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Long-Read Sequencing and De Novo Genome Assembly Pipeline of Two Plasmodium falciparum Clones (P<em>f</em>3D7, P<em>f</em>W2) Using Only the PromethION Sequencer from Oxford Nanopore Technologies without Whole Genome Amplification

2024-01-12

Abstract excerpt

Antimalarial drug resistance has become a real public health problem despite WHO measures. New sequencing technologies make it possible to investigate genomic variations associated with resistant phenotypes at the genome-wide scale. Based on the use of hemisynthetic nanopores, the PromethION technology from Oxford Nanopore Technologies can produce long-read sequences, in contrast to previous short-read technologie...

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Literature Corpus work
dbdc1bea-c22e-5644-994c-1eacabe467ae
DOI
10.20944/preprints202401.0987.v1
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Long-Read Sequencing and De Novo Genome Assembly Pipeline of Two Plasmodium falciparum Clones (P<em>f</em>3D7, P<em>f</em>W2) Using Only the PromethION Sequencer from Oxford Nanopore Technologies without Whole Genome AmplificationDOI 10.20944/preprints202401.0987.v1
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