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John Foster
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Physiology
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Network (preview)
10
Spector, Michael
7
Richard, Hope
7
Bearson, Shawn
6
Ma, Zhuo
5
Castanie-Cornet, Marie-Pierre
4
Audia, Jonathon
4
Karem, KL
3
Conway, Tyrrell
3
Moreno, M
3
Finlay, Brett
3
Garcia-del Portillo, Francisco
3
Gong, Shimei
3
Penfound, TA
3
Tucker, Don
2
Wilmes-Riesenberg, MR
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All Publications
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2009: Sayed Atef K; Foster John W
A 750 bp sensory integration region directs global control of the Escherichia coli GadE acid resistance regulator.
Molecular microbiology 2009;71(6):1435-50.
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2007: Richard Hope; Foster John W
Sodium regulates Escherichia coli acid resistance, and influences GadX- and GadW-dependent activation of gadE.
Microbiology (Reading, England) 2007;153(Pt 9):3154-61.
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2007: Sayed Atef K; Odom Carl; Foster John W
The Escherichia coli AraC-family regulators GadX and GadW activate gadE, the central activator of glutamate-dependent acid resistance.
Microbiology (Reading, England) 2007;153(Pt 8):2584-92.
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2007: Mates Aaron K; Sayed Atef K; Foster John W
Products of the Escherichia coli acid fitness island attenuate metabolite stress at extremely low pH and mediate a cell density-dependent acid resistance.
Journal of bacteriology 2007;189(7):2759-68.
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2004: Gong Shimei; Ma Zhuo; Foster John W
The Era-like GTPase TrmE conditionally activates gadE and glutamate-dependent acid resistance in Escherichia coli.
Molecular microbiology 2004;54(4):948-61.
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2004: Foster John W
Escherichia coli acid resistance: tales of an amateur acidophile.
Nature reviews. Microbiology 2004;2(11):898-907.
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2004: Ma Zhuo; Masuda Nobuhisa; Foster John W
Characterization of EvgAS-YdeO-GadE branched regulatory circuit governing glutamate-dependent acid resistance in Escherichia coli.
Journal of bacteriology 2004;186(21):7378-89.
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2004: Richard Hope; Foster John W
Escherichia coli glutamate- and arginine-dependent acid resistance systems increase internal pH and reverse transmembrane potential.
Journal of bacteriology 2004;186(18):6032-41.
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2004: Price Stuart B; Wright James C; DeGraves Fred J; Castanie-Cornet Marie-Pierre; Foster John W
Acid resistance systems required for survival of Escherichia coli O157:H7 in the bovine gastrointestinal tract and in apple cider are different.
Applied and environmental microbiology 2004;70(8):4792-9.
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2003: Ma Zhuo; Richard Hope; Foster John W
pH-Dependent modulation of cyclic AMP levels and GadW-dependent repression of RpoS affect synthesis of the GadX regulator and Escherichia coli acid resistance.
Journal of bacteriology 2003;185(23):6852-9.
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2003: Ma Zhuo; Gong Shimei; Richard Hope; Tucker Don L; Conway Tyrrell; Foster John W
GadE (YhiE) activates glutamate decarboxylase-dependent acid resistance in Escherichia coli K-12.
Molecular microbiology 2003;49(5):1309-20.
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2003: Gong Shimei; Richard Hope; Foster John W
YjdE (AdiC) is the arginine:agmatine antiporter essential for arginine-dependent acid resistance in Escherichia coli.
Journal of bacteriology 2003;185(15):4402-9.
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2003: Tucker Don L; Tucker Nancy; Ma Zhuo; Foster John W; Miranda Regina L; Cohen Paul S; Conway Tyrrell
Genes of the GadX-GadW regulon in Escherichia coli.
Journal of bacteriology 2003;185(10):3190-201.
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2003: Richard Hope T; Foster John W
Acid resistance in Escherichia coli.
Advances in applied microbiology 2003;52():167-86.
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2003: Audia Jonathon P; Foster John W
Acid shock accumulation of sigma S in Salmonella enterica involves increased translation, not regulated degradation.
Journal of molecular microbiology and biotechnology 2003;5(1):17-28.
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2002: Ma Zhuo; Richard Hope; Tucker Don L; Conway Tyrrell; Foster John W
Collaborative regulation of Escherichia coli glutamate-dependent acid resistance by two AraC-like regulators, GadX and GadW (YhiW).
Journal of bacteriology 2002;184(24):7001-12.
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2002: Lim Sung-Young; Joe Min-Ho; Song Sang-Sun; Lee Mun-Hee; Foster John W; Park Yong-Keun; Choi Soon-Yong; Lee In-Soo
CuiD is a crucial gene for survival at high copper environment in Salmonella enterica serovar Typhimurium.
Molecules and cells 2002;14(2):177-84.
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2002: Bang Iel Soo; Audia Jonathon P; Park Yong Koon; Foster John W
Autoinduction of the ompR response regulator by acid shock and control of the Salmonella enterica acid tolerance response.
Molecular microbiology 2002;44(5):1235-50.
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2001: Shin S; Castanie-Cornet M P; Foster J W; Crawford J A; Brinkley C; Kaper J B
An activator of glutamate decarboxylase genes regulates the expression of enteropathogenic Escherichia coli virulence genes through control of the plasmid-encoded regulator, Per.
Molecular microbiology 2001;41(5):1133-50.
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2001: Bastian F O; Foster J W
Spiroplasma sp. 16S rDNA in Creutzfeldt-Jakob disease and scrapie as shown by PCR and DNA sequence analysis.
Journal of neuropathology and experimental neurology 2001;60(6):613-20.
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2001: Audia J P; Webb C C; Foster J W
Breaking through the acid barrier: an orchestrated response to proton stress by enteric bacteria.
International journal of medical microbiology : IJMM 2001;291(2):97-106.
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2001: Castanie-Cornet M P; Foster J W
Escherichia coli acid resistance: cAMP receptor protein and a 20 bp cis-acting sequence control pH and stationary phase expression of the gadA and gadBC glutamate decarboxylase genes.
Microbiology (Reading, England) 2001;147(Pt 3):709-15.
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2000: Moreno M; Audia J P; Bearson S M; Webb C; Foster J W
Regulation of sigma S degradation in Salmonella enterica var typhimurium: in vivo interactions between sigma S, the response regulator MviA(RssB) and ClpX.
Journal of molecular microbiology and biotechnology 2000;2(2):245-54.
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2000: Bang I S; Kim B H; Foster J W; Park Y K
OmpR regulates the stationary-phase acid tolerance response of Salmonella enterica serovar typhimurium.
Journal of bacteriology 2000;182(8):2245-52.
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2000: Price S B; Cheng C M; Kaspar C W; Wright J C; DeGraves F J; Penfound T A; Castanie-Cornet M P; Foster J W
Role of rpoS in acid resistance and fecal shedding of Escherichia coli O157:H7.
Applied and environmental microbiology 2000;66(2):632-7.
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1999: Spector M P; Garcia del Portillo F; Bearson S M; Mahmud A; Magut M; Finlay B B; Dougan G; Foster J W; Pallen M J
The rpoS-dependent starvation-stress response locus stiA encodes a nitrate reductase (narZYWV) required for carbon-starvation-inducible thermotolerance and acid tolerance in Salmonella typhimurium.
Microbiology (Reading, England) 1999;145 ( Pt 11)():3035-45.
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1999: Webb C; Moreno M; Wilmes-Riesenberg M; Curtiss R; Foster J W
Effects of DksA and ClpP protease on sigma S production and virulence in Salmonella typhimurium.
Molecular microbiology 1999;34(1):112-23.
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1999: Fang F C; DeGroote M A; Foster J W; Bäumler A J; Ochsner U; Testerman T; Bearson S; Giárd J C; Xu Y; Campbell G; Laessig T
Virulent Salmonella typhimurium has two periplasmic Cu, Zn-superoxide dismutases.
Proceedings of the National Academy of Sciences of the United States of America 1999;96(13):7502-7.
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1999: Castanie-Cornet M P; Penfound T A; Smith D; Elliott J F; Foster J W
Control of acid resistance in Escherichia coli.
Journal of bacteriology 1999;181(11):3525-35.
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1999: Foster J W
When protons attack: microbial strategies of acid adaptation.
Current opinion in microbiology 1999;2(2):170-4.
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1999: Park K R; Giard J C; Eom J H; Bearson S; Foster J W
Cyclic AMP receptor protein and TyrR are required for acid pH and anaerobic induction of hyaB and aniC in Salmonella typhimurium.
Journal of bacteriology 1999;181(2):689-94.
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1999: Penfound T; Foster J W
NAD-dependent DNA-binding activity of the bifunctional NadR regulator of Salmonella typhimurium.
Journal of bacteriology 1999;181(2):648-55.
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1999: Foster J W; Moreno M
Inducible acid tolerance mechanisms in enteric bacteria.
Novartis Foundation symposium 1999;221():55-69; discussion 70-4.
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1998: Bearson B L; Wilson L; Foster J W
A low pH-inducible, PhoPQ-dependent acid tolerance response protects Salmonella typhimurium against inorganic acid stress.
Journal of bacteriology 1998;180(9):2409-17.
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1997: Bearson S; Bearson B; Foster J W
Acid stress responses in enterobacteria.
FEMS microbiology letters 1997;147(2):173-80.
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1997: Wilmes-Riesenberg M R; Foster J W; Curtiss R
An altered rpoS allele contributes to the avirulence of Salmonella typhimurium LT2.
Infection and immunity 1997;65(1):203-10.
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1996: Baik H S; Bearson S; Dunbar S; Foster J W
The acid tolerance response of Salmonella typhimurium provides protection against organic acids.
Microbiology (Reading, England) 1996;142 ( Pt 11)():3195-200.
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1996: Hall H K; Foster J W
The role of fur in the acid tolerance response of Salmonella typhimurium is physiologically and genetically separable from its role in iron acquisition.
Journal of bacteriology 1996;178(19):5683-91.
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1996: Lin J; Smith M P; Chapin K C; Baik H S; Bennett G N; Foster J W
Mechanisms of acid resistance in enterohemorrhagic Escherichia coli.
Applied and environmental microbiology 1996;62(9):3094-100.
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1996: Park Y K; Bearson B; Bang S H; Bang I S; Foster J W
Internal pH crisis, lysine decarboxylase and the acid tolerance response of Salmonella typhimurium.
Molecular microbiology 1996;20(3):605-11.
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1996: Bearson S M; Benjamin W H; Swords W E; Foster J W
Acid shock induction of RpoS is mediated by the mouse virulence gene mviA of Salmonella typhimurium.
Journal of bacteriology 1996;178(9):2572-9.
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1996: Riesenberg-Wilmes M R; Bearson B; Foster J W; Curtis R
Role of the acid tolerance response in virulence of Salmonella typhimurium.
Infection and immunity 1996;64(4):1085-92.
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1995: Lin J; Lee I S; Frey J; Slonczewski J L; Foster J W
Comparative analysis of extreme acid survival in Salmonella typhimurium, Shigella flexneri, and Escherichia coli.
Journal of bacteriology 1995;177(14):4097-104.
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1995: Lee I S; Lin J; Hall H K; Bearson B; Foster J W
The stationary-phase sigma factor sigma S (RpoS) is required for a sustained acid tolerance response in virulent Salmonella typhimurium.
Molecular microbiology 1995;17(1):155-67.
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1995: Foster J W
Low pH adaptation and the acid tolerance response of Salmonella typhimurium.
Critical reviews in microbiology 1995;21(4):215-37.
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1995: Foster J W; Spector M P
How Salmonella survive against the odds.
Annual review of microbiology 1995;49():145-74.
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1995: Hall H K; Karem K L; Foster J W
Molecular responses of microbes to environmental pH stress.
Advances in microbial physiology 1995;37():229-72.
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1994: Karem K L; Foster J W; Bej A K
Adaptive acid tolerance response (ATR) in Aeromonas hydrophila.
Microbiology (Reading, England) 1994;140 ( Pt 7)():1731-6.
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1994: Foster J W; Bearson B
Acid-sensitive mutants of Salmonella typhimurium identified through a dinitrophenol lethal screening strategy.
Journal of bacteriology 1994;176(9):2596-602.
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1994: Lee I S; Slonczewski J L; Foster J W
A low-pH-inducible, stationary-phase acid tolerance response in Salmonella typhimurium.
Journal of bacteriology 1994;176(5):1422-6.
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1994: Foster J W; Park Y K; Bang I S; Karem K; Betts H; Hall H K; Shaw E
Regulatory circuits involved with pH-regulated gene expression in Salmonella typhimurium.
Microbiology (Reading, England) 1994;140 ( Pt 2)():341-52.
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1993: Garcia-del Portillo F; Foster J W; Finlay B B
Role of acid tolerance response genes in Salmonella typhimurium virulence.
Infection and immunity 1993;61(10):4489-92.
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1993: Karem K; Foster J W
The influence of DNA topology on the environmental regulation of a pH-regulated locus in Salmonella typhimurium.
Molecular microbiology 1993;10(1):75-86.
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1993: Foster J W; Penfound T
The bifunctional NadR regulator of Salmonella typhimurium: location of regions involved with DNA binding, nucleotide transport and intramolecular communication.
FEMS microbiology letters 1993;112(2):179-83.
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1993: Foster J W
The acid tolerance response of Salmonella typhimurium involves transient synthesis of key acid shock proteins.
Journal of bacteriology 1993;175(7):1981-7.
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1992: Garcia-del Portillo F; Foster J W; Maguire M E; Finlay B B
Characterization of the micro-environment of Salmonella typhimurium-containing vacuoles within MDCK epithelial cells.
Molecular microbiology 1992;6(22):3289-97.
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1992: Foster J W; Hall H K
Effect of Salmonella typhimurium ferric uptake regulator (fur) mutations on iron- and pH-regulated protein synthesis.
Journal of bacteriology 1992;174(13):4317-23.
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1991: Foster J W
Salmonella acid shock proteins are required for the adaptive acid tolerance response.
Journal of bacteriology 1991;173(21):6896-902.
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1991: Foster J W; Hall H K
Inducible pH homeostasis and the acid tolerance response of Salmonella typhimurium.
Journal of bacteriology 1991;173(16):5129-35.
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1990: Foster J W; Park Y K; Penfound T; Fenger T; Spector M P
Regulation of NAD metabolism in Salmonella typhimurium: molecular sequence analysis of the bifunctional nadR regulator and the nadA-pnuC operon.
Journal of bacteriology 1990;172(8):4187-96.
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1990: Foster J W; Hall H K
Adaptive acidification tolerance response of Salmonella typhimurium.
Journal of bacteriology 1990;172(2):771-8.
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1989: Foster J W; Aliabadi Z
pH-regulated gene expression in Salmonella: genetic analysis of aniG and cloning of the earA regulator.
Molecular microbiology 1989;3(11):1605-15.
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1988: Aliabadi Z; Park Y K; Slonczewski J L; Foster J W
Novel regulatory loci controlling oxygen- and pH-regulated gene expression in Salmonella typhimurium.
Journal of bacteriology 1988;170(2):842-51.
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1988: Spector M P; Park Y K; Tirgari S; Gonzalez T; Foster J W
Identification and characterization of starvation-regulated genetic loci in Salmonella typhimurium by using Mu d-directed lacZ operon fusions.
Journal of bacteriology 1988;170(1):345-51.
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1987: Foster J W; Holley-Guthrie E A; Warren F
Regulation of NAD metabolism in Salmonella typhimurium: genetic analysis and cloning of the nadR repressor locus.
Molecular & general genetics : MGG 1987;208(1-2):279-87.
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1986: Hill-Chappell J M; Spector M P; Foster J W
The pyridine nucleotide cycle of Salmonella typhimurium: genetic characterization of the pncXA operon.
Molecular & general genetics : MGG 1986;205(3):507-14.
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1986: Spector M P; Aliabadi Z; Gonzalez T; Foster J W
Global control in Salmonella typhimurium: two-dimensional electrophoretic analysis of starvation-, anaerobiosis-, and heat shock-inducible proteins.
Journal of bacteriology 1986;168(1):420-4.
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1986: Tirgari S; Spector M P; Foster J W
Genetics of NAD metabolism in Salmonella typhimurium and cloning of the nadA and pnuC loci.
Journal of bacteriology 1986;167(3):1086-8.
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1986: Foster J W; Spector M P
Phosphate starvation regulon of Salmonella typhimurium.
Journal of bacteriology 1986;166(2):666-9.
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1986: Aliabadi Z; Warren F; Mya S; Foster J W
Oxygen-regulated stimulons of Salmonella typhimurium identified by Mu d(Ap lac) operon fusions.
Journal of bacteriology 1986;165(3):780-6.
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1985: Holley E A; Spector M P; Foster J W
Regulation of NAD biosynthesis in Salmonella typhimurium: expression of nad-lac gene fusions and identification of a nad regulatory locus.
Journal of general microbiology 1985;131(10):2759-70.
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1985: Spector M P; Hill J M; Holley E A; Foster J W
Genetic characterization of pyridine nucleotide uptake mutants of Salmonella typhimurium.
Journal of general microbiology 1985;131(6):1313-22.
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1984: Foster J W; Holley E A; Mya S
NAD metabolism in Salmonella typhimurium: isolation of pyridine analogue supersensitive (pas) and pas suppressor mutants.
Journal of general microbiology 1984;130(11):2873-81.
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1982: Holley E A; Foster J W
Bacteriophage P22 as a vector for Mu mutagenesis in Salmonella typhimurium: isolation of nad-lac and pnc-lac gene fusions.
Journal of bacteriology 1982;152(2):959-62.
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1981: Foster J W; Holley E A
Genetic mapping of the Salmonella typhimurium pncB locus.
Journal of bacteriology 1981;148(1):394-6.
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