Experimental testing of hypotheses for temperature‐ and pH‐based niche specialization of ammonia oxidizing archaea and bacteria

A. Aigle , C. Gubry‐Rangin , C. Thion , K. Y. Estera‐Molina
Environmental Microbiology 22 ( 9) 4032 -4045

2
2020
Archaea predominate among ammonia-oxidizing prokaryotes in soils

S. Leininger , T. Urich , M. Schloter , L. Schwark
Nature 442 ( 7104) 806 -809

2,689
2006
Cultivation of an obligate acidophilic ammonia oxidizer from a nitrifying acid soil

L. E. Lehtovirta-Morley , K. Stoecker , A. Vilcinskas , J. I. Prosser
Proceedings of the National Academy of Sciences of the United States of America 108 ( 38) 15892 -15897

362
2011
Niche specialization of terrestrial archaeal ammonia oxidizers

C. Gubry-Rangin , B. Hai , C. Quince , M. Engel
Proceedings of the National Academy of Sciences of the United States of America 108 ( 52) 21206 -21211

301
2011
Quantitative Assessment of Ammonia-Oxidizing Bacterial Communities in the Epiphyton of Submerged Macrophytes in Shallow Lakes

M. Coci , G. W. Nicol , G. N. Pilloni , M. Schmid
Applied and Environmental Microbiology 76 ( 6) 1813 -1821

34
2010
Blame It on the Metabolite: 3,5-Dichloroaniline Rather than the Parent Compound Is Responsible for the Decreasing Diversity and Function of Soil Microorganisms.

S. Vasileiadis , E. Puglisi , E. S. Papadopoulou , G. Pertile
Applied and Environmental Microbiology 84 ( 22)

31
2018
Autotrophic ammonia oxidation by soil thaumarchaea

L.-M. Zhang , P. R. Offre , J.-Z. He , D. T. Verhamme
Proceedings of the National Academy of Sciences of the United States of America 107 ( 40) 17240 -17245

367
2010
Use and abuse of potential rates in soil microbiology

James I. Prosser , Graeme W. Nicol , Christina Hazard
Soil Biology & Biochemistry 157 108242

1
2021
Environmental and spatial characterisation of bacterial community composition in soil to inform sampling strategies

Kate L. Baker , Silke Langenheder , Graeme W. Nicol , Dean Ricketts
Soil Biology & Biochemistry 41 ( 11) 2292 -2298

106
2009
Use of an artificial root to examine the influence of 8-hydroxyquinoline on soil microbial activity and bacterial community structure

Andrew J. Watkins , Graeme W. Nicol , Liz J. Shaw
Soil Biology & Biochemistry 41 ( 3) 580 -585

25
2009
19
2013
Effect of nitrification inhibitors on the growth and activity of Nitrosotalea devanaterra in culture and soil

Laura E. Lehtovirta-Morley , Daniël T. Verhamme , Graeme W. Nicol , James I. Prosser
Soil Biology and Biochemistry 62 129 -133

95
2013
Thaumarchaeal Ammonia Oxidation in an Acidic Forest Peat Soil Is Not Influenced by Ammonium Amendment

Nejc Stopnišek , Cécile Gubry-Rangin , Špela Höfferle , Graeme W. Nicol
Applied and Environmental Microbiology 76 ( 22) 7626 -7634

162
2010
The consequences of niche and physiological differentiation of archaeal and bacterial ammonia oxidisers for nitrous oxide emissions

Linda Hink , Cécile Gubry-Rangin , Graeme W. Nicol , James I. Prosser
The ISME Journal 12 ( 4) 1084 -1093

236
2018
Genome Sequence of “Candidatus Nitrosocosmicus franklandus” C13, a Terrestrial Ammonia-Oxidizing Archaeon

Graeme W. Nicol , Linda Hink , Cécile Gubry-Rangin , James I. Prosser
Microbiology Resource Announcements 8 ( 40)

4
2019
Chemotaxonomic characterisation of the thaumarchaeal lipidome.

Felix J. Elling , Martin Könneke , Graeme W. Nicol , Michaela Stieglmeier
Environmental Microbiology 19 ( 7) 2681 -2700

97
2017
Ammonia‐oxidising archaea living at low pH: Insights from comparative genomics

Craig W. Herbold , Laura E. Lehtovirta-Morley , Man-Young Jung , Nico Jehmlich
Environmental Microbiology 19 ( 12) 4939 -4952

75
2017
Kinetics of NH3-oxidation, NO-turnover, N2O-production and electron flow during oxygen depletion in model bacterial and archaeal ammonia oxidisers

Linda Hink , Pawel Lycus , Cécile Gubry-Rangin , Åsa Frostegård
Environmental Microbiology 19 ( 12) 4882 -4896

33
2017
Ammonia-oxidising archaea--physiology, ecology and evolution.

Christa Schleper , Graeme W. Nicol
Advances in Microbial Physiology 57 1 -41

318
2010