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Genome Size, Karyotype Polymorphism and Chromosomal Evolution in Trypanosoma cruzi

BACKGROUND: The Trypanosoma cruzi genome was sequenced from a hybrid strain (CL Brener). However, high allelic variation and the repetitive nature of the genome have prevented the complete linear sequence of chromosomes being determined. Determining the full complement of chromosomes and establishin...

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Autores principales: Souza, Renata T., Lima, Fábio M., Barros, Roberto Moraes, Cortez, Danielle R., Santos, Michele F., Cordero, Esteban M., Ruiz, Jeronimo Conceiçao, Goldenberg, Samuel, Teixeira, Marta M. G., da Silveira, José Franco
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3155523/
https://www.ncbi.nlm.nih.gov/pubmed/21857989
http://dx.doi.org/10.1371/journal.pone.0023042
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author Souza, Renata T.
Lima, Fábio M.
Barros, Roberto Moraes
Cortez, Danielle R.
Santos, Michele F.
Cordero, Esteban M.
Ruiz, Jeronimo Conceiçao
Goldenberg, Samuel
Teixeira, Marta M. G.
da Silveira, José Franco
author_facet Souza, Renata T.
Lima, Fábio M.
Barros, Roberto Moraes
Cortez, Danielle R.
Santos, Michele F.
Cordero, Esteban M.
Ruiz, Jeronimo Conceiçao
Goldenberg, Samuel
Teixeira, Marta M. G.
da Silveira, José Franco
author_sort Souza, Renata T.
collection PubMed
description BACKGROUND: The Trypanosoma cruzi genome was sequenced from a hybrid strain (CL Brener). However, high allelic variation and the repetitive nature of the genome have prevented the complete linear sequence of chromosomes being determined. Determining the full complement of chromosomes and establishing syntenic groups will be important in defining the structure of T. cruzi chromosomes. A large amount of information is now available for T. cruzi and Trypanosoma brucei, providing the opportunity to compare and describe the overall patterns of chromosomal evolution in these parasites. METHODOLOGY/PRINCIPAL FINDINGS: The genome sizes, repetitive DNA contents, and the numbers and sizes of chromosomes of nine strains of T. cruzi from four lineages (TcI, TcII, TcV and TcVI) were determined. The genome of the TcI group was statistically smaller than other lineages, with the exception of the TcI isolate Tc1161 (José-IMT). Satellite DNA content was correlated with genome size for all isolates, but this was not accompanied by simultaneous amplification of retrotransposons. Regardless of chromosomal polymorphism, large syntenic groups are conserved among T. cruzi lineages. Duplicated chromosome-sized regions were identified and could be retained as paralogous loci, increasing the dosage of several genes. By comparing T. cruzi and T. brucei chromosomes, homologous chromosomal regions in T. brucei were identified. Chromosomes Tb9 and Tb11 of T. brucei share regions of syntenic homology with three and six T. cruzi chromosomal bands, respectively. CONCLUSIONS: Despite genome size variation and karyotype polymorphism, T. cruzi lineages exhibit conservation of chromosome structure. Several syntenic groups are conserved among all isolates analyzed in this study. The syntenic regions are larger than expected if rearrangements occur randomly, suggesting that they are conserved owing to positive selection. Mapping of the syntenic regions on T. cruzi chromosomal bands provides evidence for the occurrence of fusion and split events involving T. brucei and T. cruzi chromosomes.
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spelling pubmed-31555232011-08-19 Genome Size, Karyotype Polymorphism and Chromosomal Evolution in Trypanosoma cruzi Souza, Renata T. Lima, Fábio M. Barros, Roberto Moraes Cortez, Danielle R. Santos, Michele F. Cordero, Esteban M. Ruiz, Jeronimo Conceiçao Goldenberg, Samuel Teixeira, Marta M. G. da Silveira, José Franco PLoS One Research Article BACKGROUND: The Trypanosoma cruzi genome was sequenced from a hybrid strain (CL Brener). However, high allelic variation and the repetitive nature of the genome have prevented the complete linear sequence of chromosomes being determined. Determining the full complement of chromosomes and establishing syntenic groups will be important in defining the structure of T. cruzi chromosomes. A large amount of information is now available for T. cruzi and Trypanosoma brucei, providing the opportunity to compare and describe the overall patterns of chromosomal evolution in these parasites. METHODOLOGY/PRINCIPAL FINDINGS: The genome sizes, repetitive DNA contents, and the numbers and sizes of chromosomes of nine strains of T. cruzi from four lineages (TcI, TcII, TcV and TcVI) were determined. The genome of the TcI group was statistically smaller than other lineages, with the exception of the TcI isolate Tc1161 (José-IMT). Satellite DNA content was correlated with genome size for all isolates, but this was not accompanied by simultaneous amplification of retrotransposons. Regardless of chromosomal polymorphism, large syntenic groups are conserved among T. cruzi lineages. Duplicated chromosome-sized regions were identified and could be retained as paralogous loci, increasing the dosage of several genes. By comparing T. cruzi and T. brucei chromosomes, homologous chromosomal regions in T. brucei were identified. Chromosomes Tb9 and Tb11 of T. brucei share regions of syntenic homology with three and six T. cruzi chromosomal bands, respectively. CONCLUSIONS: Despite genome size variation and karyotype polymorphism, T. cruzi lineages exhibit conservation of chromosome structure. Several syntenic groups are conserved among all isolates analyzed in this study. The syntenic regions are larger than expected if rearrangements occur randomly, suggesting that they are conserved owing to positive selection. Mapping of the syntenic regions on T. cruzi chromosomal bands provides evidence for the occurrence of fusion and split events involving T. brucei and T. cruzi chromosomes. Public Library of Science 2011-08-12 /pmc/articles/PMC3155523/ /pubmed/21857989 http://dx.doi.org/10.1371/journal.pone.0023042 Text en Souza et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Souza, Renata T.
Lima, Fábio M.
Barros, Roberto Moraes
Cortez, Danielle R.
Santos, Michele F.
Cordero, Esteban M.
Ruiz, Jeronimo Conceiçao
Goldenberg, Samuel
Teixeira, Marta M. G.
da Silveira, José Franco
Genome Size, Karyotype Polymorphism and Chromosomal Evolution in Trypanosoma cruzi
title Genome Size, Karyotype Polymorphism and Chromosomal Evolution in Trypanosoma cruzi
title_full Genome Size, Karyotype Polymorphism and Chromosomal Evolution in Trypanosoma cruzi
title_fullStr Genome Size, Karyotype Polymorphism and Chromosomal Evolution in Trypanosoma cruzi
title_full_unstemmed Genome Size, Karyotype Polymorphism and Chromosomal Evolution in Trypanosoma cruzi
title_short Genome Size, Karyotype Polymorphism and Chromosomal Evolution in Trypanosoma cruzi
title_sort genome size, karyotype polymorphism and chromosomal evolution in trypanosoma cruzi
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3155523/
https://www.ncbi.nlm.nih.gov/pubmed/21857989
http://dx.doi.org/10.1371/journal.pone.0023042
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