Long-read RNA sequencing of human and animal filarial parasites improves gene models and discovers operons

Author:

Wheeler Nicolas JORCID,Airs Paul M.ORCID,Zamanian MostafaORCID

Abstract

Filarial parasitic nematodes (Filarioidea) cause substantial disease burden to humans and animals around the world. Recently there has been a coordinated global effort to generate, annotate, and curate genomic data from nematode species of medical and veterinary importance. This has resulted in two chromosome-level assemblies (Brugia malayi and Onchocerca volvulus) and 11 additional draft genomes from Filarioidea. These reference assemblies facilitate comparative genomics to explore basic helminth biology and prioritize new drug and vaccine targets. While the continual improvement of genome contiguity and completeness advances these goals, experimental functional annotation of genes is often hindered by poor gene models. Short-read RNA sequencing data and expressed sequence tags, in cooperation with ab initio prediction algorithms, are employed for gene prediction, but these can result in missing clade-specific genes, fragmented models, imperfect mapping of gene ends, and lack of isoform resolution. Long-read RNA sequencing can overcome these drawbacks and greatly improve gene model quality. Here, we present Iso-Seq data for B. malayi and Dirofilaria immitis, etiological agents of lymphatic filariasis and canine heartworm disease, respectively. These data cover approximately half of the known coding genomes and substantially improve gene models by extending untranslated regions, cataloging novel splice junctions from novel isoforms, and correcting mispredicted junctions. Furthermore, we validated computationally predicted operons, manually curated new operons, and merged fragmented gene models. We carried out analyses of poly(A) tails in both species, leading to the identification of non-canonical poly(A) signals. Finally, we prioritized and assessed known and putative anthelmintic targets, correcting or validating gene models for molecular cloning and target-based anthelmintic screening efforts. Overall, these data significantly improve the catalog of gene models for two important parasites, and they demonstrate how long-read RNA sequencing should be prioritized for ongoing improvement of parasitic nematode genome assemblies.

Funder

National Institute of Allergy and Infectious Diseases

Publisher

Public Library of Science (PLoS)

Subject

Infectious Diseases,Public Health, Environmental and Occupational Health

Reference69 articles.

1. Global, regional, and national incidence, prevalence, and years lived with disability for 354 diseases and injuries for 195 countries and territories, 1990–2017: a systematic analysis for the Global Burden of Disease Study 2017;SL James;Lancet,2018

2. Human and animal dirofilariasis: the emergence of a zoonotic mosaic;F Simón;Clin Microbiol Rev,2012

3. Lymphatic filariasis. In: Lymphatic filariasis. 6 Oct 2019 [cited 3 Feb 2020]. https://www.who.int/news-room/fact-sheets/detail/lymphatic-filariasis.

4. American Heartworm Society. Current Canine Guidelines for the Prevention, Diagnosis, and Management of Heartworm (Dirofilaria immitis) Infection in Dogs. 2018. https://d3ft8sckhnqim2.cloudfront.net/images/pdf/2018_AHS_Canine_Guidelines_rev_7-25-19.pdf?1564157216.

5. Is anthelmintic resistance a threat to the program to eliminate lymphatic filariasis?;J McCarthy;Am J Trop Med Hyg,2005

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