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Genomic Aromatic Compound Degradation Potential of Novel Paraburkholderia Species: Paraburkholderia domus sp. nov., Paraburkholderia haematera sp. nov. and Paraburkholderia nemoris sp. nov.
We performed a taxonomic and comparative genomics analysis of 67 novel Paraburkholderia isolates from forest soil. Phylogenetic analysis of the recA gene revealed that these isolates formed a coherent lineage within the genus Paraburkholderia that also included Paraburkholderia aspalathi, Paraburkho...
Autores principales: | , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
MDPI
2021
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8268980/ https://www.ncbi.nlm.nih.gov/pubmed/34209778 http://dx.doi.org/10.3390/ijms22137003 |
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author | Vanwijnsberghe, Sarah Peeters, Charlotte De Ridder, Emmelie Dumolin, Charles Wieme, Anneleen D. Boon, Nico Vandamme, Peter |
author_facet | Vanwijnsberghe, Sarah Peeters, Charlotte De Ridder, Emmelie Dumolin, Charles Wieme, Anneleen D. Boon, Nico Vandamme, Peter |
author_sort | Vanwijnsberghe, Sarah |
collection | PubMed |
description | We performed a taxonomic and comparative genomics analysis of 67 novel Paraburkholderia isolates from forest soil. Phylogenetic analysis of the recA gene revealed that these isolates formed a coherent lineage within the genus Paraburkholderia that also included Paraburkholderia aspalathi, Paraburkholderia madseniana, Paraburkholderia sediminicola, Paraburkholderia caffeinilytica, Paraburkholderia solitsugae and Paraburkholderia elongata and four unidentified soil isolates from earlier studies. A phylogenomic analysis, along with orthoANIu and digital DNA–DNA hybridization calculations revealed that they represented four different species including three novel species and P. aspalathi. Functional genome annotation of the strains revealed several pathways for aromatic compound degradation and the presence of mono- and dioxygenases involved in the degradation of the lignin-derived compounds ferulic acid and p-coumaric acid. This co-occurrence of multiple Paraburkholderia strains and species with the capacity to degrade aromatic compounds in pristine forest soil is likely caused by the abundant presence of aromatic compounds in decomposing plant litter and may highlight a diversity in micro-habitats or be indicative of synergistic relationships. We propose to classify the isolates representing novel species as Paraburkholderia domus with LMG 31832(T) (=CECT 30334) as the type strain, Paraburkholderia nemoris with LMG 31836(T) (=CECT 30335) as the type strain and Paraburkholderia haematera with LMG 31837(T) (=CECT 30336) as the type strain and provide an emended description of Paraburkholderia sediminicola Lim et al. 2008. |
format | Online Article Text |
id | pubmed-8268980 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2021 |
publisher | MDPI |
record_format | MEDLINE/PubMed |
spelling | pubmed-82689802021-07-10 Genomic Aromatic Compound Degradation Potential of Novel Paraburkholderia Species: Paraburkholderia domus sp. nov., Paraburkholderia haematera sp. nov. and Paraburkholderia nemoris sp. nov. Vanwijnsberghe, Sarah Peeters, Charlotte De Ridder, Emmelie Dumolin, Charles Wieme, Anneleen D. Boon, Nico Vandamme, Peter Int J Mol Sci Article We performed a taxonomic and comparative genomics analysis of 67 novel Paraburkholderia isolates from forest soil. Phylogenetic analysis of the recA gene revealed that these isolates formed a coherent lineage within the genus Paraburkholderia that also included Paraburkholderia aspalathi, Paraburkholderia madseniana, Paraburkholderia sediminicola, Paraburkholderia caffeinilytica, Paraburkholderia solitsugae and Paraburkholderia elongata and four unidentified soil isolates from earlier studies. A phylogenomic analysis, along with orthoANIu and digital DNA–DNA hybridization calculations revealed that they represented four different species including three novel species and P. aspalathi. Functional genome annotation of the strains revealed several pathways for aromatic compound degradation and the presence of mono- and dioxygenases involved in the degradation of the lignin-derived compounds ferulic acid and p-coumaric acid. This co-occurrence of multiple Paraburkholderia strains and species with the capacity to degrade aromatic compounds in pristine forest soil is likely caused by the abundant presence of aromatic compounds in decomposing plant litter and may highlight a diversity in micro-habitats or be indicative of synergistic relationships. We propose to classify the isolates representing novel species as Paraburkholderia domus with LMG 31832(T) (=CECT 30334) as the type strain, Paraburkholderia nemoris with LMG 31836(T) (=CECT 30335) as the type strain and Paraburkholderia haematera with LMG 31837(T) (=CECT 30336) as the type strain and provide an emended description of Paraburkholderia sediminicola Lim et al. 2008. MDPI 2021-06-29 /pmc/articles/PMC8268980/ /pubmed/34209778 http://dx.doi.org/10.3390/ijms22137003 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/). |
spellingShingle | Article Vanwijnsberghe, Sarah Peeters, Charlotte De Ridder, Emmelie Dumolin, Charles Wieme, Anneleen D. Boon, Nico Vandamme, Peter Genomic Aromatic Compound Degradation Potential of Novel Paraburkholderia Species: Paraburkholderia domus sp. nov., Paraburkholderia haematera sp. nov. and Paraburkholderia nemoris sp. nov. |
title | Genomic Aromatic Compound Degradation Potential of Novel Paraburkholderia Species: Paraburkholderia domus sp. nov., Paraburkholderia haematera sp. nov. and Paraburkholderia nemoris sp. nov. |
title_full | Genomic Aromatic Compound Degradation Potential of Novel Paraburkholderia Species: Paraburkholderia domus sp. nov., Paraburkholderia haematera sp. nov. and Paraburkholderia nemoris sp. nov. |
title_fullStr | Genomic Aromatic Compound Degradation Potential of Novel Paraburkholderia Species: Paraburkholderia domus sp. nov., Paraburkholderia haematera sp. nov. and Paraburkholderia nemoris sp. nov. |
title_full_unstemmed | Genomic Aromatic Compound Degradation Potential of Novel Paraburkholderia Species: Paraburkholderia domus sp. nov., Paraburkholderia haematera sp. nov. and Paraburkholderia nemoris sp. nov. |
title_short | Genomic Aromatic Compound Degradation Potential of Novel Paraburkholderia Species: Paraburkholderia domus sp. nov., Paraburkholderia haematera sp. nov. and Paraburkholderia nemoris sp. nov. |
title_sort | genomic aromatic compound degradation potential of novel paraburkholderia species: paraburkholderia domus sp. nov., paraburkholderia haematera sp. nov. and paraburkholderia nemoris sp. nov. |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8268980/ https://www.ncbi.nlm.nih.gov/pubmed/34209778 http://dx.doi.org/10.3390/ijms22137003 |
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