Cargando…
Cellular differentiation into hyphae and spores in halophilic archaea
Several groups of bacteria have complex life cycles involving cellular differentiation and multicellular structures. For example, actinobacteria of the genus Streptomyces form multicellular vegetative hyphae, aerial hyphae, and spores. However, similar life cycles have not yet been described for arc...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Nature Publishing Group UK
2023
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10067837/ https://www.ncbi.nlm.nih.gov/pubmed/37005419 http://dx.doi.org/10.1038/s41467-023-37389-w |
_version_ | 1785018559213076480 |
---|---|
author | Tang, Shu-Kun Zhi, Xiao-Yang Zhang, Yao Makarova, Kira S. Liu, Bing-Bing Zheng, Guo-Song Zhang, Zhen-Peng Zheng, Hua-Jun Wolf, Yuri I. Zhao, Yu-Rong Jiang, Song-Hao Chen, Xi-Ming Li, En-Yuan Zhang, Tao Chen, Pei-Ru Feng, Yu-Zhou Xiang, Ming-Xian Lin, Zhi-Qian Shi, Jia-Hui Chang, Cheng Zhang, Xue Li, Rui Lou, Kai Wang, Yun Chang, Lei Yin, Min Yang, Ling-Ling Gao, Hui-Ying Zhang, Zhong-Kai Tao, Tian-Shen Guan, Tong-Wei He, Fu-Chu Lu, Yin-Hua Cui, Heng-Lin Koonin, Eugene V. Zhao, Guo-Ping Xu, Ping |
author_facet | Tang, Shu-Kun Zhi, Xiao-Yang Zhang, Yao Makarova, Kira S. Liu, Bing-Bing Zheng, Guo-Song Zhang, Zhen-Peng Zheng, Hua-Jun Wolf, Yuri I. Zhao, Yu-Rong Jiang, Song-Hao Chen, Xi-Ming Li, En-Yuan Zhang, Tao Chen, Pei-Ru Feng, Yu-Zhou Xiang, Ming-Xian Lin, Zhi-Qian Shi, Jia-Hui Chang, Cheng Zhang, Xue Li, Rui Lou, Kai Wang, Yun Chang, Lei Yin, Min Yang, Ling-Ling Gao, Hui-Ying Zhang, Zhong-Kai Tao, Tian-Shen Guan, Tong-Wei He, Fu-Chu Lu, Yin-Hua Cui, Heng-Lin Koonin, Eugene V. Zhao, Guo-Ping Xu, Ping |
author_sort | Tang, Shu-Kun |
collection | PubMed |
description | Several groups of bacteria have complex life cycles involving cellular differentiation and multicellular structures. For example, actinobacteria of the genus Streptomyces form multicellular vegetative hyphae, aerial hyphae, and spores. However, similar life cycles have not yet been described for archaea. Here, we show that several haloarchaea of the family Halobacteriaceae display a life cycle resembling that of Streptomyces bacteria. Strain YIM 93972 (isolated from a salt marsh) undergoes cellular differentiation into mycelia and spores. Other closely related strains are also able to form mycelia, and comparative genomic analyses point to gene signatures (apparent gain or loss of certain genes) that are shared by members of this clade within the Halobacteriaceae. Genomic, transcriptomic and proteomic analyses of non-differentiating mutants suggest that a Cdc48-family ATPase might be involved in cellular differentiation in strain YIM 93972. Additionally, a gene encoding a putative oligopeptide transporter from YIM 93972 can restore the ability to form hyphae in a Streptomyces coelicolor mutant that carries a deletion in a homologous gene cluster (bldKA-bldKE), suggesting functional equivalence. We propose strain YIM 93972 as representative of a new species in a new genus within the family Halobacteriaceae, for which the name Actinoarchaeum halophilum gen. nov., sp. nov. is herewith proposed. Our demonstration of a complex life cycle in a group of haloarchaea adds a new dimension to our understanding of the biological diversity and environmental adaptation of archaea. |
format | Online Article Text |
id | pubmed-10067837 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2023 |
publisher | Nature Publishing Group UK |
record_format | MEDLINE/PubMed |
spelling | pubmed-100678372023-04-04 Cellular differentiation into hyphae and spores in halophilic archaea Tang, Shu-Kun Zhi, Xiao-Yang Zhang, Yao Makarova, Kira S. Liu, Bing-Bing Zheng, Guo-Song Zhang, Zhen-Peng Zheng, Hua-Jun Wolf, Yuri I. Zhao, Yu-Rong Jiang, Song-Hao Chen, Xi-Ming Li, En-Yuan Zhang, Tao Chen, Pei-Ru Feng, Yu-Zhou Xiang, Ming-Xian Lin, Zhi-Qian Shi, Jia-Hui Chang, Cheng Zhang, Xue Li, Rui Lou, Kai Wang, Yun Chang, Lei Yin, Min Yang, Ling-Ling Gao, Hui-Ying Zhang, Zhong-Kai Tao, Tian-Shen Guan, Tong-Wei He, Fu-Chu Lu, Yin-Hua Cui, Heng-Lin Koonin, Eugene V. Zhao, Guo-Ping Xu, Ping Nat Commun Article Several groups of bacteria have complex life cycles involving cellular differentiation and multicellular structures. For example, actinobacteria of the genus Streptomyces form multicellular vegetative hyphae, aerial hyphae, and spores. However, similar life cycles have not yet been described for archaea. Here, we show that several haloarchaea of the family Halobacteriaceae display a life cycle resembling that of Streptomyces bacteria. Strain YIM 93972 (isolated from a salt marsh) undergoes cellular differentiation into mycelia and spores. Other closely related strains are also able to form mycelia, and comparative genomic analyses point to gene signatures (apparent gain or loss of certain genes) that are shared by members of this clade within the Halobacteriaceae. Genomic, transcriptomic and proteomic analyses of non-differentiating mutants suggest that a Cdc48-family ATPase might be involved in cellular differentiation in strain YIM 93972. Additionally, a gene encoding a putative oligopeptide transporter from YIM 93972 can restore the ability to form hyphae in a Streptomyces coelicolor mutant that carries a deletion in a homologous gene cluster (bldKA-bldKE), suggesting functional equivalence. We propose strain YIM 93972 as representative of a new species in a new genus within the family Halobacteriaceae, for which the name Actinoarchaeum halophilum gen. nov., sp. nov. is herewith proposed. Our demonstration of a complex life cycle in a group of haloarchaea adds a new dimension to our understanding of the biological diversity and environmental adaptation of archaea. Nature Publishing Group UK 2023-04-01 /pmc/articles/PMC10067837/ /pubmed/37005419 http://dx.doi.org/10.1038/s41467-023-37389-w Text en © The Author(s) 2023 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 Tang, Shu-Kun Zhi, Xiao-Yang Zhang, Yao Makarova, Kira S. Liu, Bing-Bing Zheng, Guo-Song Zhang, Zhen-Peng Zheng, Hua-Jun Wolf, Yuri I. Zhao, Yu-Rong Jiang, Song-Hao Chen, Xi-Ming Li, En-Yuan Zhang, Tao Chen, Pei-Ru Feng, Yu-Zhou Xiang, Ming-Xian Lin, Zhi-Qian Shi, Jia-Hui Chang, Cheng Zhang, Xue Li, Rui Lou, Kai Wang, Yun Chang, Lei Yin, Min Yang, Ling-Ling Gao, Hui-Ying Zhang, Zhong-Kai Tao, Tian-Shen Guan, Tong-Wei He, Fu-Chu Lu, Yin-Hua Cui, Heng-Lin Koonin, Eugene V. Zhao, Guo-Ping Xu, Ping Cellular differentiation into hyphae and spores in halophilic archaea |
title | Cellular differentiation into hyphae and spores in halophilic archaea |
title_full | Cellular differentiation into hyphae and spores in halophilic archaea |
title_fullStr | Cellular differentiation into hyphae and spores in halophilic archaea |
title_full_unstemmed | Cellular differentiation into hyphae and spores in halophilic archaea |
title_short | Cellular differentiation into hyphae and spores in halophilic archaea |
title_sort | cellular differentiation into hyphae and spores in halophilic archaea |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10067837/ https://www.ncbi.nlm.nih.gov/pubmed/37005419 http://dx.doi.org/10.1038/s41467-023-37389-w |
work_keys_str_mv | AT tangshukun cellulardifferentiationintohyphaeandsporesinhalophilicarchaea AT zhixiaoyang cellulardifferentiationintohyphaeandsporesinhalophilicarchaea AT zhangyao cellulardifferentiationintohyphaeandsporesinhalophilicarchaea AT makarovakiras cellulardifferentiationintohyphaeandsporesinhalophilicarchaea AT liubingbing cellulardifferentiationintohyphaeandsporesinhalophilicarchaea AT zhengguosong cellulardifferentiationintohyphaeandsporesinhalophilicarchaea AT zhangzhenpeng cellulardifferentiationintohyphaeandsporesinhalophilicarchaea AT zhenghuajun cellulardifferentiationintohyphaeandsporesinhalophilicarchaea AT wolfyurii cellulardifferentiationintohyphaeandsporesinhalophilicarchaea AT zhaoyurong cellulardifferentiationintohyphaeandsporesinhalophilicarchaea AT jiangsonghao cellulardifferentiationintohyphaeandsporesinhalophilicarchaea AT chenximing cellulardifferentiationintohyphaeandsporesinhalophilicarchaea AT lienyuan cellulardifferentiationintohyphaeandsporesinhalophilicarchaea AT zhangtao cellulardifferentiationintohyphaeandsporesinhalophilicarchaea AT chenpeiru cellulardifferentiationintohyphaeandsporesinhalophilicarchaea AT fengyuzhou cellulardifferentiationintohyphaeandsporesinhalophilicarchaea AT xiangmingxian cellulardifferentiationintohyphaeandsporesinhalophilicarchaea AT linzhiqian cellulardifferentiationintohyphaeandsporesinhalophilicarchaea AT shijiahui cellulardifferentiationintohyphaeandsporesinhalophilicarchaea AT changcheng cellulardifferentiationintohyphaeandsporesinhalophilicarchaea AT zhangxue cellulardifferentiationintohyphaeandsporesinhalophilicarchaea AT lirui cellulardifferentiationintohyphaeandsporesinhalophilicarchaea AT loukai cellulardifferentiationintohyphaeandsporesinhalophilicarchaea AT wangyun cellulardifferentiationintohyphaeandsporesinhalophilicarchaea AT changlei cellulardifferentiationintohyphaeandsporesinhalophilicarchaea AT yinmin cellulardifferentiationintohyphaeandsporesinhalophilicarchaea AT yanglingling cellulardifferentiationintohyphaeandsporesinhalophilicarchaea AT gaohuiying cellulardifferentiationintohyphaeandsporesinhalophilicarchaea AT zhangzhongkai cellulardifferentiationintohyphaeandsporesinhalophilicarchaea AT taotianshen cellulardifferentiationintohyphaeandsporesinhalophilicarchaea AT guantongwei cellulardifferentiationintohyphaeandsporesinhalophilicarchaea AT hefuchu cellulardifferentiationintohyphaeandsporesinhalophilicarchaea AT luyinhua cellulardifferentiationintohyphaeandsporesinhalophilicarchaea AT cuihenglin cellulardifferentiationintohyphaeandsporesinhalophilicarchaea AT koonineugenev cellulardifferentiationintohyphaeandsporesinhalophilicarchaea AT zhaoguoping cellulardifferentiationintohyphaeandsporesinhalophilicarchaea AT xuping cellulardifferentiationintohyphaeandsporesinhalophilicarchaea |