Literature DB >> 18467493

Diverse syntrophic partnerships from deep-sea methane vents revealed by direct cell capture and metagenomics.

Annelie Pernthaler1, Anne E Dekas, C Titus Brown, Shana K Goffredi, Tsegereda Embaye, Victoria J Orphan.   

Abstract

Microorganisms play a fundamental role in the cycling of nutrients and energy on our planet. A common strategy for many microorganisms mediating biogeochemical cycles in anoxic environments is syntrophy, frequently necessitating close spatial proximity between microbial partners. We are only now beginning to fully appreciate the diversity and pervasiveness of microbial partnerships in nature, the majority of which cannot be replicated in the laboratory. One notable example of such cooperation is the interspecies association between anaerobic methane oxidizing archaea (ANME) and sulfate-reducing bacteria. These consortia are globally distributed in the environment and provide a significant sink for methane by substantially reducing the export of this potent greenhouse gas into the atmosphere. The interdependence of these currently uncultured microbes renders them difficult to study, and our knowledge of their physiological capabilities in nature is limited. Here, we have developed a method to capture select microorganisms directly from the environment, using combined fluorescence in situ hybridization and immunomagnetic cell capture. We used this method to purify syntrophic anaerobic methane oxidizing ANME-2c archaea and physically associated microorganisms directly from deep-sea marine sediment. Metagenomics, PCR, and microscopy of these purified consortia revealed unexpected diversity of associated bacteria, including Betaproteobacteria and a second sulfate-reducing Deltaproteobacterial partner. The detection of nitrogenase genes within the metagenome and subsequent demonstration of (15)N(2) incorporation in the biomass of these methane-oxidizing consortia suggest a possible role in new nitrogen inputs by these syntrophic assemblages.

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Year:  2008        PMID: 18467493      PMCID: PMC2383945          DOI: 10.1073/pnas.0711303105

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  32 in total

1.  Methanogen and bacterial diversity and distribution in deep gas hydrate sediments from the Cascadia Margin as revealed by 16S rRNA molecular analysis.

Authors: 
Journal:  FEMS Microbiol Ecol       Date:  2001-01       Impact factor: 4.194

Review 2.  Synergistic interactions in the microbial world.

Authors:  Bernhard Schink
Journal:  Antonie Van Leeuwenhoek       Date:  2002-08       Impact factor: 2.271

Review 3.  Genomic perspectives in microbial oceanography.

Authors:  Edward F DeLong; David M Karl
Journal:  Nature       Date:  2005-09-15       Impact factor: 49.962

4.  A microbial consortium couples anaerobic methane oxidation to denitrification.

Authors:  Ashna A Raghoebarsing; Arjan Pol; Katinka T van de Pas-Schoonen; Alfons J P Smolders; Katharina F Ettwig; W Irene C Rijpstra; Stefan Schouten; Jaap S Sinninghe Damsté; Huub J M Op den Camp; Mike S M Jetten; Marc Strous
Journal:  Nature       Date:  2006-04-13       Impact factor: 49.962

Review 5.  Oceanic methane biogeochemistry.

Authors:  William S Reeburgh
Journal:  Chem Rev       Date:  2007-01-30       Impact factor: 60.622

6.  Dissecting biological "dark matter" with single-cell genetic analysis of rare and uncultivated TM7 microbes from the human mouth.

Authors:  Yann Marcy; Cleber Ouverney; Elisabeth M Bik; Tina Lösekann; Natalia Ivanova; Hector Garcia Martin; Ernest Szeto; Darren Platt; Philip Hugenholtz; David A Relman; Stephen R Quake
Journal:  Proc Natl Acad Sci U S A       Date:  2007-07-09       Impact factor: 11.205

Review 7.  Something from (almost) nothing: the impact of multiple displacement amplification on microbial ecology.

Authors:  Erik K Binga; Roger S Lasken; Josh D Neufeld
Journal:  ISME J       Date:  2008-02-07       Impact factor: 10.302

8.  Bacteria and Archaea physically associated with Gulf of Mexico gas hydrates.

Authors:  B D Lanoil; R Sassen; M T La Duc; S T Sweet; K H Nealson
Journal:  Appl Environ Microbiol       Date:  2001-11       Impact factor: 4.792

9.  How many metals does it take to fix N2? A mechanistic overview of biological nitrogen fixation.

Authors:  James B Howard; Douglas C Rees
Journal:  Proc Natl Acad Sci U S A       Date:  2006-11-06       Impact factor: 11.205

10.  Heterotrophic bacteria growing in association with Methylococcus capsulatus (Bath) in a single cell protein production process.

Authors:  Harald Bothe; K Møller Jensen; A Mergel; J Larsen; C Jørgensen; Hermann Bothe; L Jørgensen
Journal:  Appl Microbiol Biotechnol       Date:  2002-04-04       Impact factor: 4.813

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  79 in total

1.  Abundance, diversity and activity of sulfate-reducing prokaryotes in heavy metal-contaminated sediment from a salt marsh in the Medway Estuary (UK).

Authors:  Laurent Quillet; Ludovic Besaury; Milka Popova; Sandrine Paissé; Julien Deloffre; Baghdad Ouddane
Journal:  Mar Biotechnol (NY)       Date:  2011-11-30       Impact factor: 3.619

2.  A programmable droplet-based microfluidic device applied to multiparameter analysis of single microbes and microbial communities.

Authors:  Kaston Leung; Hans Zahn; Timothy Leaver; Kishori M Konwar; Niels W Hanson; Antoine P Pagé; Chien-Chi Lo; Patrick S Chain; Steven J Hallam; Carl L Hansen
Journal:  Proc Natl Acad Sci U S A       Date:  2012-04-30       Impact factor: 11.205

3.  Diverse and novel nifH and nifH-like gene sequences in the deep-sea methane seep sediments of the Okhotsk Sea.

Authors:  Hongyue Dang; Xiwu Luan; Jingyi Zhao; Jing Li
Journal:  Appl Environ Microbiol       Date:  2009-01-30       Impact factor: 4.792

4.  Methanotrophic archaea possessing diverging methane-oxidizing and electron-transporting pathways.

Authors:  Feng-Ping Wang; Yu Zhang; Ying Chen; Ying He; Ji Qi; Kai-Uwe Hinrichs; Xin-Xu Zhang; Xiang Xiao; Nico Boon
Journal:  ISME J       Date:  2013-12-12       Impact factor: 10.302

5.  Fitness and stability of obligate cross-feeding interactions that emerge upon gene loss in bacteria.

Authors:  Samay Pande; Holger Merker; Katrin Bohl; Michael Reichelt; Stefan Schuster; Luís F de Figueiredo; Christoph Kaleta; Christian Kost
Journal:  ISME J       Date:  2013-11-28       Impact factor: 10.302

6.  Subgroup Characteristics of Marine Methane-Oxidizing ANME-2 Archaea and Their Syntrophic Partners as Revealed by Integrated Multimodal Analytical Microscopy.

Authors:  Shawn E McGlynn; Grayson L Chadwick; Ariel O'Neill; Mason Mackey; Andrea Thor; Thomas J Deerinck; Mark H Ellisman; Victoria J Orphan
Journal:  Appl Environ Microbiol       Date:  2018-05-17       Impact factor: 4.792

Review 7.  Electron transfer in syntrophic communities of anaerobic bacteria and archaea.

Authors:  Alfons J M Stams; Caroline M Plugge
Journal:  Nat Rev Microbiol       Date:  2009-08       Impact factor: 60.633

8.  Molecular characterization of potential nitrogen fixation by anaerobic methane-oxidizing archaea in the methane seep sediments at the number 8 Kumano Knoll in the Kumano Basin, offshore of Japan.

Authors:  Junichi Miyazaki; Ryosaku Higa; Tomohiro Toki; Juichiro Ashi; Urumu Tsunogai; Takuro Nunoura; Hiroyuki Imachi; Ken Takai
Journal:  Appl Environ Microbiol       Date:  2009-09-25       Impact factor: 4.792

9.  Spatial-Temporal Pattern of Sulfate-Dependent Anaerobic Methane Oxidation in an Intertidal Zone of the East China Sea.

Authors:  Jiaqi Wang; Miaolian Hua; Chaoyang Cai; Jiajie Hu; Junren Wang; Hongrui Yang; Fang Ma; Haifeng Qian; Ping Zheng; Baolan Hu
Journal:  Appl Environ Microbiol       Date:  2019-03-22       Impact factor: 4.792

10.  Environment-dependent distribution of the sediment nifH-harboring microbiota in the Northern South China Sea.

Authors:  Hongyue Dang; Jinying Yang; Jing Li; Xiwu Luan; Yunbo Zhang; Guizhou Gu; Rongrong Xue; Mingyue Zong; Martin G Klotz
Journal:  Appl Environ Microbiol       Date:  2012-10-12       Impact factor: 4.792

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