Cargando…

Newly discovered Asgard archaea Hermodarchaeota potentially degrade alkanes and aromatics via alkyl/benzyl-succinate synthase and benzoyl-CoA pathway

Asgard archaea are widely distributed in anaerobic environments. Previous studies revealed the potential capability of Asgard archaea to utilize various organic substrates including proteins, carbohydrates, fatty acids, amino acids and hydrocarbons, suggesting that Asgard archaea play an important r...

Descripción completa

Detalles Bibliográficos
Autores principales: Zhang, Jia-Wei, Dong, Hong-Po, Hou, Li-Jun, Liu, Yang, Ou, Ya-Fei, Zheng, Yan-Ling, Han, Ping, Liang, Xia, Yin, Guo-Yu, Wu, Dian-Ming, Liu, Min, Li, Meng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8163825/
https://www.ncbi.nlm.nih.gov/pubmed/33452484
http://dx.doi.org/10.1038/s41396-020-00890-x
_version_ 1783700987173666816
author Zhang, Jia-Wei
Dong, Hong-Po
Hou, Li-Jun
Liu, Yang
Ou, Ya-Fei
Zheng, Yan-Ling
Han, Ping
Liang, Xia
Yin, Guo-Yu
Wu, Dian-Ming
Liu, Min
Li, Meng
author_facet Zhang, Jia-Wei
Dong, Hong-Po
Hou, Li-Jun
Liu, Yang
Ou, Ya-Fei
Zheng, Yan-Ling
Han, Ping
Liang, Xia
Yin, Guo-Yu
Wu, Dian-Ming
Liu, Min
Li, Meng
author_sort Zhang, Jia-Wei
collection PubMed
description Asgard archaea are widely distributed in anaerobic environments. Previous studies revealed the potential capability of Asgard archaea to utilize various organic substrates including proteins, carbohydrates, fatty acids, amino acids and hydrocarbons, suggesting that Asgard archaea play an important role in sediment carbon cycling. Here, we describe a previously unrecognized archaeal phylum, Hermodarchaeota, affiliated with the Asgard superphylum. The genomes of these archaea were recovered from metagenomes generated from mangrove sediments, and were found to encode alkyl/benzyl-succinate synthases and their activating enzymes that are similar to those identified in alkane-degrading sulfate-reducing bacteria. Hermodarchaeota also encode enzymes potentially involved in alkyl-coenzyme A and benzoyl-coenzyme A oxidation, the Wood–Ljungdahl pathway and nitrate reduction. These results indicate that members of this phylum have the potential to strictly anaerobically degrade alkanes and aromatic compounds, coupling the reduction of nitrate. By screening Sequence Read Archive, additional genes encoding 16S rRNA and alkyl/benzyl-succinate synthases analogous to those in Hermodarchaeota were identified in metagenomic datasets from a wide range of marine and freshwater sediments. These findings suggest that Asgard archaea capable of degrading alkanes and aromatics via formation of alkyl/benzyl-substituted succinates are ubiquitous in sediments.
format Online
Article
Text
id pubmed-8163825
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher Nature Publishing Group UK
record_format MEDLINE/PubMed
spelling pubmed-81638252021-06-10 Newly discovered Asgard archaea Hermodarchaeota potentially degrade alkanes and aromatics via alkyl/benzyl-succinate synthase and benzoyl-CoA pathway Zhang, Jia-Wei Dong, Hong-Po Hou, Li-Jun Liu, Yang Ou, Ya-Fei Zheng, Yan-Ling Han, Ping Liang, Xia Yin, Guo-Yu Wu, Dian-Ming Liu, Min Li, Meng ISME J Article Asgard archaea are widely distributed in anaerobic environments. Previous studies revealed the potential capability of Asgard archaea to utilize various organic substrates including proteins, carbohydrates, fatty acids, amino acids and hydrocarbons, suggesting that Asgard archaea play an important role in sediment carbon cycling. Here, we describe a previously unrecognized archaeal phylum, Hermodarchaeota, affiliated with the Asgard superphylum. The genomes of these archaea were recovered from metagenomes generated from mangrove sediments, and were found to encode alkyl/benzyl-succinate synthases and their activating enzymes that are similar to those identified in alkane-degrading sulfate-reducing bacteria. Hermodarchaeota also encode enzymes potentially involved in alkyl-coenzyme A and benzoyl-coenzyme A oxidation, the Wood–Ljungdahl pathway and nitrate reduction. These results indicate that members of this phylum have the potential to strictly anaerobically degrade alkanes and aromatic compounds, coupling the reduction of nitrate. By screening Sequence Read Archive, additional genes encoding 16S rRNA and alkyl/benzyl-succinate synthases analogous to those in Hermodarchaeota were identified in metagenomic datasets from a wide range of marine and freshwater sediments. These findings suggest that Asgard archaea capable of degrading alkanes and aromatics via formation of alkyl/benzyl-substituted succinates are ubiquitous in sediments. Nature Publishing Group UK 2021-01-15 2021-06 /pmc/articles/PMC8163825/ /pubmed/33452484 http://dx.doi.org/10.1038/s41396-020-00890-x Text en © The Author(s), under exclusive licence to International Society for Microbial Ecology 2021 https://creativecommons.org/licenses/by/4.0/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/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Article
Zhang, Jia-Wei
Dong, Hong-Po
Hou, Li-Jun
Liu, Yang
Ou, Ya-Fei
Zheng, Yan-Ling
Han, Ping
Liang, Xia
Yin, Guo-Yu
Wu, Dian-Ming
Liu, Min
Li, Meng
Newly discovered Asgard archaea Hermodarchaeota potentially degrade alkanes and aromatics via alkyl/benzyl-succinate synthase and benzoyl-CoA pathway
title Newly discovered Asgard archaea Hermodarchaeota potentially degrade alkanes and aromatics via alkyl/benzyl-succinate synthase and benzoyl-CoA pathway
title_full Newly discovered Asgard archaea Hermodarchaeota potentially degrade alkanes and aromatics via alkyl/benzyl-succinate synthase and benzoyl-CoA pathway
title_fullStr Newly discovered Asgard archaea Hermodarchaeota potentially degrade alkanes and aromatics via alkyl/benzyl-succinate synthase and benzoyl-CoA pathway
title_full_unstemmed Newly discovered Asgard archaea Hermodarchaeota potentially degrade alkanes and aromatics via alkyl/benzyl-succinate synthase and benzoyl-CoA pathway
title_short Newly discovered Asgard archaea Hermodarchaeota potentially degrade alkanes and aromatics via alkyl/benzyl-succinate synthase and benzoyl-CoA pathway
title_sort newly discovered asgard archaea hermodarchaeota potentially degrade alkanes and aromatics via alkyl/benzyl-succinate synthase and benzoyl-coa pathway
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8163825/
https://www.ncbi.nlm.nih.gov/pubmed/33452484
http://dx.doi.org/10.1038/s41396-020-00890-x
work_keys_str_mv AT zhangjiawei newlydiscoveredasgardarchaeahermodarchaeotapotentiallydegradealkanesandaromaticsviaalkylbenzylsuccinatesynthaseandbenzoylcoapathway
AT donghongpo newlydiscoveredasgardarchaeahermodarchaeotapotentiallydegradealkanesandaromaticsviaalkylbenzylsuccinatesynthaseandbenzoylcoapathway
AT houlijun newlydiscoveredasgardarchaeahermodarchaeotapotentiallydegradealkanesandaromaticsviaalkylbenzylsuccinatesynthaseandbenzoylcoapathway
AT liuyang newlydiscoveredasgardarchaeahermodarchaeotapotentiallydegradealkanesandaromaticsviaalkylbenzylsuccinatesynthaseandbenzoylcoapathway
AT ouyafei newlydiscoveredasgardarchaeahermodarchaeotapotentiallydegradealkanesandaromaticsviaalkylbenzylsuccinatesynthaseandbenzoylcoapathway
AT zhengyanling newlydiscoveredasgardarchaeahermodarchaeotapotentiallydegradealkanesandaromaticsviaalkylbenzylsuccinatesynthaseandbenzoylcoapathway
AT hanping newlydiscoveredasgardarchaeahermodarchaeotapotentiallydegradealkanesandaromaticsviaalkylbenzylsuccinatesynthaseandbenzoylcoapathway
AT liangxia newlydiscoveredasgardarchaeahermodarchaeotapotentiallydegradealkanesandaromaticsviaalkylbenzylsuccinatesynthaseandbenzoylcoapathway
AT yinguoyu newlydiscoveredasgardarchaeahermodarchaeotapotentiallydegradealkanesandaromaticsviaalkylbenzylsuccinatesynthaseandbenzoylcoapathway
AT wudianming newlydiscoveredasgardarchaeahermodarchaeotapotentiallydegradealkanesandaromaticsviaalkylbenzylsuccinatesynthaseandbenzoylcoapathway
AT liumin newlydiscoveredasgardarchaeahermodarchaeotapotentiallydegradealkanesandaromaticsviaalkylbenzylsuccinatesynthaseandbenzoylcoapathway
AT limeng newlydiscoveredasgardarchaeahermodarchaeotapotentiallydegradealkanesandaromaticsviaalkylbenzylsuccinatesynthaseandbenzoylcoapathway