Cargando…

Evolution of zygomycete secretomes and the origins of terrestrial fungal ecologies

Fungi survive in diverse ecological niches by secreting proteins and other molecules into the environment to acquire food and interact with various biotic and abiotic stressors. Fungal secretome content is, therefore, believed to be tightly linked to fungal ecologies. We sampled 132 genomes from the...

Descripción completa

Detalles Bibliográficos
Autores principales: Chang, Ying, Wang, Yan, Mondo, Stephen, Ahrendt, Steven, Andreopoulos, William, Barry, Kerrie, Beard, Jeff, Benny, Gerald L., Blankenship, Sabrina, Bonito, Gregory, Cuomo, Christina, Desiro, Alessandro, Gervers, Kyle A., Hundley, Hope, Kuo, Alan, LaButti, Kurt, Lang, B. Franz, Lipzen, Anna, O’Donnell, Kerry, Pangilinan, Jasmyn, Reynolds, Nicole, Sandor, Laura, Smith, Matthew E., Tsang, Adrian, Grigoriev, Igor V., Stajich, Jason E., Spatafora, Joseph W.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9391592/
https://www.ncbi.nlm.nih.gov/pubmed/35996588
http://dx.doi.org/10.1016/j.isci.2022.104840
_version_ 1784770882850258944
author Chang, Ying
Wang, Yan
Mondo, Stephen
Ahrendt, Steven
Andreopoulos, William
Barry, Kerrie
Beard, Jeff
Benny, Gerald L.
Blankenship, Sabrina
Bonito, Gregory
Cuomo, Christina
Desiro, Alessandro
Gervers, Kyle A.
Hundley, Hope
Kuo, Alan
LaButti, Kurt
Lang, B. Franz
Lipzen, Anna
O’Donnell, Kerry
Pangilinan, Jasmyn
Reynolds, Nicole
Sandor, Laura
Smith, Matthew E.
Tsang, Adrian
Grigoriev, Igor V.
Stajich, Jason E.
Spatafora, Joseph W.
author_facet Chang, Ying
Wang, Yan
Mondo, Stephen
Ahrendt, Steven
Andreopoulos, William
Barry, Kerrie
Beard, Jeff
Benny, Gerald L.
Blankenship, Sabrina
Bonito, Gregory
Cuomo, Christina
Desiro, Alessandro
Gervers, Kyle A.
Hundley, Hope
Kuo, Alan
LaButti, Kurt
Lang, B. Franz
Lipzen, Anna
O’Donnell, Kerry
Pangilinan, Jasmyn
Reynolds, Nicole
Sandor, Laura
Smith, Matthew E.
Tsang, Adrian
Grigoriev, Igor V.
Stajich, Jason E.
Spatafora, Joseph W.
author_sort Chang, Ying
collection PubMed
description Fungi survive in diverse ecological niches by secreting proteins and other molecules into the environment to acquire food and interact with various biotic and abiotic stressors. Fungal secretome content is, therefore, believed to be tightly linked to fungal ecologies. We sampled 132 genomes from the early-diverging terrestrial fungal lineage zygomycetes (Mucoromycota and Zoopagomycota) and characterized their secretome composition. Our analyses revealed that phylogeny played an important role in shaping the secretome composition of zygomycete fungi with trophic mode contributing a smaller amount. Reconstruction of the evolution of secreted digestive enzymes revealed lineage-specific expansions, indicating that Mucoromycota and Zoopagomycota followed different trajectories early in their evolutionary history. We identified the presence of multiple pathogenicity-related proteins in the lineages known as saprotrophs, suggesting that either the ecologies of these fungi are incompletely known, and/or that these pathogenicity-related proteins have important functions associated with saprotrophic ecologies, both of which invite further investigation.
format Online
Article
Text
id pubmed-9391592
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Elsevier
record_format MEDLINE/PubMed
spelling pubmed-93915922022-08-21 Evolution of zygomycete secretomes and the origins of terrestrial fungal ecologies Chang, Ying Wang, Yan Mondo, Stephen Ahrendt, Steven Andreopoulos, William Barry, Kerrie Beard, Jeff Benny, Gerald L. Blankenship, Sabrina Bonito, Gregory Cuomo, Christina Desiro, Alessandro Gervers, Kyle A. Hundley, Hope Kuo, Alan LaButti, Kurt Lang, B. Franz Lipzen, Anna O’Donnell, Kerry Pangilinan, Jasmyn Reynolds, Nicole Sandor, Laura Smith, Matthew E. Tsang, Adrian Grigoriev, Igor V. Stajich, Jason E. Spatafora, Joseph W. iScience Article Fungi survive in diverse ecological niches by secreting proteins and other molecules into the environment to acquire food and interact with various biotic and abiotic stressors. Fungal secretome content is, therefore, believed to be tightly linked to fungal ecologies. We sampled 132 genomes from the early-diverging terrestrial fungal lineage zygomycetes (Mucoromycota and Zoopagomycota) and characterized their secretome composition. Our analyses revealed that phylogeny played an important role in shaping the secretome composition of zygomycete fungi with trophic mode contributing a smaller amount. Reconstruction of the evolution of secreted digestive enzymes revealed lineage-specific expansions, indicating that Mucoromycota and Zoopagomycota followed different trajectories early in their evolutionary history. We identified the presence of multiple pathogenicity-related proteins in the lineages known as saprotrophs, suggesting that either the ecologies of these fungi are incompletely known, and/or that these pathogenicity-related proteins have important functions associated with saprotrophic ecologies, both of which invite further investigation. Elsevier 2022-08-02 /pmc/articles/PMC9391592/ /pubmed/35996588 http://dx.doi.org/10.1016/j.isci.2022.104840 Text en © 2022 The Author(s) 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 Article
Chang, Ying
Wang, Yan
Mondo, Stephen
Ahrendt, Steven
Andreopoulos, William
Barry, Kerrie
Beard, Jeff
Benny, Gerald L.
Blankenship, Sabrina
Bonito, Gregory
Cuomo, Christina
Desiro, Alessandro
Gervers, Kyle A.
Hundley, Hope
Kuo, Alan
LaButti, Kurt
Lang, B. Franz
Lipzen, Anna
O’Donnell, Kerry
Pangilinan, Jasmyn
Reynolds, Nicole
Sandor, Laura
Smith, Matthew E.
Tsang, Adrian
Grigoriev, Igor V.
Stajich, Jason E.
Spatafora, Joseph W.
Evolution of zygomycete secretomes and the origins of terrestrial fungal ecologies
title Evolution of zygomycete secretomes and the origins of terrestrial fungal ecologies
title_full Evolution of zygomycete secretomes and the origins of terrestrial fungal ecologies
title_fullStr Evolution of zygomycete secretomes and the origins of terrestrial fungal ecologies
title_full_unstemmed Evolution of zygomycete secretomes and the origins of terrestrial fungal ecologies
title_short Evolution of zygomycete secretomes and the origins of terrestrial fungal ecologies
title_sort evolution of zygomycete secretomes and the origins of terrestrial fungal ecologies
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9391592/
https://www.ncbi.nlm.nih.gov/pubmed/35996588
http://dx.doi.org/10.1016/j.isci.2022.104840
work_keys_str_mv AT changying evolutionofzygomycetesecretomesandtheoriginsofterrestrialfungalecologies
AT wangyan evolutionofzygomycetesecretomesandtheoriginsofterrestrialfungalecologies
AT mondostephen evolutionofzygomycetesecretomesandtheoriginsofterrestrialfungalecologies
AT ahrendtsteven evolutionofzygomycetesecretomesandtheoriginsofterrestrialfungalecologies
AT andreopouloswilliam evolutionofzygomycetesecretomesandtheoriginsofterrestrialfungalecologies
AT barrykerrie evolutionofzygomycetesecretomesandtheoriginsofterrestrialfungalecologies
AT beardjeff evolutionofzygomycetesecretomesandtheoriginsofterrestrialfungalecologies
AT bennygeraldl evolutionofzygomycetesecretomesandtheoriginsofterrestrialfungalecologies
AT blankenshipsabrina evolutionofzygomycetesecretomesandtheoriginsofterrestrialfungalecologies
AT bonitogregory evolutionofzygomycetesecretomesandtheoriginsofterrestrialfungalecologies
AT cuomochristina evolutionofzygomycetesecretomesandtheoriginsofterrestrialfungalecologies
AT desiroalessandro evolutionofzygomycetesecretomesandtheoriginsofterrestrialfungalecologies
AT gerverskylea evolutionofzygomycetesecretomesandtheoriginsofterrestrialfungalecologies
AT hundleyhope evolutionofzygomycetesecretomesandtheoriginsofterrestrialfungalecologies
AT kuoalan evolutionofzygomycetesecretomesandtheoriginsofterrestrialfungalecologies
AT labuttikurt evolutionofzygomycetesecretomesandtheoriginsofterrestrialfungalecologies
AT langbfranz evolutionofzygomycetesecretomesandtheoriginsofterrestrialfungalecologies
AT lipzenanna evolutionofzygomycetesecretomesandtheoriginsofterrestrialfungalecologies
AT odonnellkerry evolutionofzygomycetesecretomesandtheoriginsofterrestrialfungalecologies
AT pangilinanjasmyn evolutionofzygomycetesecretomesandtheoriginsofterrestrialfungalecologies
AT reynoldsnicole evolutionofzygomycetesecretomesandtheoriginsofterrestrialfungalecologies
AT sandorlaura evolutionofzygomycetesecretomesandtheoriginsofterrestrialfungalecologies
AT smithmatthewe evolutionofzygomycetesecretomesandtheoriginsofterrestrialfungalecologies
AT tsangadrian evolutionofzygomycetesecretomesandtheoriginsofterrestrialfungalecologies
AT grigorievigorv evolutionofzygomycetesecretomesandtheoriginsofterrestrialfungalecologies
AT stajichjasone evolutionofzygomycetesecretomesandtheoriginsofterrestrialfungalecologies
AT spataforajosephw evolutionofzygomycetesecretomesandtheoriginsofterrestrialfungalecologies