PubMed · 42734808
Optimized Amplicon Strategy for Long-Read Sequencing of the Chikungunya Virus Genome.
Abstract
Chikungunya virus (CHIKV) is a positive-sense RNA alphavirus transmitted to humans primarily by Aedes aegypti and Aedes albopictus mosquitoes. Its global circulation and significant public health impact underscore the need to better understand the molecular mechanisms driving CHIKV pathogenesis and transmission. Although robust molecular biology methods exist for CHIKV genome sequencing, a major limitation for surveillance and research is the inability to determine whether two nucleotide variations co-occur within the same viral genome when they are separated beyond the span of typical short-read designs. Here, we describe an optimized approach for processing CHIKV RNA samples that generates large amplicons suitable for long-read nanopore sequencing. This protocol enables amplification of the complete CHIKV genome in only two or three amplicons and facilitates detection of co-occurring nucleotide variations across 4-7.5 kb within the same molecule, thereby simplifying sequencing workflows and improving resolution in studies of viral evolution.
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Chenyang Wu, Sara Ann Thannickal, Tommaso Cabani, Maria Gabriela Noval. 2027. Optimized Amplicon Strategy for Long-Read Sequencing of the Chikungunya Virus Genome.. https://doi.org/10.1007/978-1-0716-5496-5_25
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