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Published on: March 11, 2020
Updates and Comparative Analysis of the Mitochondrial Genomes of Paracoccidioides spp. Using Oxford Nanopore MinION
Elizabeth Misas1,2, Oscar M Gómez1,3, Vanessa Botero1
1Cellular and Molecular Biology Unit, Corporación para Investigaciones Biológicas, Medellín, Colombia.
Abstract:
The mitochondrial genome of the Paracoccidioides brasiliensis reference isolate Pb18 was first sequenced and described by Cardoso et al. (2007), as a circular genome with a size of 71.3 kb and containing 14 protein coding genes, 25 tRNAs, and the large and small subunits of ribosomal RNA. Later in 2011, Desjardins et al. (2011) obtained partial assemblies of mitochondrial genomes of P. lutzii (Pb01), P. americana (Pb03), and P. brasiliensis sensu stricto (Pb18), although with a size of only 43.1 kb for Pb18. Sequencing errors or other limitations resulting from earlier technologies, and the advantages of NGS (short and long reads), prompted us to improve and update the mtDNA sequences and annotations of two Paracoccidioides species. Using Oxford Nanopore and Illumina read sequencing, we generated high-quality complete de novo mitochondrial genome assemblies and annotations for P. brasiliensis (Pb18) and P. americana (Pb03). Both assemblies were characterized by an unusually long spacer or intron region (>50 kb) between exons 2 and 3 of the nad5 gene, which was moderately conserved between Pb03 and Pb18 but not similar to other reported sequences, except for an unassigned contig in the 2011 assembly of Pb03. The reliability of the insert missing from previous mtDNA genome assemblies was confirmed by inspection of the individual Nanopore read sequences containing nad5 coding DNA, and experimentally by PCR for Pb18. We propose that the insert may aid replication initiation and may be excised to produce a smaller structural variant. The updated mtDNA genomes should enable more accurate SNP and other comparative or evolutionary analyses and primer/probe designs. A comparative analysis of the mtDNA from 32 isolates of Paracoccidioides spp., using the SNPs of the aligned mitochondrial genomes, showed groupings within the brasiliensis species complex that were largely consistent with previous findings from only five mitochondrial loci.
Insights
We updated the mitochondrial genome sequences for Paracoccidioides brasiliensis and Paracoccidioides americana using advanced sequencing. This provides a more accurate foundation for evolutionary studies and diagnostics of Paracoccidioides infections.
Area of Science:
- Mycology
- Genomics
- Molecular Biology
Background:
- Previous mitochondrial genome assemblies for Paracoccidioides species were limited in size and accuracy.
- Advancements in next-generation sequencing (NGS) technologies offer improved capabilities for genome sequencing.
Purpose of the Study:
- To generate high-quality, complete mitochondrial genome sequences and annotations for Paracoccidioides brasiliensis (Pb18) and Paracoccidioides americana (Pb03).
- To identify and characterize novel genomic regions, particularly an unusually long spacer/intron in the nad5 gene.
- To enable more accurate comparative genomic, evolutionary, and diagnostic analyses within the Paracoccidioides genus.
Main Methods:
- Utilized Oxford Nanopore and Illumina sequencing technologies for complete de novo mitochondrial genome assembly.
- Performed detailed annotation of the generated mitochondrial genomes.
- Confirmed the presence and reliability of novel genomic regions using read sequence inspection and Polymerase Chain Reaction (PCR).
Main Results:
- Generated high-quality, complete mitochondrial genome assemblies for P. brasiliensis (Pb18) and P. americana (Pb03).
- Identified and characterized a conserved, unusually long spacer/intron region (>50 kb) within the nad5 gene in both species.
- Comparative analysis of 32 Paracoccidioides isolates using updated mitochondrial genomes largely confirmed previous phylogenetic groupings.
Conclusions:
- The updated mitochondrial genome sequences provide a significantly improved resource for Paracoccidioides research.
- The novel nad5 insert may play a role in mitochondrial DNA replication initiation and exhibit structural variation.
- These findings enhance capabilities for accurate SNP analysis, evolutionary studies, and the design of diagnostic primers and probes for Paracoccidioides.
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