Literature DB >> 23657360

Ammonia oxidation kinetics and temperature sensitivity of a natural marine community dominated by Archaea.

Rachel E A Horak1, Wei Qin, Andy J Schauer, E Virginia Armbrust, Anitra E Ingalls, James W Moffett, David A Stahl, Allan H Devol.   

Abstract

Archaeal ammonia oxidizers (AOAs) are increasingly recognized as prominent members of natural microbial assemblages. Evidence that links the presence of AOA with in situ ammonia oxidation activity is limited, and the abiotic factors that regulate the distribution of AOA natural assemblages are not well defined. We used quantitative PCR to enumerate amoA (encodes α-subunit of ammonia monooxygenase) abundances; AOA amoA gene copies greatly outnumbered ammonia-oxidizing bacteria and amoA transcripts were derived primarily from AOA throughout the water column of Hood Canal, Puget Sound, WA, USA. We generated a Michaelis-Menten kinetics curve for ammonia oxidation by the natural community and found that the measured Km of 98±14 nmol l(-1) was close to that for cultivated AOA representative Nitrosopumilus maritimus SCM1. Temperature did not have a significant effect on ammonia oxidation rates for incubation temperatures ranging from 8 to 20 °C, which is within the temperature range for depths of measurable ammonia oxidation at the site. This study provides substantial evidence, through both amoA gene copies and transcript abundances and the kinetics response, that AOA are the dominant active ammonia oxidizers in this marine environment. We propose that future ammonia oxidation experiments use a Km for the natural community to better constrain ammonia oxidation rates determined with the commonly used (15)NH4(+) dilution technique.

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Year:  2013        PMID: 23657360      PMCID: PMC3965308          DOI: 10.1038/ismej.2013.75

Source DB:  PubMed          Journal:  ISME J        ISSN: 1751-7362            Impact factor:   10.302


  30 in total

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Authors:  G KNOWLES; A L DOWNING; M J BARRETT
Journal:  J Gen Microbiol       Date:  1965-02

2.  High abundance of ammonia-oxidizing Archaea in coastal waters, determined using a modified DNA extraction method.

Authors:  Hidetoshi Urakawa; Willm Martens-Habbena; David A Stahl
Journal:  Appl Environ Microbiol       Date:  2010-01-29       Impact factor: 4.792

3.  Measurement and distribution of nitrification rates in the oceans.

Authors:  B B Ward
Journal:  Methods Enzymol       Date:  2011       Impact factor: 1.600

4.  The significance of nitrification for oceanic new production.

Authors:  Andrew Yool; Adrian P Martin; Camila Fernández; Darren R Clark
Journal:  Nature       Date:  2007-06-21       Impact factor: 49.962

5.  Population ecology of nitrifying archaea and bacteria in the Southern California Bight.

Authors:  J Michael Beman; Rohan Sachdeva; Jed A Fuhrman
Journal:  Environ Microbiol       Date:  2010-02-18       Impact factor: 5.491

6.  The ammonia monooxygenase structural gene amoA as a functional marker: molecular fine-scale analysis of natural ammonia-oxidizing populations.

Authors:  J H Rotthauwe; K P Witzel; W Liesack
Journal:  Appl Environ Microbiol       Date:  1997-12       Impact factor: 4.792

7.  Activity, abundance and diversity of nitrifying archaea and bacteria in the central California Current.

Authors:  Alyson E Santoro; Karen L Casciotti; Christopher A Francis
Journal:  Environ Microbiol       Date:  2010-03-23       Impact factor: 5.491

8.  Enrichment and characterization of ammonia-oxidizing archaea from the open ocean: phylogeny, physiology and stable isotope fractionation.

Authors:  Alyson E Santoro; Karen L Casciotti
Journal:  ISME J       Date:  2011-05-12       Impact factor: 10.302

9.  Nitrosopumilus maritimus genome reveals unique mechanisms for nitrification and autotrophy in globally distributed marine crenarchaea.

Authors:  C B Walker; J R de la Torre; M G Klotz; H Urakawa; N Pinel; D J Arp; C Brochier-Armanet; P S G Chain; P P Chan; A Gollabgir; J Hemp; M Hügler; E A Karr; M Könneke; M Shin; T J Lawton; T Lowe; W Martens-Habbena; L A Sayavedra-Soto; D Lang; S M Sievert; A C Rosenzweig; G Manning; D A Stahl
Journal:  Proc Natl Acad Sci U S A       Date:  2010-04-26       Impact factor: 11.205

10.  A novel family of functional operons encoding methane/ammonia monooxygenase-related proteins in gammaproteobacterial methanotrophs.

Authors:  Patricia L Tavormina; Victoria J Orphan; Marina G Kalyuzhnaya; Mike S M Jetten; Martin G Klotz
Journal:  Environ Microbiol Rep       Date:  2011-02       Impact factor: 3.541

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  39 in total

1.  Transcriptional response of the archaeal ammonia oxidizer Nitrosopumilus maritimus to low and environmentally relevant ammonia concentrations.

Authors:  Tatsunori Nakagawa; David A Stahl
Journal:  Appl Environ Microbiol       Date:  2013-08-30       Impact factor: 4.792

2.  Influence of ammonia oxidation rate on thaumarchaeal lipid composition and the TEX86 temperature proxy.

Authors:  Sarah J Hurley; Felix J Elling; Martin Könneke; Carolyn Buchwald; Scott D Wankel; Alyson E Santoro; Julius Sebastian Lipp; Kai-Uwe Hinrichs; Ann Pearson
Journal:  Proc Natl Acad Sci U S A       Date:  2016-06-28       Impact factor: 11.205

3.  Cyanate and urea are substrates for nitrification by Thaumarchaeota in the marine environment.

Authors:  Katharina Kitzinger; Cory C Padilla; Hannah K Marchant; Philipp F Hach; Craig W Herbold; Abiel T Kidane; Martin Könneke; Sten Littmann; Maria Mooshammer; Jutta Niggemann; Sandra Petrov; Andreas Richter; Frank J Stewart; Michael Wagner; Marcel M M Kuypers; Laura A Bristow
Journal:  Nat Microbiol       Date:  2018-12-10       Impact factor: 17.745

4.  Significance of archaeal nitrification in hypoxic waters of the Baltic Sea.

Authors:  Carlo Berg; Verona Vandieken; Bo Thamdrup; Klaus Jürgens
Journal:  ISME J       Date:  2014-11-25       Impact factor: 10.302

Review 5.  Microorganisms and ocean global change.

Authors:  David A Hutchins; Feixue Fu
Journal:  Nat Microbiol       Date:  2017-05-25       Impact factor: 17.745

6.  Nutrient transport suggests an evolutionary basis for charged archaeal surface layer proteins.

Authors:  Po-Nan Li; Jonathan Herrmann; Bradley B Tolar; Frédéric Poitevin; Rasika Ramdasi; John R Bargar; David A Stahl; Grant J Jensen; Christopher A Francis; Soichi Wakatsuki; Henry van den Bedem
Journal:  ISME J       Date:  2018-06-13       Impact factor: 10.302

7.  Differential contributions of archaeal ammonia oxidizer ecotypes to nitrification in coastal surface waters.

Authors:  Jason M Smith; Karen L Casciotti; Francisco P Chavez; Christopher A Francis
Journal:  ISME J       Date:  2014-02-20       Impact factor: 10.302

8.  Functional Transcripts Indicate Phylogenetically Diverse Active Ammonia-Scavenging Microbiota in Sympatric Sponges.

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Journal:  Mar Biotechnol (NY)       Date:  2018-02-08       Impact factor: 3.619

9.  Monthly distribution of ammonia-oxidizing microbes in a tropical bay.

Authors:  Tie-Qiang Mao; Yan-Qun Li; Hong-Po Dong; Wen-Na Yang; Li-Jun Hou
Journal:  J Microbiol       Date:  2020-11-17       Impact factor: 3.422

10.  Confounding effects of oxygen and temperature on the TEX86 signature of marine Thaumarchaeota.

Authors:  Wei Qin; Laura T Carlson; E Virginia Armbrust; Allan H Devol; James W Moffett; David A Stahl; Anitra E Ingalls
Journal:  Proc Natl Acad Sci U S A       Date:  2015-08-17       Impact factor: 11.205

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