TY - JOUR T1 - High-resolution genomic surveillance of 2014 ebolavirus using shared subclonal variants JF - bioRxiv DO - 10.1101/013318 SP - 013318 AU - Kevin J. Emmett AU - Albert Lee AU - Hossein Khiabanian AU - Raul Rabadan Y1 - 2014/01/01 UR - http://biorxiv.org/content/early/2014/12/29/013318.abstract N2 - Viral outbreaks, such as the 2014 ebolavirus, can spread rapidly and have complex evolutionary dynamics, including coinfection and bulk transmission of multiple viral populations. Genomic surveillance can be hindered when the spread of the outbreak exceeds the evolutionary rate, in which case consensus approaches will have limited resolution. Deep sequencing of infected patients can identify genomic variants present in intrahost populations at subclonal frequencies (i.e. < 50%). Shared subclonal variants (SSVs) can provide additional phylogenetic resolution and inform about disease transmission patterns. Here, we use metrics from population genetics to analyze data from the 2014 ebolavirus outbreak in Sierra Leone and identify phylogenetic signal arising from SSVs. We use methods derived from information theory to measure a lower bound on transmission bottleneck size that is larger than one founder population, yet significantly smaller than the intrahost effective population. Our results demonstrate the important role of shared subclonal variants in genomic surveillance. ER -