PhyloQuant approach provides insights into Trypanosoma cruzi evolution using a systems-wide mass spectrometry-based quantitative protein profile
Simon Ngao Mule et al. introduce the “PhyloQuant” approach to infer evolutionary relationships of organisms, focusing on the genetically diverse Trypanosoma cruzi strains based on protein expression profiles derived from mass spectrometry. The authors show that phylogenies constructed from their Phy...
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Nature Portfolio
2021
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oai:doaj.org-article:dde00abd6afc4474a308f48f0fe9f7b42021-12-02T11:37:25ZPhyloQuant approach provides insights into Trypanosoma cruzi evolution using a systems-wide mass spectrometry-based quantitative protein profile10.1038/s42003-021-01762-62399-3642https://doaj.org/article/dde00abd6afc4474a308f48f0fe9f7b42021-03-01T00:00:00Zhttps://doi.org/10.1038/s42003-021-01762-6https://doaj.org/toc/2399-3642Simon Ngao Mule et al. introduce the “PhyloQuant” approach to infer evolutionary relationships of organisms, focusing on the genetically diverse Trypanosoma cruzi strains based on protein expression profiles derived from mass spectrometry. The authors show that phylogenies constructed from their PhyloQuant method and traditional molecular phylogenies are significantly correlated, and demonstrate species-specific proteins and their differential expression over evolutionary time.Simon Ngao MuleAndré Guilherme Costa-MartinsLivia Rosa-FernandesGilberto Santos de OliveiraCarla Monadeli F. RodriguesDaniel QuinaGraziella E. RoseinMarta Maria Geraldes TeixeiraGiuseppe PalmisanoNature PortfolioarticleBiology (General)QH301-705.5ENCommunications Biology, Vol 4, Iss 1, Pp 1-12 (2021) |
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Biology (General) QH301-705.5 |
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Biology (General) QH301-705.5 Simon Ngao Mule André Guilherme Costa-Martins Livia Rosa-Fernandes Gilberto Santos de Oliveira Carla Monadeli F. Rodrigues Daniel Quina Graziella E. Rosein Marta Maria Geraldes Teixeira Giuseppe Palmisano PhyloQuant approach provides insights into Trypanosoma cruzi evolution using a systems-wide mass spectrometry-based quantitative protein profile |
description |
Simon Ngao Mule et al. introduce the “PhyloQuant” approach to infer evolutionary relationships of organisms, focusing on the genetically diverse Trypanosoma cruzi strains based on protein expression profiles derived from mass spectrometry. The authors show that phylogenies constructed from their PhyloQuant method and traditional molecular phylogenies are significantly correlated, and demonstrate species-specific proteins and their differential expression over evolutionary time. |
format |
article |
author |
Simon Ngao Mule André Guilherme Costa-Martins Livia Rosa-Fernandes Gilberto Santos de Oliveira Carla Monadeli F. Rodrigues Daniel Quina Graziella E. Rosein Marta Maria Geraldes Teixeira Giuseppe Palmisano |
author_facet |
Simon Ngao Mule André Guilherme Costa-Martins Livia Rosa-Fernandes Gilberto Santos de Oliveira Carla Monadeli F. Rodrigues Daniel Quina Graziella E. Rosein Marta Maria Geraldes Teixeira Giuseppe Palmisano |
author_sort |
Simon Ngao Mule |
title |
PhyloQuant approach provides insights into Trypanosoma cruzi evolution using a systems-wide mass spectrometry-based quantitative protein profile |
title_short |
PhyloQuant approach provides insights into Trypanosoma cruzi evolution using a systems-wide mass spectrometry-based quantitative protein profile |
title_full |
PhyloQuant approach provides insights into Trypanosoma cruzi evolution using a systems-wide mass spectrometry-based quantitative protein profile |
title_fullStr |
PhyloQuant approach provides insights into Trypanosoma cruzi evolution using a systems-wide mass spectrometry-based quantitative protein profile |
title_full_unstemmed |
PhyloQuant approach provides insights into Trypanosoma cruzi evolution using a systems-wide mass spectrometry-based quantitative protein profile |
title_sort |
phyloquant approach provides insights into trypanosoma cruzi evolution using a systems-wide mass spectrometry-based quantitative protein profile |
publisher |
Nature Portfolio |
publishDate |
2021 |
url |
https://doaj.org/article/dde00abd6afc4474a308f48f0fe9f7b4 |
work_keys_str_mv |
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1718395792960520192 |