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Revealing CO(2)-Fixing SAR11 Bacteria in the Ocean by Raman-Based Single-Cell Metabolic Profiling and Genomics

The majority of marine microbes remain uncultured, which hinders the identification and mining of CO(2)-fixing genes, pathways, and chassis from the oceans. Here, we investigated CO(2)-fixing microbes in seawater from the euphotic zone of the Yellow Sea of China by detecting and tracking their (13)C...

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Autores principales: Jing, Xiaoyan, Gong, Yanhai, Xu, Teng, Davison, Paul A., MacGregor-Chatwin, Craig, Hunter, C. Neil, Xu, La, Meng, Yu, Ji, Yuetong, Ma, Bo, Xu, Jian, Huang, Wei E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: AAAS 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10521720/
https://www.ncbi.nlm.nih.gov/pubmed/37850122
http://dx.doi.org/10.34133/2022/9782712
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author Jing, Xiaoyan
Gong, Yanhai
Xu, Teng
Davison, Paul A.
MacGregor-Chatwin, Craig
Hunter, C. Neil
Xu, La
Meng, Yu
Ji, Yuetong
Ma, Bo
Xu, Jian
Huang, Wei E.
author_facet Jing, Xiaoyan
Gong, Yanhai
Xu, Teng
Davison, Paul A.
MacGregor-Chatwin, Craig
Hunter, C. Neil
Xu, La
Meng, Yu
Ji, Yuetong
Ma, Bo
Xu, Jian
Huang, Wei E.
author_sort Jing, Xiaoyan
collection PubMed
description The majority of marine microbes remain uncultured, which hinders the identification and mining of CO(2)-fixing genes, pathways, and chassis from the oceans. Here, we investigated CO(2)-fixing microbes in seawater from the euphotic zone of the Yellow Sea of China by detecting and tracking their (13)C-bicarbonate ((13)C-HCO(3)(-)) intake via single-cell Raman spectra (SCRS) analysis. The target cells were then isolated by Raman-activated Gravity-driven Encapsulation (RAGE), and their genomes were amplified and sequenced at one-cell resolution. The single-cell metabolism, phenotype and genome are consistent. We identified a not-yet-cultured Pelagibacter spp., which actively assimilates (13)C-HCO(3)(-), and also possesses most of the genes encoding enzymes of the Calvin-Benson cycle for CO(2) fixation, a complete gene set for a rhodopsin-based light-harvesting system, and the full genes necessary for carotenoid synthesis. The four proteorhodopsin (PR) genes identified in the Pelagibacter spp. were confirmed by heterologous expression in E. coli. These results suggest that hitherto uncultured Pelagibacter spp. uses light-powered metabolism to contribute to global carbon cycling.
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spelling pubmed-105217202023-10-17 Revealing CO(2)-Fixing SAR11 Bacteria in the Ocean by Raman-Based Single-Cell Metabolic Profiling and Genomics Jing, Xiaoyan Gong, Yanhai Xu, Teng Davison, Paul A. MacGregor-Chatwin, Craig Hunter, C. Neil Xu, La Meng, Yu Ji, Yuetong Ma, Bo Xu, Jian Huang, Wei E. Biodes Res Research Article The majority of marine microbes remain uncultured, which hinders the identification and mining of CO(2)-fixing genes, pathways, and chassis from the oceans. Here, we investigated CO(2)-fixing microbes in seawater from the euphotic zone of the Yellow Sea of China by detecting and tracking their (13)C-bicarbonate ((13)C-HCO(3)(-)) intake via single-cell Raman spectra (SCRS) analysis. The target cells were then isolated by Raman-activated Gravity-driven Encapsulation (RAGE), and their genomes were amplified and sequenced at one-cell resolution. The single-cell metabolism, phenotype and genome are consistent. We identified a not-yet-cultured Pelagibacter spp., which actively assimilates (13)C-HCO(3)(-), and also possesses most of the genes encoding enzymes of the Calvin-Benson cycle for CO(2) fixation, a complete gene set for a rhodopsin-based light-harvesting system, and the full genes necessary for carotenoid synthesis. The four proteorhodopsin (PR) genes identified in the Pelagibacter spp. were confirmed by heterologous expression in E. coli. These results suggest that hitherto uncultured Pelagibacter spp. uses light-powered metabolism to contribute to global carbon cycling. AAAS 2022-10-13 /pmc/articles/PMC10521720/ /pubmed/37850122 http://dx.doi.org/10.34133/2022/9782712 Text en Copyright © 2022 Xiaoyan Jing et al. https://creativecommons.org/licenses/by/4.0/Exclusive Licensee Nanjing Agricultural University. Distributed under a Creative Commons Attribution License (CC BY 4.0). (https://creativecommons.org/licenses/by/4.0/)
spellingShingle Research Article
Jing, Xiaoyan
Gong, Yanhai
Xu, Teng
Davison, Paul A.
MacGregor-Chatwin, Craig
Hunter, C. Neil
Xu, La
Meng, Yu
Ji, Yuetong
Ma, Bo
Xu, Jian
Huang, Wei E.
Revealing CO(2)-Fixing SAR11 Bacteria in the Ocean by Raman-Based Single-Cell Metabolic Profiling and Genomics
title Revealing CO(2)-Fixing SAR11 Bacteria in the Ocean by Raman-Based Single-Cell Metabolic Profiling and Genomics
title_full Revealing CO(2)-Fixing SAR11 Bacteria in the Ocean by Raman-Based Single-Cell Metabolic Profiling and Genomics
title_fullStr Revealing CO(2)-Fixing SAR11 Bacteria in the Ocean by Raman-Based Single-Cell Metabolic Profiling and Genomics
title_full_unstemmed Revealing CO(2)-Fixing SAR11 Bacteria in the Ocean by Raman-Based Single-Cell Metabolic Profiling and Genomics
title_short Revealing CO(2)-Fixing SAR11 Bacteria in the Ocean by Raman-Based Single-Cell Metabolic Profiling and Genomics
title_sort revealing co(2)-fixing sar11 bacteria in the ocean by raman-based single-cell metabolic profiling and genomics
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10521720/
https://www.ncbi.nlm.nih.gov/pubmed/37850122
http://dx.doi.org/10.34133/2022/9782712
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