Dna sequencingDna sequencing
Dna sequencing
 
Sanger sequencing
Sanger sequencing Sanger sequencing
Sanger sequencing
 
DNA sequencing by OLAGBAYE B.ABEL
 DNA sequencing by OLAGBAYE B.ABEL DNA sequencing by OLAGBAYE B.ABEL
DNA sequencing by OLAGBAYE B.ABEL
 
Sanger sequencing
Sanger sequencingSanger sequencing
Sanger sequencing
 
Different methods of gene sequencing durgesh sirohi
Different methods of  gene sequencing   durgesh sirohiDifferent methods of  gene sequencing   durgesh sirohi
Different methods of gene sequencing durgesh sirohi
 
DNA sequencing
DNA sequencingDNA sequencing
DNA sequencing
 
Dna sequencing
Dna sequencingDna sequencing
Dna sequencing
 
Biotransformation of steroids
Biotransformation of steroidsBiotransformation of steroids
Biotransformation of steroids
 
Dna sequencing powerpoint
Dna sequencing powerpointDna sequencing powerpoint
Dna sequencing powerpoint
 
Illumina Sequencing
Illumina SequencingIllumina Sequencing
Illumina Sequencing
 

Similar to Lec 7 dna sequencing

Gene sequencing steps involved, methods used and applications pptx
Gene sequencing steps involved, methods used and applications pptxGene sequencing steps involved, methods used and applications pptx
Gene sequencing steps involved, methods used and applications pptx
TanveerAhmadRather
 

Similar to Lec 7 dna sequencing (20)

DNA Sequencing.pdf
DNA Sequencing.pdfDNA Sequencing.pdf
DNA Sequencing.pdf
 
Dna sequencing
Dna sequencingDna sequencing
Dna sequencing
 
dnasequencing .pptx
dnasequencing .pptxdnasequencing .pptx
dnasequencing .pptx
 
Dna sequencing methods
Dna sequencing methodsDna sequencing methods
Dna sequencing methods
 
Dna sequencing
Dna sequencingDna sequencing
Dna sequencing
 
GENE ISOLATION AND SEQUENCING.pdf
GENE ISOLATION AND SEQUENCING.pdfGENE ISOLATION AND SEQUENCING.pdf
GENE ISOLATION AND SEQUENCING.pdf
 
Dna sequencing
Dna sequencingDna sequencing
Dna sequencing
 
Gene sequencing steps involved, methods used and applications pptx
Gene sequencing steps involved, methods used and applications pptxGene sequencing steps involved, methods used and applications pptx
Gene sequencing steps involved, methods used and applications pptx
 
Gene sequencing methods
Gene sequencing methodsGene sequencing methods
Gene sequencing methods
 
Dna sequencing
Dna sequencingDna sequencing
Dna sequencing
 
DNA sequencing
DNA sequencingDNA sequencing
DNA sequencing
 
DND sequencing
DND sequencingDND sequencing
DND sequencing
 
Dna synthesis & sequencing
Dna synthesis & sequencingDna synthesis & sequencing
Dna synthesis & sequencing
 
Sanger sequencing method of DNA
Sanger sequencing method of DNA Sanger sequencing method of DNA
Sanger sequencing method of DNA
 
DNA Sequencing- Sanger's Method
DNA Sequencing- Sanger's MethodDNA Sequencing- Sanger's Method
DNA Sequencing- Sanger's Method
 
Gene Sequencing by muskan singhal.pdf
Gene Sequencing by muskan singhal.pdfGene Sequencing by muskan singhal.pdf
Gene Sequencing by muskan singhal.pdf
 
DNA sequencing.pptx
DNA sequencing.pptxDNA sequencing.pptx
DNA sequencing.pptx
 
Dna sequencing.
Dna sequencing.Dna sequencing.
Dna sequencing.
 
Presentation on dna sequencing
Presentation on dna sequencing Presentation on dna sequencing
Presentation on dna sequencing
 
DNA SEQUENCE ANALYSIS.pdf
DNA SEQUENCE ANALYSIS.pdfDNA SEQUENCE ANALYSIS.pdf
DNA SEQUENCE ANALYSIS.pdf
 

More from Hama Nabaz

Plant ecology
Plant ecology Plant ecology
Plant ecology
Hama Nabaz
 
Summer training in hospital lab
Summer training in hospital labSummer training in hospital lab
Summer training in hospital lab
Hama Nabaz
 
Lec 1 introduction to molecular biology
Lec  1  introduction to molecular biologyLec  1  introduction to molecular biology
Lec 1 introduction to molecular biology
Hama Nabaz
 
Dna recombinant technology
Dna recombinant technologyDna recombinant technology
Dna recombinant technology
Hama Nabaz
 
Water microbiology
Water microbiologyWater microbiology
Water microbiology
Hama Nabaz
 
Lab 12 (yeasts and erysiphales)
Lab 12 (yeasts and erysiphales)Lab 12 (yeasts and erysiphales)
Lab 12 (yeasts and erysiphales)
Hama Nabaz
 
Lab.11 methods for estimating denitrification process
Lab.11 methods for estimating denitrification processLab.11 methods for estimating denitrification process
Lab.11 methods for estimating denitrification process
Hama Nabaz
 
Lab.10 methods for estimating nitrification process
Lab.10 methods for estimating nitrification processLab.10 methods for estimating nitrification process
Lab.10 methods for estimating nitrification process
Hama Nabaz
 
Lab.8 isolation of nitrogen fixer bacteria
Lab.8 isolation of nitrogen fixer bacteriaLab.8 isolation of nitrogen fixer bacteria
Lab.8 isolation of nitrogen fixer bacteria
Hama Nabaz
 
Lab.7 determination of different organic matter
Lab.7 determination of different organic matterLab.7 determination of different organic matter
Lab.7 determination of different organic matter
Hama Nabaz
 
Lab 6 isolation of antibiotic producer from soil
Lab 6 isolation of antibiotic producer from soilLab 6 isolation of antibiotic producer from soil
Lab 6 isolation of antibiotic producer from soil
Hama Nabaz
 
Lab09 entomology
Lab09 entomologyLab09 entomology
Lab09 entomology
Hama Nabaz
 
Insect classification lab15
Insect classification lab15Insect classification lab15
Insect classification lab15
Hama Nabaz
 
Insect classification lab16
Insect classification lab16Insect classification lab16
Insect classification lab16
Hama Nabaz
 
Insect classification lab14
Insect classification lab14Insect classification lab14
Insect classification lab14
Hama Nabaz
 
Lab13 entomology
Lab13 entomologyLab13 entomology
Lab13 entomology
Hama Nabaz
 
Lab11 entomology
Lab11 entomologyLab11 entomology
Lab11 entomology
Hama Nabaz
 
Lab10 entomology
Lab10 entomologyLab10 entomology
Lab10 entomology
Hama Nabaz
 

More from Hama Nabaz (20)

Plant ecology
Plant ecology Plant ecology
Plant ecology
 
Summer training in hospital lab
Summer training in hospital labSummer training in hospital lab
Summer training in hospital lab
 
Lec 1 introduction to molecular biology
Lec  1  introduction to molecular biologyLec  1  introduction to molecular biology
Lec 1 introduction to molecular biology
 
Dna recombinant technology
Dna recombinant technologyDna recombinant technology
Dna recombinant technology
 
Lab soil
Lab soilLab soil
Lab soil
 
Water microbiology
Water microbiologyWater microbiology
Water microbiology
 
Lab 12 (yeasts and erysiphales)
Lab 12 (yeasts and erysiphales)Lab 12 (yeasts and erysiphales)
Lab 12 (yeasts and erysiphales)
 
Lab.11 methods for estimating denitrification process
Lab.11 methods for estimating denitrification processLab.11 methods for estimating denitrification process
Lab.11 methods for estimating denitrification process
 
Lab.10 methods for estimating nitrification process
Lab.10 methods for estimating nitrification processLab.10 methods for estimating nitrification process
Lab.10 methods for estimating nitrification process
 
Lab9 me~1
Lab9 me~1Lab9 me~1
Lab9 me~1
 
Lab.8 isolation of nitrogen fixer bacteria
Lab.8 isolation of nitrogen fixer bacteriaLab.8 isolation of nitrogen fixer bacteria
Lab.8 isolation of nitrogen fixer bacteria
 
Lab.7 determination of different organic matter
Lab.7 determination of different organic matterLab.7 determination of different organic matter
Lab.7 determination of different organic matter
 
Lab 6 isolation of antibiotic producer from soil
Lab 6 isolation of antibiotic producer from soilLab 6 isolation of antibiotic producer from soil
Lab 6 isolation of antibiotic producer from soil
 
Lab09 entomology
Lab09 entomologyLab09 entomology
Lab09 entomology
 
Insect classification lab15
Insect classification lab15Insect classification lab15
Insect classification lab15
 
Insect classification lab16
Insect classification lab16Insect classification lab16
Insect classification lab16
 
Insect classification lab14
Insect classification lab14Insect classification lab14
Insect classification lab14
 
Lab13 entomology
Lab13 entomologyLab13 entomology
Lab13 entomology
 
Lab11 entomology
Lab11 entomologyLab11 entomology
Lab11 entomology
 
Lab10 entomology
Lab10 entomologyLab10 entomology
Lab10 entomology
 

Recently uploaded

Cloud Frontiers: A Deep Dive into Serverless Spatial Data and FME
Cloud Frontiers:  A Deep Dive into Serverless Spatial Data and FMECloud Frontiers:  A Deep Dive into Serverless Spatial Data and FME
Cloud Frontiers: A Deep Dive into Serverless Spatial Data and FME
Safe Software
 
+971581248768>> SAFE AND ORIGINAL ABORTION PILLS FOR SALE IN DUBAI AND ABUDHA...
+971581248768>> SAFE AND ORIGINAL ABORTION PILLS FOR SALE IN DUBAI AND ABUDHA...+971581248768>> SAFE AND ORIGINAL ABORTION PILLS FOR SALE IN DUBAI AND ABUDHA...
+971581248768>> SAFE AND ORIGINAL ABORTION PILLS FOR SALE IN DUBAI AND ABUDHA...
?#DUbAI#??##{{(☎️+971_581248768%)**%*]'#abortion pills for sale in dubai@
 
Cloud Frontiers: A Deep Dive into Serverless Spatial Data and FME
Cloud Frontiers:  A Deep Dive into Serverless Spatial Data and FMECloud Frontiers:  A Deep Dive into Serverless Spatial Data and FME
Cloud Frontiers: A Deep Dive into Serverless Spatial Data and FME
Safe Software
 
Architecting Cloud Native Applications
Architecting Cloud Native ApplicationsArchitecting Cloud Native Applications
Architecting Cloud Native Applications
WSO2
 

Recently uploaded (20)

Biography Of Angeliki Cooney | Senior Vice President Life Sciences | Albany, ...
Biography Of Angeliki Cooney | Senior Vice President Life Sciences | Albany, ...Biography Of Angeliki Cooney | Senior Vice President Life Sciences | Albany, ...
Biography Of Angeliki Cooney | Senior Vice President Life Sciences | Albany, ...
 
ICT role in 21st century education and its challenges
ICT role in 21st century education and its challengesICT role in 21st century education and its challenges
ICT role in 21st century education and its challenges
 
MINDCTI Revenue Release Quarter One 2024
MINDCTI Revenue Release Quarter One 2024MINDCTI Revenue Release Quarter One 2024
MINDCTI Revenue Release Quarter One 2024
 
Cloud Frontiers: A Deep Dive into Serverless Spatial Data and FME
Cloud Frontiers:  A Deep Dive into Serverless Spatial Data and FMECloud Frontiers:  A Deep Dive into Serverless Spatial Data and FME
Cloud Frontiers: A Deep Dive into Serverless Spatial Data and FME
 
Apidays New York 2024 - The Good, the Bad and the Governed by David O'Neill, ...
Apidays New York 2024 - The Good, the Bad and the Governed by David O'Neill, ...Apidays New York 2024 - The Good, the Bad and the Governed by David O'Neill, ...
Apidays New York 2024 - The Good, the Bad and the Governed by David O'Neill, ...
 
DBX First Quarter 2024 Investor Presentation
DBX First Quarter 2024 Investor PresentationDBX First Quarter 2024 Investor Presentation
DBX First Quarter 2024 Investor Presentation
 
How to Troubleshoot Apps for the Modern Connected Worker
How to Troubleshoot Apps for the Modern Connected WorkerHow to Troubleshoot Apps for the Modern Connected Worker
How to Troubleshoot Apps for the Modern Connected Worker
 
+971581248768>> SAFE AND ORIGINAL ABORTION PILLS FOR SALE IN DUBAI AND ABUDHA...
+971581248768>> SAFE AND ORIGINAL ABORTION PILLS FOR SALE IN DUBAI AND ABUDHA...+971581248768>> SAFE AND ORIGINAL ABORTION PILLS FOR SALE IN DUBAI AND ABUDHA...
+971581248768>> SAFE AND ORIGINAL ABORTION PILLS FOR SALE IN DUBAI AND ABUDHA...
 
DEV meet-up UiPath Document Understanding May 7 2024 Amsterdam
DEV meet-up UiPath Document Understanding May 7 2024 AmsterdamDEV meet-up UiPath Document Understanding May 7 2024 Amsterdam
DEV meet-up UiPath Document Understanding May 7 2024 Amsterdam
 
2024: Domino Containers - The Next Step. News from the Domino Container commu...
2024: Domino Containers - The Next Step. News from the Domino Container commu...2024: Domino Containers - The Next Step. News from the Domino Container commu...
2024: Domino Containers - The Next Step. News from the Domino Container commu...
 
Corporate and higher education May webinar.pptx
Corporate and higher education May webinar.pptxCorporate and higher education May webinar.pptx
Corporate and higher education May webinar.pptx
 
Artificial Intelligence Chap.5 : Uncertainty
Artificial Intelligence Chap.5 : UncertaintyArtificial Intelligence Chap.5 : Uncertainty
Artificial Intelligence Chap.5 : Uncertainty
 
Apidays New York 2024 - The value of a flexible API Management solution for O...
Apidays New York 2024 - The value of a flexible API Management solution for O...Apidays New York 2024 - The value of a flexible API Management solution for O...
Apidays New York 2024 - The value of a flexible API Management solution for O...
 
[BuildWithAI] Introduction to Gemini.pdf
[BuildWithAI] Introduction to Gemini.pdf[BuildWithAI] Introduction to Gemini.pdf
[BuildWithAI] Introduction to Gemini.pdf
 
Polkadot JAM Slides - Token2049 - By Dr. Gavin Wood
Polkadot JAM Slides - Token2049 - By Dr. Gavin WoodPolkadot JAM Slides - Token2049 - By Dr. Gavin Wood
Polkadot JAM Slides - Token2049 - By Dr. Gavin Wood
 
Cloud Frontiers: A Deep Dive into Serverless Spatial Data and FME
Cloud Frontiers:  A Deep Dive into Serverless Spatial Data and FMECloud Frontiers:  A Deep Dive into Serverless Spatial Data and FME
Cloud Frontiers: A Deep Dive into Serverless Spatial Data and FME
 
Apidays New York 2024 - Scaling API-first by Ian Reasor and Radu Cotescu, Adobe
Apidays New York 2024 - Scaling API-first by Ian Reasor and Radu Cotescu, AdobeApidays New York 2024 - Scaling API-first by Ian Reasor and Radu Cotescu, Adobe
Apidays New York 2024 - Scaling API-first by Ian Reasor and Radu Cotescu, Adobe
 
Repurposing LNG terminals for Hydrogen Ammonia: Feasibility and Cost Saving
Repurposing LNG terminals for Hydrogen Ammonia: Feasibility and Cost SavingRepurposing LNG terminals for Hydrogen Ammonia: Feasibility and Cost Saving
Repurposing LNG terminals for Hydrogen Ammonia: Feasibility and Cost Saving
 
Architecting Cloud Native Applications
Architecting Cloud Native ApplicationsArchitecting Cloud Native Applications
Architecting Cloud Native Applications
 
AWS Community Day CPH - Three problems of Terraform
AWS Community Day CPH - Three problems of TerraformAWS Community Day CPH - Three problems of Terraform
AWS Community Day CPH - Three problems of Terraform
 

Lec 7 dna sequencing

  • 1. DNA sequencing • Introduction: • Knowledge of DNA sequences has become indispensable for basic biological research, other research branches utilizing DNA sequencing, and in numerous applied fields such as diagnostic, biotechnology, forensic biology and biological systematics. The advent of DNA sequencing has significantly accelerated biological research and discovery. The rapid speed of sequencing attained with modern DNA sequencing technology has been instrumental in the sequencing of the human genome, in the human genome project. Related projects, often by scientific collaboration across continents, have generated the complete DNA sequences of many animal, plant, and microbial genomes.
  • 2. • DNA sequencing includes several methods and technologies that are used for determining the order of the nucleotide bases—adenine, guanine, cytosine, and thymine—in a molecule of DNA.
  • 3. Two similar methods used for determining the order of the nucleotide sequences: 1. Maxam and Gilbert method 2. Sanger method  They depend on the production of a mixture of oligonucleotides labeled either radioactively or fluorescing, with one common end and differing in length by a single nucleotide at the other end  This mixture of oligonucleotides is separated by high resolution electrophoresis on polyacrilamide gels and the position of the bands determined
  • 4. The Maxam-Gilbert Technique • Principle - Chemical Degradation of Purines – Purines (A, G) damaged by dimethylsulfate – Methylation of base – Heat releases base – Alkali cleaves G – Dilute acid cleave A>G
  • 5. Maxam-Gilbert Technique • Principle Chemical Degradation of Pyrimidines – Pyrimidines (C, T) are damaged by hydrazine – Piperidine cleaves the backbone – 2 M NaCl inhibits the reaction with T
  • 6. Maxam and Gilbert Method Chemical degradation of purified fragments (chemical degradation) The single stranded DNA fragment to be sequenced is end-labeled by treatment with alkaline phosphatase to remove the 5’phosphate It is then followed by reaction with P-labeled ATP in the presence of polynucleotide kinase, which attaches P labeled to the 5’terminal The labeled DNA fragment is then divided into four aliquots, each of which is treated with a reagent which modifies a specific base 1. Aliquot A + dimethyl sulphate, which methylates guanine residue 2. Aliquot B + formic acid, which modifies adenine and guanine residues 3. Aliquot C + Hydrazine, which modifies thymine + cytosine residues 4. Aliquot D + Hydrazine + 5 mol/l NaCl, which makes the reaction specific for cytosine The four are incubated with piperidine which cleaves the sugar phosphate backbone of DNA next to the residue that has been modified
  • 8. • Chain-termination methods (Sanger method) • The key principle of the Sanger method was the use of dideoxynucleotide triphosphates (ddNTPs) as DNA chain terminators. • The classical chain-termination method requires 1- single-stranded DNA template 2- DNA primer 3- DNA polymerase 4- normal deoxynucleotidephosphates (dNTPs) 5-modified nucleotides (dideoxyNTPs) that terminate DNA strand elongation. These ddNTPs will also be radioactively or fluorescently labeled for detection in automated sequencing machines.
  • 9. In a synthesis reaction, if a dideoxynucleotide is added instead of the normal deoxynucleotide, the synthesis stops at that point because the 3’OH necessary for the addition of the next nucleotide is absent.
  • 10. •In the dideoxy method of sequencing, the template DNA that is to be sequenced is mixed with a primer complementary to the template DNA and the four normal dNTPs, one of which is radioactively labeled for subsequent visualization purposes. •This mixture is then splint into four different tubes that are labeled A, C, G, and T. Each tube is then “spiked” with a different ddNTP (ddATP for tube A, ddCTP for tube C, ddGTT for tube G, or ddTTP for tube T). •DNA polymerase is added and using the DNA template and its’ complementary primer, the synthesis of new strands of DNA complementary to the template begins. •Occasionally a dideoxynucleotide is added instead of the normal deoxynucleotide and synthesis of that strand is terminated at that point.
  • 11. •In the tube containing ddATP, some percentage of newly synthesized molecules will get a ddATP in each place that there is a T in the template DNA. •The result is a set of new DNA molecules in tube A, each of which ends in an A. •A similar type of reaction occurs in the three other tubes to result in molecules that end in C, G, and T in tubes C, G, and T respectively. •After the synthesis reactions are complete, the products of the four different tubes are loaded onto four adjacent lane of a polyacrylamide gel and the different fragments are separated by size. •The sequencing gel is able to resolve fragments that differ in size from each other by only one base.
  • 12. •After electrophoresis to separate the fragments by size, the fragments are visualized to exposing the gel to photographic film (Remember that one nucleotide was radioactively labeled). •All fragments in lane A will end in an A, fragments in lane C will all end in a C, fragments in lane G will all end in a G, and fragments in lane T will all end in a T. •The sequence of the DNA is read from the gel by starting at the bottom and reading upward.
  • 14. DNA sequencing: the Sanger method Four separate polymerization reactions are performed
  • 15. DNA sequencing: the Sanger (dideoxy) method
  • 16.
  • 17. Dye-terminator sequencing –Automated DNA sequencing – in automated DNA sequencing a radioactive deoxynucleotide is not used and all four dideoxy reactions are done in a single tube. – This is possible because each ddNTPs is labeled with a different flourescent dye. –Therefore the dye present in each synthesized fragment corresponds to the dye attached to the dideoxynucleotide that was added to terminate the synthesis of that particular fragment. –The contents of the single tube reaction are loaded onto a single lane of a gel and electrophoresis is done.
  • 18. – A flourimeter and computer are hooked up to the gel and they detect and record the dye attached to the fragments as they come off the gel. – The sequence is determined by the order of the dyes coming off the gel.
  • 19. Semi-Automated Sequencing  •thermal cycler •fluorescent ddNTPs •unique spectra •measure intensity of DNA products on gel
  • 22. Automated DNA Sequencing with Fluorescent Dyes Each different ddNTP is coupled to a different colored fluorescent dye ddTTP is red; ddGTP is black etc.