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Cryptosporulation in Kurthia spp. forces a rethinking of asporogenesis in Firmicutes

Endosporulation is a complex morphophysiological process resulting in a more resistant cellular structure that is produced within the mother cell and is called endospore. Endosporulation evolved in the common ancestor of Firmicutes, but it is lost in descendant lineages classified as asporogenic. Wh...

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Autores principales: Fatton, Mathilda, Filippidou, Sevasti, Junier, Thomas, Cailleau, Guillaume, Berge, Matthieu, Poppleton, Daniel, Blum, Thorsten B., Kaminek, Marek, Odriozola, Adolfo, Blom, Jochen, Johnson, Shannon L., Abrahams, Jan Pieter, Chain, Patrick S., Gribaldo, Simonetta, Tocheva, Elitza I., Zuber, Benoît, Viollier, Patrick H., Junier, Pilar
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley & Sons, Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10086788/
https://www.ncbi.nlm.nih.gov/pubmed/36530021
http://dx.doi.org/10.1111/1462-2920.16145
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author Fatton, Mathilda
Filippidou, Sevasti
Junier, Thomas
Cailleau, Guillaume
Berge, Matthieu
Poppleton, Daniel
Blum, Thorsten B.
Kaminek, Marek
Odriozola, Adolfo
Blom, Jochen
Johnson, Shannon L.
Abrahams, Jan Pieter
Chain, Patrick S.
Gribaldo, Simonetta
Tocheva, Elitza I.
Zuber, Benoît
Viollier, Patrick H.
Junier, Pilar
author_facet Fatton, Mathilda
Filippidou, Sevasti
Junier, Thomas
Cailleau, Guillaume
Berge, Matthieu
Poppleton, Daniel
Blum, Thorsten B.
Kaminek, Marek
Odriozola, Adolfo
Blom, Jochen
Johnson, Shannon L.
Abrahams, Jan Pieter
Chain, Patrick S.
Gribaldo, Simonetta
Tocheva, Elitza I.
Zuber, Benoît
Viollier, Patrick H.
Junier, Pilar
author_sort Fatton, Mathilda
collection PubMed
description Endosporulation is a complex morphophysiological process resulting in a more resistant cellular structure that is produced within the mother cell and is called endospore. Endosporulation evolved in the common ancestor of Firmicutes, but it is lost in descendant lineages classified as asporogenic. While Kurthia spp. is considered to comprise only asporogenic species, we show here that strain 11kri321, which was isolated from an oligotrophic geothermal reservoir, produces phase‐bright spore‐like structures. Phylogenomics of strain 11kri321 and other Kurthia strains reveals little similarity to genetic determinants of sporulation known from endosporulating Bacilli. However, morphological hallmarks of endosporulation were observed in two of the four Kurthia strains tested, resulting in spore‐like structures (cryptospores). In contrast to classic endospores, these cryptospores did not protect against heat or UV damage and successive sub‐culturing led to the loss of the cryptosporulating phenotype. Our findings imply that a cryptosporulation phenotype may have been prevalent and subsequently lost by laboratory culturing in other Firmicutes currently considered as asporogenic. Cryptosporulation might thus represent an ancestral but unstable and adaptive developmental state in Firmicutes that is under selection under harsh environmental conditions.
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spelling pubmed-100867882023-04-12 Cryptosporulation in Kurthia spp. forces a rethinking of asporogenesis in Firmicutes Fatton, Mathilda Filippidou, Sevasti Junier, Thomas Cailleau, Guillaume Berge, Matthieu Poppleton, Daniel Blum, Thorsten B. Kaminek, Marek Odriozola, Adolfo Blom, Jochen Johnson, Shannon L. Abrahams, Jan Pieter Chain, Patrick S. Gribaldo, Simonetta Tocheva, Elitza I. Zuber, Benoît Viollier, Patrick H. Junier, Pilar Environ Microbiol Research Articles Endosporulation is a complex morphophysiological process resulting in a more resistant cellular structure that is produced within the mother cell and is called endospore. Endosporulation evolved in the common ancestor of Firmicutes, but it is lost in descendant lineages classified as asporogenic. While Kurthia spp. is considered to comprise only asporogenic species, we show here that strain 11kri321, which was isolated from an oligotrophic geothermal reservoir, produces phase‐bright spore‐like structures. Phylogenomics of strain 11kri321 and other Kurthia strains reveals little similarity to genetic determinants of sporulation known from endosporulating Bacilli. However, morphological hallmarks of endosporulation were observed in two of the four Kurthia strains tested, resulting in spore‐like structures (cryptospores). In contrast to classic endospores, these cryptospores did not protect against heat or UV damage and successive sub‐culturing led to the loss of the cryptosporulating phenotype. Our findings imply that a cryptosporulation phenotype may have been prevalent and subsequently lost by laboratory culturing in other Firmicutes currently considered as asporogenic. Cryptosporulation might thus represent an ancestral but unstable and adaptive developmental state in Firmicutes that is under selection under harsh environmental conditions. John Wiley & Sons, Inc. 2022-08-17 2022-12 /pmc/articles/PMC10086788/ /pubmed/36530021 http://dx.doi.org/10.1111/1462-2920.16145 Text en © 2022 The Authors. Environmental Microbiology published by Society for Applied Microbiology and John Wiley & Sons Ltd. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ (https://creativecommons.org/licenses/by-nc-nd/4.0/) License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Research Articles
Fatton, Mathilda
Filippidou, Sevasti
Junier, Thomas
Cailleau, Guillaume
Berge, Matthieu
Poppleton, Daniel
Blum, Thorsten B.
Kaminek, Marek
Odriozola, Adolfo
Blom, Jochen
Johnson, Shannon L.
Abrahams, Jan Pieter
Chain, Patrick S.
Gribaldo, Simonetta
Tocheva, Elitza I.
Zuber, Benoît
Viollier, Patrick H.
Junier, Pilar
Cryptosporulation in Kurthia spp. forces a rethinking of asporogenesis in Firmicutes
title Cryptosporulation in Kurthia spp. forces a rethinking of asporogenesis in Firmicutes
title_full Cryptosporulation in Kurthia spp. forces a rethinking of asporogenesis in Firmicutes
title_fullStr Cryptosporulation in Kurthia spp. forces a rethinking of asporogenesis in Firmicutes
title_full_unstemmed Cryptosporulation in Kurthia spp. forces a rethinking of asporogenesis in Firmicutes
title_short Cryptosporulation in Kurthia spp. forces a rethinking of asporogenesis in Firmicutes
title_sort cryptosporulation in kurthia spp. forces a rethinking of asporogenesis in firmicutes
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10086788/
https://www.ncbi.nlm.nih.gov/pubmed/36530021
http://dx.doi.org/10.1111/1462-2920.16145
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