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Novel Insights on Hantavirus Evolution: The Dichotomy in Evolutionary Pressures Acting on Different Hantavirus Segments

BACKGROUND: Hantaviruses are important emerging zoonotic pathogens. The current understanding of hantavirus evolution is complicated by the lack of consensus on co-divergence of hantaviruses with their animal hosts. In addition, hantaviruses have long-term associations with their reservoir hosts. An...

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Autores principales: Sankar, Sathish, Upadhyay, Mohita, Ramamurthy, Mageshbabu, Vadivel, Kumaran, Sagadevan, Kalaiselvan, Nandagopal, Balaji, Vivekanandan, Perumal, Sridharan, Gopalan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4508033/
https://www.ncbi.nlm.nih.gov/pubmed/26193652
http://dx.doi.org/10.1371/journal.pone.0133407
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author Sankar, Sathish
Upadhyay, Mohita
Ramamurthy, Mageshbabu
Vadivel, Kumaran
Sagadevan, Kalaiselvan
Nandagopal, Balaji
Vivekanandan, Perumal
Sridharan, Gopalan
author_facet Sankar, Sathish
Upadhyay, Mohita
Ramamurthy, Mageshbabu
Vadivel, Kumaran
Sagadevan, Kalaiselvan
Nandagopal, Balaji
Vivekanandan, Perumal
Sridharan, Gopalan
author_sort Sankar, Sathish
collection PubMed
description BACKGROUND: Hantaviruses are important emerging zoonotic pathogens. The current understanding of hantavirus evolution is complicated by the lack of consensus on co-divergence of hantaviruses with their animal hosts. In addition, hantaviruses have long-term associations with their reservoir hosts. Analyzing the relative abundance of dinucleotides may shed new light on hantavirus evolution. We studied the relative abundance of dinucleotides and the evolutionary pressures shaping different hantavirus segments. METHODS: A total of 118 sequences were analyzed; this includes 51 sequences of the S segment, 43 sequences of the M segment and 23 sequences of the L segment. The relative abundance of dinucleotides, effective codon number (ENC), codon usage biases were analyzed. Standard methods were used to investigate the relative roles of mutational pressure and translational selection on the three hantavirus segments. RESULTS: All three segments of hantaviruses are CpG depleted. Mutational pressure is the predominant evolutionary force leading to CpG depletion among hantaviruses. Interestingly, the S segment of hantaviruses is GpU depleted and in contrast to CpG depletion, the depletion of GpU dinucleotides from the S segment is driven by translational selection. Our findings also suggest that mutational pressure is the primary evolutionary pressure acting on the S and the M segments of hantaviruses. While translational selection plays a key role in shaping the evolution of the L segment. Our findings highlight how different evolutionary pressures may contribute disproportionally to the evolution of the three hantavirus segments. These findings provide new insights on the current understanding of hantavirus evolution. CONCLUSIONS: There is a dichotomy among evolutionary pressures shaping a) the relative abundance of different dinucleotides in hantavirus genomes b) the evolution of the three hantavirus segments.
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spelling pubmed-45080332015-07-24 Novel Insights on Hantavirus Evolution: The Dichotomy in Evolutionary Pressures Acting on Different Hantavirus Segments Sankar, Sathish Upadhyay, Mohita Ramamurthy, Mageshbabu Vadivel, Kumaran Sagadevan, Kalaiselvan Nandagopal, Balaji Vivekanandan, Perumal Sridharan, Gopalan PLoS One Research Article BACKGROUND: Hantaviruses are important emerging zoonotic pathogens. The current understanding of hantavirus evolution is complicated by the lack of consensus on co-divergence of hantaviruses with their animal hosts. In addition, hantaviruses have long-term associations with their reservoir hosts. Analyzing the relative abundance of dinucleotides may shed new light on hantavirus evolution. We studied the relative abundance of dinucleotides and the evolutionary pressures shaping different hantavirus segments. METHODS: A total of 118 sequences were analyzed; this includes 51 sequences of the S segment, 43 sequences of the M segment and 23 sequences of the L segment. The relative abundance of dinucleotides, effective codon number (ENC), codon usage biases were analyzed. Standard methods were used to investigate the relative roles of mutational pressure and translational selection on the three hantavirus segments. RESULTS: All three segments of hantaviruses are CpG depleted. Mutational pressure is the predominant evolutionary force leading to CpG depletion among hantaviruses. Interestingly, the S segment of hantaviruses is GpU depleted and in contrast to CpG depletion, the depletion of GpU dinucleotides from the S segment is driven by translational selection. Our findings also suggest that mutational pressure is the primary evolutionary pressure acting on the S and the M segments of hantaviruses. While translational selection plays a key role in shaping the evolution of the L segment. Our findings highlight how different evolutionary pressures may contribute disproportionally to the evolution of the three hantavirus segments. These findings provide new insights on the current understanding of hantavirus evolution. CONCLUSIONS: There is a dichotomy among evolutionary pressures shaping a) the relative abundance of different dinucleotides in hantavirus genomes b) the evolution of the three hantavirus segments. Public Library of Science 2015-07-20 /pmc/articles/PMC4508033/ /pubmed/26193652 http://dx.doi.org/10.1371/journal.pone.0133407 Text en © 2015 Sankar 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
Sankar, Sathish
Upadhyay, Mohita
Ramamurthy, Mageshbabu
Vadivel, Kumaran
Sagadevan, Kalaiselvan
Nandagopal, Balaji
Vivekanandan, Perumal
Sridharan, Gopalan
Novel Insights on Hantavirus Evolution: The Dichotomy in Evolutionary Pressures Acting on Different Hantavirus Segments
title Novel Insights on Hantavirus Evolution: The Dichotomy in Evolutionary Pressures Acting on Different Hantavirus Segments
title_full Novel Insights on Hantavirus Evolution: The Dichotomy in Evolutionary Pressures Acting on Different Hantavirus Segments
title_fullStr Novel Insights on Hantavirus Evolution: The Dichotomy in Evolutionary Pressures Acting on Different Hantavirus Segments
title_full_unstemmed Novel Insights on Hantavirus Evolution: The Dichotomy in Evolutionary Pressures Acting on Different Hantavirus Segments
title_short Novel Insights on Hantavirus Evolution: The Dichotomy in Evolutionary Pressures Acting on Different Hantavirus Segments
title_sort novel insights on hantavirus evolution: the dichotomy in evolutionary pressures acting on different hantavirus segments
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4508033/
https://www.ncbi.nlm.nih.gov/pubmed/26193652
http://dx.doi.org/10.1371/journal.pone.0133407
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