AI Article Synopsis

  • Trypanosoma cruzi is responsible for Chagas disease, contributing to approximately 10,000 deaths yearly, but there are still few available genome assemblies for this complex parasite.
  • This study presents a high-quality whole-genome assembly of the Tulahuen strain of T. cruzi using long-read Nanopore sequencing, achieving a genome with significant repetitive and variable regions similar in quality to those assembled using traditional methods.
  • The research reveals that transposable elements (TEs) are closely associated with multicopy surface proteins, indicating that these mobile genetic elements might play a role in the genetic diversification of the parasite.

Article Abstract

Trypanosoma cruzi is the causative agent of Chagas disease, which causes 10,000 deaths per year. Despite the high mortality associated with Chagas, relatively few parasite genomes have been assembled to date, with genome assemblies unavailable even for some commonly used laboratory strains. This is at least partially due to T. cruzi's highly complex and highly repetitive genome, which defies investigation using traditional short-read sequencing methods. In this study, we have generated a high-quality whole-genome assembly of the hybrid Tulahuen strain, a commercially available type VI strain, using long-read Nanopore sequencing without short-read scaffolding. The assembled genome contains 25% repeat regions, 17% variable multigene family members, and 27% transposable elements (TEs) and is of comparable quality with T. cruzi genome assemblies that utilized both long- and short-read data. Notably, we find that regions with TEs are significantly enriched for multicopy surface proteins, and that surface proteins are, on average, closer to TEs than to other coding regions. This finding suggests that mobile genetic elements such as transposons may drive recombination within surface protein gene families. This work demonstrates the feasibility of Nanopore sequencing to resolve complex regions of T. cruzi genomes, and with these resolved regions, provides support for a possible mechanism for genomic diversification.

Download full-text PDF

Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11152063PMC
http://dx.doi.org/10.1093/g3journal/jkae076DOI Listing

Publication Analysis

Top Keywords

nanopore sequencing
12
whole-genome assembly
8
assembly hybrid
8
trypanosoma cruzi
8
assembled genome
8
genome assemblies
8
surface proteins
8
regions
5
hybrid trypanosoma
4
cruzi
4

Similar Publications

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!