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Updated: Jun 24, 2026

Rapid, Enzymatic Methods for Amplification of Minimal, Linear Templates for Protein Prototyping using Cell-Free Systems
Published on: June 14, 2021
Specific and complete human genome amplification with improved yield achieved by phi29 DNA polymerase and a novel
Osama Alsmadi1, Fadi Alkayal, Dorota Monies
1Genetics Department, Research Center, King Faisal Specialist Hospital and Research Center, Riyadh, Saudi Arabia. oalsmadi@kfshrc.edu.sa
Backgrounds:
Whole genome amplification (WGA) is a practical solution to eliminate molecular analysis limitations associated with genomic DNA (gDNA) quantity. Different methods have been developed to amplify the whole genome, including primer extension preamplification (PEP), degenerate oligonucleotide primed PCR (DOP-PCR), and multiple displacement amplification (MDA). Each of these methods has its own merits and limitations.
Findings:
Effects of primer length and composition on amplification quality and quantity were explored in this study at two different temperatures (30 degrees C & 40 degrees C). New primer designs combined with elevated amplification temperature has significantly improved MDA as measured by amplification yield, genome coverage, and allele drop out (ADO) analysis. A remarkable finding was the comprehensive amplification, at 30 degrees C & 40 degrees C, of the human whole genome via the use of GGGCAGGA*N*G hotspot recombination consensus primer. Amplification was characterized by Affymetrix 10K SNP chip analysis. Finally, the use of new primer designs has suppressed the template-independent DNA amplification (TIDA) both at 30 degrees C and 40 degrees C.
Conclusion:
The use of new primers in this study combined with elevated incubation temperatures in MDA has remarkably improved the specificity, amplification yield, and suppressed TIDA.
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