rapid whole genome optical mapping of plasmodium falciparum
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Abstract
Abstract
Background
Immune evasion and drug resistance in malaria have been linked to chromosomal recombination and gene copy number variation (CNV). These events are ideally studied using comparative genomic analyses; however in malaria these analyses are not as common or thorough as in other infectious diseases, partly due to the difficulty in sequencing and assembling complete genome drafts. Recently, whole genome optical mapping has gained wide use in support of genomic sequence assembly and comparison. Here, a rapid technique for producing whole genome optical maps of
Methods
Four laboratory strains of
Results
Genomic variation was observed among the mapped strains, as well as between the map of the reference strain and the map derived from the putative sequence of that same strain. Duplications, deletions, insertions, inversions and misassemblies of sizes ranging from 3,500 base pairs up to 78,000 base pairs were observed. Many genomic events occurred in areas of known repetitive sequence or high copy number genes, including
Conclusions
This technique for optical mapping of multiple malaria genomes allows for whole genome comparison of multiple strains and can assist in identifying genetic variation and sequence contig assembly. New protocols and technology allowed us to produce high quality contigs spanning four
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d2011malariarapid
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| Authors | ;Johnson Jake D;Kirkup Benjamin C;Riley Matthew C;Lesho Emil P;Ockenhouse Christian F |
| Journal | journal of technology management and innovation |
| Year | 2011 |
| DOI |
10.1186/1475-2875-10-252
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