Hidetoshi Urakawa
TitleCited byYear
Ammonia oxidation kinetics determine niche separation of nitrifying Archaea and Bacteria
W Martens-Habbena, PM Berube, H Urakawa, R José, DA Stahl
Nature 461 (7266), 976-979, 2009
Nitrosopumilus maritimus genome reveals unique mechanisms for nitrification and autotrophy in globally distributed marine crenarchaea
CB Walker, JR De La Torre, MG Klotz, H Urakawa, N Pinel, DJ Arp, ...
Proceedings of the National Academy of Sciences 107 (19), 8818-8823, 2010
BB Ward, DJ Arp, MG Klotz
American Society for Microbiology Press, 2011
Microbial diversity in marine sediments from Sagami Bay and Tokyo Bay, Japan, as determined by 16S rRNA gene analysis
H Urakawa, K Kita-Tsukamoto, K Ohwada
Microbiology 145 (11), 3305-3315, 1999
Optimization of single-base-pair mismatch discrimination in oligonucleotide microarrays
H Urakawa, S El Fantroussi, H Smidt, JC Smoot, EH Tribou, JJ Kelly, ...
Appl. Environ. Microbiol. 69 (5), 2848-2856, 2003
Marine ammonia-oxidizing archaeal isolates display obligate mixotrophy and wide ecotypic variation
W Qin, SA Amin, W Martens-Habbena, CB Walker, H Urakawa, AH Devol, ...
Proceedings of the National Academy of Sciences 111 (34), 12504-12509, 2014
Characterization of depth‐related population variation in microbial communities of a coastal marine sediment using 16S rDNA‐based approaches and quinone profiling
H Urakawa, T Yoshida, M Nishimura, K Ohwada
Environmental microbiology 2 (5), 542-554, 2000
Low temperature decreases the phylogenetic diversity of ammonia-oxidizing archaea and bacteria in aquarium biofiltration systems
H Urakawa, Y Tajima, Y Numata, S Tsuneda
Appl. Environ. Microbiol. 74 (3), 894-900, 2008
Single-base-pair discrimination of terminal mismatches by using oligonucleotide microarrays and neural network analyses
H Urakawa, PA Noble, S El Fantroussi, JJ Kelly, DA Stahl
Appl. Environ. Microbiol. 68 (1), 235-244, 2002
Direct profiling of environmental microbial populations by thermal dissociation analysis of native rRNAs hybridized to oligonucleotide microarrays
S El Fantroussi, H Urakawa, AE Bernhard, JJ Kelly, PA Noble, H Smidt, ...
Appl. Environ. Microbiol. 69 (4), 2377-2382, 2003
Parallel characterization of anaerobic toluene-and ethylbenzene-degrading microbial consortia by PCR-denaturing gradient gel electrophoresis, RNA-DNA membrane hybridization …
Y Koizumi, JJ Kelly, T Nakagawa, H Urakawa, S El-Fantroussi, ...
Appl. Environ. Microbiol. 68 (7), 3215-3225, 2002
The biology of vibrios.
FL Thompson, B Austin, J Swings
The biology of vibrios., 2006
High abundance of ammonia-oxidizing Archaea in coastal waters, determined using a modified DNA extraction method
H Urakawa, W Martens-Habbena, DA Stahl
Appl. Environ. Microbiol. 76 (7), 2129-2135, 2010
DNA microarray detection of nitrifying bacterial 16S rRNA in wastewater treatment plant samples
JJ Kelly, S Siripong, J McCormack, LR Janus, H Urakawa, S El Fantroussi, ...
Water research 39 (14), 3229-3238, 2005
The production of nitric oxide by marine ammonia‐oxidizing archaea and inhibition of archaeal ammonia oxidation by a nitric oxide scavenger
W Martens‐Habbena, W Qin, REA Horak, H Urakawa, AJ Schauer, ...
Environmental microbiology 17 (7), 2261-2274, 2015
A proposal to transfer Vibrio marinus (Russell 1891) to a new genus Moritella gen. nov. as Moritella marina comb. nov.
H Urakawa, K Kita‐Tsukamoto, SE Steven, K Ohwada, RR Colwell
FEMS microbiology letters 165 (2), 373-378, 1998
16S rDNA genotyping using PCR/RFLP (restriction fragment length polymorphism) analysis among the family Vibrionaceae
H Urakawa, K Kita‐Tsukamoto, K Ohwada
FEMS microbiology letters 152 (1), 125-132, 1997
Aquatic environment
H Urakawa, ING Rivera
The biology of vibrios, 175-189, 2006
Comparison of extraction methods for quantitative analysis of core and intact polar glycerol dialkyl glycerol tetraethers (GDGTs) in environmental samples
C Huguet, W Martens‐Habbena, H Urakawa, DA Stahl, AE Ingalls
Limnology and Oceanography: Methods 8 (4), 127-145, 2010
Hydrothermal vent gastropods from the same family (Provannidae) harbour ɛ‐and γ‐proteobacterial endosymbionts
H Urakawa, N Dubilier, Y Fujiwara, DE Cunningham, S Kojima, DA Stahl
Environmental Microbiology 7 (5), 750-754, 2005
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Articles 1–20