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Genomic Analysis of the Basal Lineage Fungus Rhizopus oryzae Reveals a Whole-Genome Duplication

Rhizopus oryzae is the primary cause of mucormycosis, an emerging, life-threatening infection characterized by rapid angioinvasive growth with an overall mortality rate that exceeds 50%. As a representative of the paraphyletic basal group of the fungal kingdom called “zygomycetes,” R. oryzae is also...

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Autores principales: Ma, Li-Jun, Ibrahim, Ashraf S., Skory, Christopher, Grabherr, Manfred G., Burger, Gertraud, Butler, Margi, Elias, Marek, Idnurm, Alexander, Lang, B. Franz, Sone, Teruo, Abe, Ayumi, Calvo, Sarah E., Corrochano, Luis M., Engels, Reinhard, Fu, Jianmin, Hansberg, Wilhelm, Kim, Jung-Mi, Kodira, Chinnappa D., Koehrsen, Michael J., Liu, Bo, Miranda-Saavedra, Diego, O'Leary, Sinead, Ortiz-Castellanos, Lucila, Poulter, Russell, Rodriguez-Romero, Julio, Ruiz-Herrera, José, Shen, Yao-Qing, Zeng, Qiandong, Galagan, James, Birren, Bruce W., Cuomo, Christina A., Wickes, Brian L.
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2699053/
https://www.ncbi.nlm.nih.gov/pubmed/19578406
http://dx.doi.org/10.1371/journal.pgen.1000549
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author Ma, Li-Jun
Ibrahim, Ashraf S.
Skory, Christopher
Grabherr, Manfred G.
Burger, Gertraud
Butler, Margi
Elias, Marek
Idnurm, Alexander
Lang, B. Franz
Sone, Teruo
Abe, Ayumi
Calvo, Sarah E.
Corrochano, Luis M.
Engels, Reinhard
Fu, Jianmin
Hansberg, Wilhelm
Kim, Jung-Mi
Kodira, Chinnappa D.
Koehrsen, Michael J.
Liu, Bo
Miranda-Saavedra, Diego
O'Leary, Sinead
Ortiz-Castellanos, Lucila
Poulter, Russell
Rodriguez-Romero, Julio
Ruiz-Herrera, José
Shen, Yao-Qing
Zeng, Qiandong
Galagan, James
Birren, Bruce W.
Cuomo, Christina A.
Wickes, Brian L.
author_facet Ma, Li-Jun
Ibrahim, Ashraf S.
Skory, Christopher
Grabherr, Manfred G.
Burger, Gertraud
Butler, Margi
Elias, Marek
Idnurm, Alexander
Lang, B. Franz
Sone, Teruo
Abe, Ayumi
Calvo, Sarah E.
Corrochano, Luis M.
Engels, Reinhard
Fu, Jianmin
Hansberg, Wilhelm
Kim, Jung-Mi
Kodira, Chinnappa D.
Koehrsen, Michael J.
Liu, Bo
Miranda-Saavedra, Diego
O'Leary, Sinead
Ortiz-Castellanos, Lucila
Poulter, Russell
Rodriguez-Romero, Julio
Ruiz-Herrera, José
Shen, Yao-Qing
Zeng, Qiandong
Galagan, James
Birren, Bruce W.
Cuomo, Christina A.
Wickes, Brian L.
author_sort Ma, Li-Jun
collection PubMed
description Rhizopus oryzae is the primary cause of mucormycosis, an emerging, life-threatening infection characterized by rapid angioinvasive growth with an overall mortality rate that exceeds 50%. As a representative of the paraphyletic basal group of the fungal kingdom called “zygomycetes,” R. oryzae is also used as a model to study fungal evolution. Here we report the genome sequence of R. oryzae strain 99–880, isolated from a fatal case of mucormycosis. The highly repetitive 45.3 Mb genome assembly contains abundant transposable elements (TEs), comprising approximately 20% of the genome. We predicted 13,895 protein-coding genes not overlapping TEs, many of which are paralogous gene pairs. The order and genomic arrangement of the duplicated gene pairs and their common phylogenetic origin provide evidence for an ancestral whole-genome duplication (WGD) event. The WGD resulted in the duplication of nearly all subunits of the protein complexes associated with respiratory electron transport chains, the V-ATPase, and the ubiquitin–proteasome systems. The WGD, together with recent gene duplications, resulted in the expansion of multiple gene families related to cell growth and signal transduction, as well as secreted aspartic protease and subtilase protein families, which are known fungal virulence factors. The duplication of the ergosterol biosynthetic pathway, especially the major azole target, lanosterol 14α-demethylase (ERG11), could contribute to the variable responses of R. oryzae to different azole drugs, including voriconazole and posaconazole. Expanded families of cell-wall synthesis enzymes, essential for fungal cell integrity but absent in mammalian hosts, reveal potential targets for novel and R. oryzae-specific diagnostic and therapeutic treatments.
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spelling pubmed-26990532009-07-03 Genomic Analysis of the Basal Lineage Fungus Rhizopus oryzae Reveals a Whole-Genome Duplication Ma, Li-Jun Ibrahim, Ashraf S. Skory, Christopher Grabherr, Manfred G. Burger, Gertraud Butler, Margi Elias, Marek Idnurm, Alexander Lang, B. Franz Sone, Teruo Abe, Ayumi Calvo, Sarah E. Corrochano, Luis M. Engels, Reinhard Fu, Jianmin Hansberg, Wilhelm Kim, Jung-Mi Kodira, Chinnappa D. Koehrsen, Michael J. Liu, Bo Miranda-Saavedra, Diego O'Leary, Sinead Ortiz-Castellanos, Lucila Poulter, Russell Rodriguez-Romero, Julio Ruiz-Herrera, José Shen, Yao-Qing Zeng, Qiandong Galagan, James Birren, Bruce W. Cuomo, Christina A. Wickes, Brian L. PLoS Genet Research Article Rhizopus oryzae is the primary cause of mucormycosis, an emerging, life-threatening infection characterized by rapid angioinvasive growth with an overall mortality rate that exceeds 50%. As a representative of the paraphyletic basal group of the fungal kingdom called “zygomycetes,” R. oryzae is also used as a model to study fungal evolution. Here we report the genome sequence of R. oryzae strain 99–880, isolated from a fatal case of mucormycosis. The highly repetitive 45.3 Mb genome assembly contains abundant transposable elements (TEs), comprising approximately 20% of the genome. We predicted 13,895 protein-coding genes not overlapping TEs, many of which are paralogous gene pairs. The order and genomic arrangement of the duplicated gene pairs and their common phylogenetic origin provide evidence for an ancestral whole-genome duplication (WGD) event. The WGD resulted in the duplication of nearly all subunits of the protein complexes associated with respiratory electron transport chains, the V-ATPase, and the ubiquitin–proteasome systems. The WGD, together with recent gene duplications, resulted in the expansion of multiple gene families related to cell growth and signal transduction, as well as secreted aspartic protease and subtilase protein families, which are known fungal virulence factors. The duplication of the ergosterol biosynthetic pathway, especially the major azole target, lanosterol 14α-demethylase (ERG11), could contribute to the variable responses of R. oryzae to different azole drugs, including voriconazole and posaconazole. Expanded families of cell-wall synthesis enzymes, essential for fungal cell integrity but absent in mammalian hosts, reveal potential targets for novel and R. oryzae-specific diagnostic and therapeutic treatments. Public Library of Science 2009-07-03 /pmc/articles/PMC2699053/ /pubmed/19578406 http://dx.doi.org/10.1371/journal.pgen.1000549 Text en Ma 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
Ma, Li-Jun
Ibrahim, Ashraf S.
Skory, Christopher
Grabherr, Manfred G.
Burger, Gertraud
Butler, Margi
Elias, Marek
Idnurm, Alexander
Lang, B. Franz
Sone, Teruo
Abe, Ayumi
Calvo, Sarah E.
Corrochano, Luis M.
Engels, Reinhard
Fu, Jianmin
Hansberg, Wilhelm
Kim, Jung-Mi
Kodira, Chinnappa D.
Koehrsen, Michael J.
Liu, Bo
Miranda-Saavedra, Diego
O'Leary, Sinead
Ortiz-Castellanos, Lucila
Poulter, Russell
Rodriguez-Romero, Julio
Ruiz-Herrera, José
Shen, Yao-Qing
Zeng, Qiandong
Galagan, James
Birren, Bruce W.
Cuomo, Christina A.
Wickes, Brian L.
Genomic Analysis of the Basal Lineage Fungus Rhizopus oryzae Reveals a Whole-Genome Duplication
title Genomic Analysis of the Basal Lineage Fungus Rhizopus oryzae Reveals a Whole-Genome Duplication
title_full Genomic Analysis of the Basal Lineage Fungus Rhizopus oryzae Reveals a Whole-Genome Duplication
title_fullStr Genomic Analysis of the Basal Lineage Fungus Rhizopus oryzae Reveals a Whole-Genome Duplication
title_full_unstemmed Genomic Analysis of the Basal Lineage Fungus Rhizopus oryzae Reveals a Whole-Genome Duplication
title_short Genomic Analysis of the Basal Lineage Fungus Rhizopus oryzae Reveals a Whole-Genome Duplication
title_sort genomic analysis of the basal lineage fungus rhizopus oryzae reveals a whole-genome duplication
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2699053/
https://www.ncbi.nlm.nih.gov/pubmed/19578406
http://dx.doi.org/10.1371/journal.pgen.1000549
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