Cargando…

101 Dothideomycetes genomes: A test case for predicting lifestyles and emergence of pathogens

Dothideomycetes is the largest class of kingdom Fungi and comprises an incredible diversity of lifestyles, many of which have evolved multiple times. Plant pathogens represent a major ecological niche of the class Dothideomycetes and they are known to infect most major food crops and feedstocks for...

Descripción completa

Detalles Bibliográficos
Autores principales: Haridas, S., Albert, R., Binder, M., Bloem, J., LaButti, K., Salamov, A., Andreopoulos, B., Baker, S.E., Barry, K., Bills, G., Bluhm, B.H., Cannon, C., Castanera, R., Culley, D.E., Daum, C., Ezra, D., González, J.B., Henrissat, B., Kuo, A., Liang, C., Lipzen, A., Lutzoni, F., Magnuson, J., Mondo, S.J., Nolan, M., Ohm, R.A., Pangilinan, J., Park, H.-J., Ramírez, L., Alfaro, M., Sun, H., Tritt, A., Yoshinaga, Y., Zwiers, L.-H., Turgeon, B.G., Goodwin, S.B., Spatafora, J.W., Crous, P.W., Grigoriev, I.V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Westerdijk Fungal Biodiversity Institute 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7082219/
https://www.ncbi.nlm.nih.gov/pubmed/32206138
http://dx.doi.org/10.1016/j.simyco.2020.01.003
_version_ 1783508304731832320
author Haridas, S.
Albert, R.
Binder, M.
Bloem, J.
LaButti, K.
Salamov, A.
Andreopoulos, B.
Baker, S.E.
Barry, K.
Bills, G.
Bluhm, B.H.
Cannon, C.
Castanera, R.
Culley, D.E.
Daum, C.
Ezra, D.
González, J.B.
Henrissat, B.
Kuo, A.
Liang, C.
Lipzen, A.
Lutzoni, F.
Magnuson, J.
Mondo, S.J.
Nolan, M.
Ohm, R.A.
Pangilinan, J.
Park, H.-J.
Ramírez, L.
Alfaro, M.
Sun, H.
Tritt, A.
Yoshinaga, Y.
Zwiers, L.-H.
Turgeon, B.G.
Goodwin, S.B.
Spatafora, J.W.
Crous, P.W.
Grigoriev, I.V.
author_facet Haridas, S.
Albert, R.
Binder, M.
Bloem, J.
LaButti, K.
Salamov, A.
Andreopoulos, B.
Baker, S.E.
Barry, K.
Bills, G.
Bluhm, B.H.
Cannon, C.
Castanera, R.
Culley, D.E.
Daum, C.
Ezra, D.
González, J.B.
Henrissat, B.
Kuo, A.
Liang, C.
Lipzen, A.
Lutzoni, F.
Magnuson, J.
Mondo, S.J.
Nolan, M.
Ohm, R.A.
Pangilinan, J.
Park, H.-J.
Ramírez, L.
Alfaro, M.
Sun, H.
Tritt, A.
Yoshinaga, Y.
Zwiers, L.-H.
Turgeon, B.G.
Goodwin, S.B.
Spatafora, J.W.
Crous, P.W.
Grigoriev, I.V.
author_sort Haridas, S.
collection PubMed
description Dothideomycetes is the largest class of kingdom Fungi and comprises an incredible diversity of lifestyles, many of which have evolved multiple times. Plant pathogens represent a major ecological niche of the class Dothideomycetes and they are known to infect most major food crops and feedstocks for biomass and biofuel production. Studying the ecology and evolution of Dothideomycetes has significant implications for our fundamental understanding of fungal evolution, their adaptation to stress and host specificity, and practical implications with regard to the effects of climate change and on the food, feed, and livestock elements of the agro-economy. In this study, we present the first large-scale, whole-genome comparison of 101 Dothideomycetes introducing 55 newly sequenced species. The availability of whole-genome data produced a high-confidence phylogeny leading to reclassification of 25 organisms, provided a clearer picture of the relationships among the various families, and indicated that pathogenicity evolved multiple times within this class. We also identified gene family expansions and contractions across the Dothideomycetes phylogeny linked to ecological niches providing insights into genome evolution and adaptation across this group. Using machine-learning methods we classified fungi into lifestyle classes with >95 % accuracy and identified a small number of gene families that positively correlated with these distinctions. This can become a valuable tool for genome-based prediction of species lifestyle, especially for rarely seen and poorly studied species.
format Online
Article
Text
id pubmed-7082219
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher Westerdijk Fungal Biodiversity Institute
record_format MEDLINE/PubMed
spelling pubmed-70822192020-03-23 101 Dothideomycetes genomes: A test case for predicting lifestyles and emergence of pathogens Haridas, S. Albert, R. Binder, M. Bloem, J. LaButti, K. Salamov, A. Andreopoulos, B. Baker, S.E. Barry, K. Bills, G. Bluhm, B.H. Cannon, C. Castanera, R. Culley, D.E. Daum, C. Ezra, D. González, J.B. Henrissat, B. Kuo, A. Liang, C. Lipzen, A. Lutzoni, F. Magnuson, J. Mondo, S.J. Nolan, M. Ohm, R.A. Pangilinan, J. Park, H.-J. Ramírez, L. Alfaro, M. Sun, H. Tritt, A. Yoshinaga, Y. Zwiers, L.-H. Turgeon, B.G. Goodwin, S.B. Spatafora, J.W. Crous, P.W. Grigoriev, I.V. Stud Mycol Research Paper Dothideomycetes is the largest class of kingdom Fungi and comprises an incredible diversity of lifestyles, many of which have evolved multiple times. Plant pathogens represent a major ecological niche of the class Dothideomycetes and they are known to infect most major food crops and feedstocks for biomass and biofuel production. Studying the ecology and evolution of Dothideomycetes has significant implications for our fundamental understanding of fungal evolution, their adaptation to stress and host specificity, and practical implications with regard to the effects of climate change and on the food, feed, and livestock elements of the agro-economy. In this study, we present the first large-scale, whole-genome comparison of 101 Dothideomycetes introducing 55 newly sequenced species. The availability of whole-genome data produced a high-confidence phylogeny leading to reclassification of 25 organisms, provided a clearer picture of the relationships among the various families, and indicated that pathogenicity evolved multiple times within this class. We also identified gene family expansions and contractions across the Dothideomycetes phylogeny linked to ecological niches providing insights into genome evolution and adaptation across this group. Using machine-learning methods we classified fungi into lifestyle classes with >95 % accuracy and identified a small number of gene families that positively correlated with these distinctions. This can become a valuable tool for genome-based prediction of species lifestyle, especially for rarely seen and poorly studied species. Westerdijk Fungal Biodiversity Institute 2020-02-01 /pmc/articles/PMC7082219/ /pubmed/32206138 http://dx.doi.org/10.1016/j.simyco.2020.01.003 Text en © 2020 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Paper
Haridas, S.
Albert, R.
Binder, M.
Bloem, J.
LaButti, K.
Salamov, A.
Andreopoulos, B.
Baker, S.E.
Barry, K.
Bills, G.
Bluhm, B.H.
Cannon, C.
Castanera, R.
Culley, D.E.
Daum, C.
Ezra, D.
González, J.B.
Henrissat, B.
Kuo, A.
Liang, C.
Lipzen, A.
Lutzoni, F.
Magnuson, J.
Mondo, S.J.
Nolan, M.
Ohm, R.A.
Pangilinan, J.
Park, H.-J.
Ramírez, L.
Alfaro, M.
Sun, H.
Tritt, A.
Yoshinaga, Y.
Zwiers, L.-H.
Turgeon, B.G.
Goodwin, S.B.
Spatafora, J.W.
Crous, P.W.
Grigoriev, I.V.
101 Dothideomycetes genomes: A test case for predicting lifestyles and emergence of pathogens
title 101 Dothideomycetes genomes: A test case for predicting lifestyles and emergence of pathogens
title_full 101 Dothideomycetes genomes: A test case for predicting lifestyles and emergence of pathogens
title_fullStr 101 Dothideomycetes genomes: A test case for predicting lifestyles and emergence of pathogens
title_full_unstemmed 101 Dothideomycetes genomes: A test case for predicting lifestyles and emergence of pathogens
title_short 101 Dothideomycetes genomes: A test case for predicting lifestyles and emergence of pathogens
title_sort 101 dothideomycetes genomes: a test case for predicting lifestyles and emergence of pathogens
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7082219/
https://www.ncbi.nlm.nih.gov/pubmed/32206138
http://dx.doi.org/10.1016/j.simyco.2020.01.003
work_keys_str_mv AT haridass 101dothideomycetesgenomesatestcaseforpredictinglifestylesandemergenceofpathogens
AT albertr 101dothideomycetesgenomesatestcaseforpredictinglifestylesandemergenceofpathogens
AT binderm 101dothideomycetesgenomesatestcaseforpredictinglifestylesandemergenceofpathogens
AT bloemj 101dothideomycetesgenomesatestcaseforpredictinglifestylesandemergenceofpathogens
AT labuttik 101dothideomycetesgenomesatestcaseforpredictinglifestylesandemergenceofpathogens
AT salamova 101dothideomycetesgenomesatestcaseforpredictinglifestylesandemergenceofpathogens
AT andreopoulosb 101dothideomycetesgenomesatestcaseforpredictinglifestylesandemergenceofpathogens
AT bakerse 101dothideomycetesgenomesatestcaseforpredictinglifestylesandemergenceofpathogens
AT barryk 101dothideomycetesgenomesatestcaseforpredictinglifestylesandemergenceofpathogens
AT billsg 101dothideomycetesgenomesatestcaseforpredictinglifestylesandemergenceofpathogens
AT bluhmbh 101dothideomycetesgenomesatestcaseforpredictinglifestylesandemergenceofpathogens
AT cannonc 101dothideomycetesgenomesatestcaseforpredictinglifestylesandemergenceofpathogens
AT castanerar 101dothideomycetesgenomesatestcaseforpredictinglifestylesandemergenceofpathogens
AT culleyde 101dothideomycetesgenomesatestcaseforpredictinglifestylesandemergenceofpathogens
AT daumc 101dothideomycetesgenomesatestcaseforpredictinglifestylesandemergenceofpathogens
AT ezrad 101dothideomycetesgenomesatestcaseforpredictinglifestylesandemergenceofpathogens
AT gonzalezjb 101dothideomycetesgenomesatestcaseforpredictinglifestylesandemergenceofpathogens
AT henrissatb 101dothideomycetesgenomesatestcaseforpredictinglifestylesandemergenceofpathogens
AT kuoa 101dothideomycetesgenomesatestcaseforpredictinglifestylesandemergenceofpathogens
AT liangc 101dothideomycetesgenomesatestcaseforpredictinglifestylesandemergenceofpathogens
AT lipzena 101dothideomycetesgenomesatestcaseforpredictinglifestylesandemergenceofpathogens
AT lutzonif 101dothideomycetesgenomesatestcaseforpredictinglifestylesandemergenceofpathogens
AT magnusonj 101dothideomycetesgenomesatestcaseforpredictinglifestylesandemergenceofpathogens
AT mondosj 101dothideomycetesgenomesatestcaseforpredictinglifestylesandemergenceofpathogens
AT nolanm 101dothideomycetesgenomesatestcaseforpredictinglifestylesandemergenceofpathogens
AT ohmra 101dothideomycetesgenomesatestcaseforpredictinglifestylesandemergenceofpathogens
AT pangilinanj 101dothideomycetesgenomesatestcaseforpredictinglifestylesandemergenceofpathogens
AT parkhj 101dothideomycetesgenomesatestcaseforpredictinglifestylesandemergenceofpathogens
AT ramirezl 101dothideomycetesgenomesatestcaseforpredictinglifestylesandemergenceofpathogens
AT alfarom 101dothideomycetesgenomesatestcaseforpredictinglifestylesandemergenceofpathogens
AT sunh 101dothideomycetesgenomesatestcaseforpredictinglifestylesandemergenceofpathogens
AT tritta 101dothideomycetesgenomesatestcaseforpredictinglifestylesandemergenceofpathogens
AT yoshinagay 101dothideomycetesgenomesatestcaseforpredictinglifestylesandemergenceofpathogens
AT zwierslh 101dothideomycetesgenomesatestcaseforpredictinglifestylesandemergenceofpathogens
AT turgeonbg 101dothideomycetesgenomesatestcaseforpredictinglifestylesandemergenceofpathogens
AT goodwinsb 101dothideomycetesgenomesatestcaseforpredictinglifestylesandemergenceofpathogens
AT spataforajw 101dothideomycetesgenomesatestcaseforpredictinglifestylesandemergenceofpathogens
AT crouspw 101dothideomycetesgenomesatestcaseforpredictinglifestylesandemergenceofpathogens
AT grigorieviv 101dothideomycetesgenomesatestcaseforpredictinglifestylesandemergenceofpathogens