Central Virology Laboratory, Ministry of Health, Chaim Sheba Medical Center, Tel-Hashomer, Ramat-Gan, Israel.
Division of Epidemiology, Israel Ministry of Health, Jerusalem, Isreal.
PLoS One. 2021 Sep 10;16(9):e0255663. doi: 10.1371/journal.pone.0255663. eCollection 2021.
Measles outbreaks escalated globally despite worldwide elimination efforts. Molecular epidemiological investigations utilizing partial measles virus (MeV) genomes are challenged by reduction in global genotypes and low evolutionary rates. Greater resolution was reached using MeV complete genomes, however time and costs limit the application to numerous samples. We developed an approach to unbiasedly sequence complete MeV genomes directly from patient urine samples. Samples were enriched for MeV using filtration or nucleases and the minimal number of sequence reads to allocate per sample based on its MeV content was assessed using in-silico reduction of sequencing depth. Application of limited-resource sequencing to treated MeV-positive samples demonstrated that 1-5 million sequences for samples with high/medium MeV quantities and 10-15 million sequences for samples with lower MeV quantities are sufficient to obtain >98% MeV genome coverage and over X50 average depth. This approach enables real-time high-resolution molecular epidemiological investigations of large-scale MeV outbreaks.
尽管全球范围内都在努力消除麻疹,但麻疹疫情仍在全球范围内升级。利用部分麻疹病毒(MeV)基因组进行分子流行病学调查受到全球基因型减少和低进化率的挑战。使用完整的 MeV 基因组可以获得更高的分辨率,但时间和成本限制了对大量样本的应用。我们开发了一种从患者尿液样本中直接对完整的 MeV 基因组进行无偏测序的方法。使用过滤或核酸酶从样本中富集 MeV,根据其 MeV 含量评估分配给每个样本的最小测序读长数量,并使用测序深度的计算减少进行评估。将有限资源测序应用于经过治疗的 MeV 阳性样本表明,对于高/中 MeV 量的样本,需要 100 万到 500 万个序列,对于 MeV 量较低的样本,需要 1000 万到 1.5 亿个序列,以获得 >98%的 MeV 基因组覆盖率和超过 X50 的平均深度。这种方法可以实时进行大规模 MeV 暴发的高分辨率分子流行病学研究。