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        Nanopore Sequencing Significantly Improves Genome Assembly of the Protozoan Parasite Trypanosoma cruzi

        Fecha
        2019
        Registro en:
        Díaz-Viraqué, F., Pita, S., Greif, G., de Souza, R. D. C. M., Iraola, G., & Robello, C. (2019). Nanopore sequencing significantly improves genome assembly of the protozoan parasite Trypanosoma cruzi. Genome biology and evolution, 11(7), 1952-1957.
        1759-6653
        https://doi.org/10.1093/gbe/evz129
        http://repositorio.umayor.cl/xmlui/handle/sibum/6364
        DOI: 10.1093/gbe/evz129
        https://repositorioslatinoamericanos.uchile.cl/handle/2250/4454207
        Autor
        Iraola, Gregorio [Univ Mayor, Ctr Integrat Biol, Santiago, Chile]
        Díaz-Viraque, Florencia
        Pita, Sebastián
        Greif, Gonzalo
        Moreira De Souza, Rita de Cassia
        Robello, Carlos
        Institución
        • Universidad Mayor (Chile)
        Resumen
        Chagas disease was described by Carlos Chagas, who first identified the parasite Trypanosoma cruzi from a 2-year-old girl called Berenice. Many T. cruzi sequencing projects based on short reads have demonstrated that genome assembly and downstream comparative analyses are extremely challenging in this species, given that half of its genome is composed of repetitive sequences. Here, we report de novo assemblies, annotation, and comparative analyses of the Berenice strain using a combination of Illumina short reads andMinION long reads. Our work demonstrates that Nanopore sequencing improves T. cruzi assembly contiguity and increases the assembly size in similar to 16 Mb. Specifically, we found that assembly improvement also refines the completeness of coding regions for both single-copy genes and repetitive transposable elements. Beyond its historical and epidemiological importance, Berenice constitutes a fundamental resource because it now constitutes a high-quality assembly available for TcII (clade C), a prevalent lineage causing human infections in South America. The availability of Berenice genome expands the known genetic diversity of these parasites and reinforces the idea that T. cruzi is intraspecifically divided in three main clades. Finally, this work represents the introduction of Nanopore technology to resolve complex protozoan genomes, supporting its subsequent application for improving trypanosomatid and other highly repetitive genomes.
        Materias
        Evolutionary Biology; Genetics & Heredity

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        Red de Repositorios Latinoamericanos
        + de 8.000.000 publicaciones disponibles
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        Colecciones destacadas
        • Tesis latinoamericanas
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        Dirección de Servicios de Información y Bibliotecas (SISIB)
        Universidad de Chile
        Red de Repositorios Latinoamericanos | 2006-2018