ANALYSIS METHODE OF 917 BASE PAIR IN D-LOOP HUMAN MTDNA
Genetic mitochondrial DNA ( mtDNA ) has a high mutation rate. This mutation pattern can be<br /><br /> used for forensic, evolution and genealogy study, particularly the D-loop region, consist of<br /><br /> hypervariable segment 1 (HVS1) and hypervariable segment 2 (HVS2)....
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id-itb.:58302007-09-12T11:21:12ZANALYSIS METHODE OF 917 BASE PAIR IN D-LOOP HUMAN MTDNA RACHMADI, BAMBANG Indonesia Theses INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/5830 Genetic mitochondrial DNA ( mtDNA ) has a high mutation rate. This mutation pattern can be<br /><br /> used for forensic, evolution and genealogy study, particularly the D-loop region, consist of<br /><br /> hypervariable segment 1 (HVS1) and hypervariable segment 2 (HVS2). Research the D-loop<br /><br /> region begin with amplification and sequencing until now is done separately, requiring a longer<br /><br /> time to analysis. Based on that reason, development on the method to analyze this region is<br /><br /> important. In this research, 0.9 kb DNA fragment in Human D-loop mtDNA was amplified with<br /><br /> Polymerase Chain Reaction (PCR). This research begin with lysis to obtain DNA template, then<br /><br /> it was amplified using Polymerase Chain Reaction (PCR) method, followed by sequencing of<br /><br /> the amplified mtDNA using Dideoxy Sanger method to confirm, along with nucleotides analysis<br /><br /> using SeqmanTM version 4.0.0. The result of this research shows 0.9 kb single band on the<br /><br /> agarose gel electrophoresis. Electrophoregraph data shows the 0,9 kb nucleotides sequent is<br /><br /> inside the D-loop region and demonstrated 8 mutations after nucleotide sequence compare with<br /><br /> Cambridge Reference Sequence (CRS). The result of this method, gives amplification on the<br /><br /> region of HVI-HVII could be done in one step reaction, so analysis for D-loop region is more<br /><br /> effective and efficient. text |
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Genetic mitochondrial DNA ( mtDNA ) has a high mutation rate. This mutation pattern can be<br /><br />
used for forensic, evolution and genealogy study, particularly the D-loop region, consist of<br /><br />
hypervariable segment 1 (HVS1) and hypervariable segment 2 (HVS2). Research the D-loop<br /><br />
region begin with amplification and sequencing until now is done separately, requiring a longer<br /><br />
time to analysis. Based on that reason, development on the method to analyze this region is<br /><br />
important. In this research, 0.9 kb DNA fragment in Human D-loop mtDNA was amplified with<br /><br />
Polymerase Chain Reaction (PCR). This research begin with lysis to obtain DNA template, then<br /><br />
it was amplified using Polymerase Chain Reaction (PCR) method, followed by sequencing of<br /><br />
the amplified mtDNA using Dideoxy Sanger method to confirm, along with nucleotides analysis<br /><br />
using SeqmanTM version 4.0.0. The result of this research shows 0.9 kb single band on the<br /><br />
agarose gel electrophoresis. Electrophoregraph data shows the 0,9 kb nucleotides sequent is<br /><br />
inside the D-loop region and demonstrated 8 mutations after nucleotide sequence compare with<br /><br />
Cambridge Reference Sequence (CRS). The result of this method, gives amplification on the<br /><br />
region of HVI-HVII could be done in one step reaction, so analysis for D-loop region is more<br /><br />
effective and efficient. |
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Theses |
author |
RACHMADI, BAMBANG |
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RACHMADI, BAMBANG ANALYSIS METHODE OF 917 BASE PAIR IN D-LOOP HUMAN MTDNA |
author_facet |
RACHMADI, BAMBANG |
author_sort |
RACHMADI, BAMBANG |
title |
ANALYSIS METHODE OF 917 BASE PAIR IN D-LOOP HUMAN MTDNA |
title_short |
ANALYSIS METHODE OF 917 BASE PAIR IN D-LOOP HUMAN MTDNA |
title_full |
ANALYSIS METHODE OF 917 BASE PAIR IN D-LOOP HUMAN MTDNA |
title_fullStr |
ANALYSIS METHODE OF 917 BASE PAIR IN D-LOOP HUMAN MTDNA |
title_full_unstemmed |
ANALYSIS METHODE OF 917 BASE PAIR IN D-LOOP HUMAN MTDNA |
title_sort |
analysis methode of 917 base pair in d-loop human mtdna |
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https://digilib.itb.ac.id/gdl/view/5830 |
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