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Serratia liquefaciens FG3 isolated from a metallophyte plant sheds light on the evolution and mechanisms of adaptive traits in extreme environments

Serratia liquefaciens strain FG3 (SlFG3), isolated from the flower of Stachytarpheta glabra in the Brazilian ferruginous fields, has distinctive genomic, adaptive, and biotechnological potential. Herein, using a combination of genomics and molecular approaches, we unlocked the evolution of the adapt...

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Autores principales: Caneschi, Washington Luiz, Sanchez, Angélica Bianchini, Felestrino, Érica Barbosa, Lemes, Camila Gracyelle de Carvalho, Cordeiro, Isabella Ferreira, Fonseca, Natasha Peixoto, Villa, Morghana Marina, Vieira, Izadora Tabuso, Moraes, Lauro Ângelo Gonçalves, Assis, Renata de Almeida Barbosa, do Carmo, Flávio Fonseca, Kamino, Luciana Hiromi Yoshino, Silva, Robson Soares, Ferro, Jesus Aparecido, Ferro, Maria Inês Tiraboschi, Ferreira, Rafael Marini, Santos, Vera Lúcia, Silva, Ubiana de Cássia Mourão, Almeida, Nalvo Franco, Varani, Alessandro de Mello, Garcia, Camila Carrião Machado, Setubal, João Carlos, Moreira, Leandro Marcio
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6884506/
https://www.ncbi.nlm.nih.gov/pubmed/31784663
http://dx.doi.org/10.1038/s41598-019-54601-4
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author Caneschi, Washington Luiz
Sanchez, Angélica Bianchini
Felestrino, Érica Barbosa
Lemes, Camila Gracyelle de Carvalho
Cordeiro, Isabella Ferreira
Fonseca, Natasha Peixoto
Villa, Morghana Marina
Vieira, Izadora Tabuso
Moraes, Lauro Ângelo Gonçalves
Assis, Renata de Almeida Barbosa
do Carmo, Flávio Fonseca
Kamino, Luciana Hiromi Yoshino
Silva, Robson Soares
Ferro, Jesus Aparecido
Ferro, Maria Inês Tiraboschi
Ferreira, Rafael Marini
Santos, Vera Lúcia
Silva, Ubiana de Cássia Mourão
Almeida, Nalvo Franco
Varani, Alessandro de Mello
Garcia, Camila Carrião Machado
Setubal, João Carlos
Moreira, Leandro Marcio
author_facet Caneschi, Washington Luiz
Sanchez, Angélica Bianchini
Felestrino, Érica Barbosa
Lemes, Camila Gracyelle de Carvalho
Cordeiro, Isabella Ferreira
Fonseca, Natasha Peixoto
Villa, Morghana Marina
Vieira, Izadora Tabuso
Moraes, Lauro Ângelo Gonçalves
Assis, Renata de Almeida Barbosa
do Carmo, Flávio Fonseca
Kamino, Luciana Hiromi Yoshino
Silva, Robson Soares
Ferro, Jesus Aparecido
Ferro, Maria Inês Tiraboschi
Ferreira, Rafael Marini
Santos, Vera Lúcia
Silva, Ubiana de Cássia Mourão
Almeida, Nalvo Franco
Varani, Alessandro de Mello
Garcia, Camila Carrião Machado
Setubal, João Carlos
Moreira, Leandro Marcio
author_sort Caneschi, Washington Luiz
collection PubMed
description Serratia liquefaciens strain FG3 (SlFG3), isolated from the flower of Stachytarpheta glabra in the Brazilian ferruginous fields, has distinctive genomic, adaptive, and biotechnological potential. Herein, using a combination of genomics and molecular approaches, we unlocked the evolution of the adaptive traits acquired by S1FG3, which exhibits the second largest chromosome containing the largest conjugative plasmids described for Serratia. Comparative analysis revealed the presence of 18 genomic islands and 311 unique protein families involved in distinct adaptive features. S1FG3 has a diversified repertoire of genes associated with Nonribosomal peptides (NRPs/PKS), a complete and functional cluster related to cellulose synthesis, and an extensive and functional repertoire of oxidative metabolism genes. In addition, S1FG3 possesses a complete pathway related to protocatecuate and chloroaromatic degradation, and a complete repertoire of genes related to DNA repair and protection that includes mechanisms related to UV light tolerance, redox process resistance, and a laterally acquired capacity to protect DNA using phosphorothioation. These findings summarize that SlFG3 is well-adapted to different biotic and abiotic stress situations imposed by extreme conditions associated with ferruginous fields, unlocking the impact of the lateral gene transfer to adjust the genome for extreme environments, and providing insight into the evolution of prokaryotes.
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spelling pubmed-68845062019-12-06 Serratia liquefaciens FG3 isolated from a metallophyte plant sheds light on the evolution and mechanisms of adaptive traits in extreme environments Caneschi, Washington Luiz Sanchez, Angélica Bianchini Felestrino, Érica Barbosa Lemes, Camila Gracyelle de Carvalho Cordeiro, Isabella Ferreira Fonseca, Natasha Peixoto Villa, Morghana Marina Vieira, Izadora Tabuso Moraes, Lauro Ângelo Gonçalves Assis, Renata de Almeida Barbosa do Carmo, Flávio Fonseca Kamino, Luciana Hiromi Yoshino Silva, Robson Soares Ferro, Jesus Aparecido Ferro, Maria Inês Tiraboschi Ferreira, Rafael Marini Santos, Vera Lúcia Silva, Ubiana de Cássia Mourão Almeida, Nalvo Franco Varani, Alessandro de Mello Garcia, Camila Carrião Machado Setubal, João Carlos Moreira, Leandro Marcio Sci Rep Article Serratia liquefaciens strain FG3 (SlFG3), isolated from the flower of Stachytarpheta glabra in the Brazilian ferruginous fields, has distinctive genomic, adaptive, and biotechnological potential. Herein, using a combination of genomics and molecular approaches, we unlocked the evolution of the adaptive traits acquired by S1FG3, which exhibits the second largest chromosome containing the largest conjugative plasmids described for Serratia. Comparative analysis revealed the presence of 18 genomic islands and 311 unique protein families involved in distinct adaptive features. S1FG3 has a diversified repertoire of genes associated with Nonribosomal peptides (NRPs/PKS), a complete and functional cluster related to cellulose synthesis, and an extensive and functional repertoire of oxidative metabolism genes. In addition, S1FG3 possesses a complete pathway related to protocatecuate and chloroaromatic degradation, and a complete repertoire of genes related to DNA repair and protection that includes mechanisms related to UV light tolerance, redox process resistance, and a laterally acquired capacity to protect DNA using phosphorothioation. These findings summarize that SlFG3 is well-adapted to different biotic and abiotic stress situations imposed by extreme conditions associated with ferruginous fields, unlocking the impact of the lateral gene transfer to adjust the genome for extreme environments, and providing insight into the evolution of prokaryotes. Nature Publishing Group UK 2019-11-29 /pmc/articles/PMC6884506/ /pubmed/31784663 http://dx.doi.org/10.1038/s41598-019-54601-4 Text en © The Author(s) 2019 Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Article
Caneschi, Washington Luiz
Sanchez, Angélica Bianchini
Felestrino, Érica Barbosa
Lemes, Camila Gracyelle de Carvalho
Cordeiro, Isabella Ferreira
Fonseca, Natasha Peixoto
Villa, Morghana Marina
Vieira, Izadora Tabuso
Moraes, Lauro Ângelo Gonçalves
Assis, Renata de Almeida Barbosa
do Carmo, Flávio Fonseca
Kamino, Luciana Hiromi Yoshino
Silva, Robson Soares
Ferro, Jesus Aparecido
Ferro, Maria Inês Tiraboschi
Ferreira, Rafael Marini
Santos, Vera Lúcia
Silva, Ubiana de Cássia Mourão
Almeida, Nalvo Franco
Varani, Alessandro de Mello
Garcia, Camila Carrião Machado
Setubal, João Carlos
Moreira, Leandro Marcio
Serratia liquefaciens FG3 isolated from a metallophyte plant sheds light on the evolution and mechanisms of adaptive traits in extreme environments
title Serratia liquefaciens FG3 isolated from a metallophyte plant sheds light on the evolution and mechanisms of adaptive traits in extreme environments
title_full Serratia liquefaciens FG3 isolated from a metallophyte plant sheds light on the evolution and mechanisms of adaptive traits in extreme environments
title_fullStr Serratia liquefaciens FG3 isolated from a metallophyte plant sheds light on the evolution and mechanisms of adaptive traits in extreme environments
title_full_unstemmed Serratia liquefaciens FG3 isolated from a metallophyte plant sheds light on the evolution and mechanisms of adaptive traits in extreme environments
title_short Serratia liquefaciens FG3 isolated from a metallophyte plant sheds light on the evolution and mechanisms of adaptive traits in extreme environments
title_sort serratia liquefaciens fg3 isolated from a metallophyte plant sheds light on the evolution and mechanisms of adaptive traits in extreme environments
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6884506/
https://www.ncbi.nlm.nih.gov/pubmed/31784663
http://dx.doi.org/10.1038/s41598-019-54601-4
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