| NCIMB number | NCIMB 8014 |
| Deposit type | Bacteria |
| Type strain | No |
| GMO | No |
| Taxon name | Lactobacillus plantarum |
| Depositor designation | 17/5 Glaxo664 |
| Preservation method | Lyophilised |
| Other catalogue information | Phage host |
| Price band | A |
| Media | 020 |
| Gas regime | aerobic |
| Growth factors (and/or information) | MRS, 30C, 48hr: good growth, some punctiform variation within crowded zone of colonies. |
| ACDP category | 1 |
| Colony Edge | Entire |
| Colony Surface | Smooth |
| Colony Shape | Circular |
| Colony Elevation | Low Convex |
| Colony Colour | White |
| Colony Opacity | Opaque |
| Cellular Shape | Rod/Filaments |
| Cellular Size | medium |
| Gram stain | Gram Positive |
| Depositor Company | American Type Culture Collection (ATCC) |
| Depositor Address | 12301 Parklawn Drive Rockville Maryland 20852 U.S.A. |
| Source | Corn silage |
| Date of Accession | 06/02/1950 |
| History | E.McCoy |
| Other collection IDs | ATCC8014 BUCSAV217 BUCSAV449 CCM1904 CIPA159 DSM20205 IAM1401 ICPB2080 IFO3070 JCM1057 NCDO82 NCIMB6376 NCIMB8030 NCIMB8864 NCIMB8960 NCTC6376 |
| Yeast? | False |
| K12 | No |
| References | Snell E.E. and Wright L.D. (1941) J. biol. Chem. 139 pp675-686 Shankman S. (1943) J. biol. Chem. 150 p305 Barton-Wright E.C. (1944) Biochem J. 38 p314-319 Evans R.J. (1948) Arch Biochem. 16 p357 MacLeod R.A. and Snell E.E. (1950) J. Bact. 59 p783 Kundrat W. (1958) Zentbl. Bakt. ParasitKde Abt. II 111 p250 Braekkan O.R. (1960) J. Bact. 80 p626 Nathan H.A. (1961) Arch. Mikrobiol. 38 p107 Zygmunt W.A. et al (1962) Can. J. Microbiol. 8 pp429-435 Girdwood R.H. (1963) J. med Lab. Tech. 20 p26 Streightoff F. (1963) J. Bact. 85 p42 Glaser L. (1963) Biochim. biophys. Acta. 67 p525 Ikawa M. (1963) J. Bact. 85 p772 Logan D.M. and Singer M.F. (1968) J. biol. Chem 243923) pp6161-6166. The processive degradation of individual polyribonucleic chains III. Lactobacillus plantarum exoribonuclease Norton S.J. and Chen Y.T. (1969) Arch. Biochem. Biophys. 129 pp560-566. Beta aspartylhydroxamic acid: its action as a feedback inhibitor and a repressor of asparagine syntetase in L. arabinosus. Engelbrecht H.L. and Sadoff H.L. (1969) J. biol. Chem. 244(22) pp6228-6232. Properties of purine nucleoside phosphorylases from spores and vegetative cells of B. aureus and their modification by orthophosphate. Schleifer K.H. and Kandler O. (1972) Bact. Rev. 36(4) p407. J. Appl. Bacteriol. 1993, vol 75, no 2, pp 168-175 (Unknown), 136 106, 113, 1971 (Unknown), Lactic acid fermentation of concentrated coconut water Proc Asia-Pacific Biotechnol Congr 1986, 93-99, 1986 AOAC International, Pantothenic acid in vitamin preparations, microbiological method Gaithersburg, MD, AOAC International; AOAC Official Method 945.74, 1990 Dietary Supplements: Oil-and Water-Soluble Vitamins with Minerals Tablets.Rockville, MD: U.S. Pharmacopeia, (journal unknown) , USP USP28-NF23, 2005 Comparison of partial malolactic enzyme gene sequences for phylogenetic analysis of some lactic acid bacteria species and relationships with the malic enzyme, Int J Syst Bacteriol 49 Pt 4, 1417-1428, 1999 Analysis of genes encoding D-alanine:D-alanine ligase-related enzymes in Leuconostoc mesenteroides and Lactobacillus spp, Gene 152(1), 79-83, 1995 Arginine biosynthesis and regulation in Lactobacillus plantarum: the carA gene and the argCJBDF cluster are divergently transcribed, J Bacteriol 179(8), 2697-2706, 1997 Characterization of the melA locus for alpha-galactosidase in Lactobacillus plantarum, Appl Environ Microbiol 68(11), 5464-5471, 2002 Cloning and characterization of cspL and cspP, two cold-inducible genes from Lactobacillus plantarum, J Bacteriol 179(9), 3039-3042, 1997 Cloning, expression, purification, and characterization of a novel esterase from Lactobacillus plantarum, Mol Biotechnol 44(3), 242-249, 2010 Comparison of three tannases cloned from closely related lactobacillus species: L. Plantarum, L. Paraplantarum, and L. Pentosus, BMC Microbiol 14, 87-87, 2013 Construction of a new reporter system to study the NaCl-dependent dnaK promoter activity of Lactobacillus sanfranciscensis, Appl Microbiol Biotechnol 70(6), 690-697, 2006 Deoxyribonucleic acid homology among Lactobacillus species of the subgenus Streptobacterium Orla-Jensen, Int J Syst Bacteriol 25, 160-172, 1975 Detection of arc Genes Related with the Ethyl Carbamate Precursors in Wine Lactic Acid Bacteria, J Agric Food Chem 57(5), 1841-1847, 2009 In Lactobacillus plantarum, carbamoyl phosphate is synthesized by two carbamoyl-phosphate synthetases (CPS): carbon dioxide differentiates the arginine-repressed from the pyrimidine-regulated CPS, J Bacteriol 182(12), 3416-3422, 2000 ISLpl1 is a functional IS30-related insertion element in Lactobacillus plantarum that is also found in other lactic acid bacteria, Appl Environ Microbiol 69(10), 6032-6040, 2003 Lactobacillus pentosus (Fred, Peterson and Anderson) sp. nov., nom. rev, Int J Syst Bacteriol 37, 339-341, 1987 Lactobacillus plantarum ccl gene is non-essential, arginine-repressed and codes for a conserved protein in Firmicutes, Arch Microbiol 183(5), 307-316, 2005 Linoleate isomerase activity occurs in lactic acid bacteria strains and is affected by pH and temperature, J Appl Microbiol 111(3), 593-606, 2011 Rapid discrimination and classification of the Lactobacillus plantarum group based on a partial dnaK sequence and DNA fingerprinting techniques, Antonie Van Leeuwenhoek 97(3), 289-296, 2010 Rapid species identification within two groups of closely related lactobacilli using PCR primers that target the 16S/23S rRNA spacer region, FEMS Microbiol Lett 161(1), 97-106, 1998 Repression of the pyr operon in Lactobacillus plantarum prevents its ability to grow at low carbon dioxide levels, J Bacteriol 187(6), 2093-2104, 2005 Structural and functional analysis of two cryptic plasmids from Lactobacillus pentosus MD353 and Lactobacillus plantarum ATCC 8014, Mol Gen Genet 234(2), 265-274, 1992 Structure and organisation of the pyrimidine biosynthesis pathway genes in Lactobacillus plantarum: a PCR strategy for sequencing without cloning, Gene 182(1-2), 37-43, 1996 Two arginine repressors regulate arginine biosynthesis in Lactobacillus plantarum, J Bacteriol 186(18), 6059-6069, 2004 |
| PubMed Publication | https://www.ncbi.nlm.nih.gov/m/pubmed/26782045 |
| NCIMB number | NCIMB 8014 |
| Deposit type | Bacteria |
| Type strain | No |
| GMO | No |
| Taxon name | Lactobacillus plantarum |
| Depositor designation | 17/5 Glaxo664 |
| Preservation method | Lyophilised |
| Other catalogue information | Phage host |
| Price band | A |
| Media | 020 |
| Gas regime | aerobic |
| Growth factors (and/or information) | MRS, 30C, 48hr: good growth, some punctiform variation within crowded zone of colonies. |
| ACDP category | 1 |
| Colony Edge | Entire |
| Colony Surface | Smooth |
| Colony Shape | Circular |
| Colony Elevation | Low Convex |
| Colony Colour | White |
| Colony Opacity | Opaque |
| Cellular Shape | Rod/Filaments |
| Cellular Size | medium |
| Gram stain | Gram Positive |
| Depositor Company | American Type Culture Collection (ATCC) |
| Depositor Address | 12301 Parklawn Drive Rockville Maryland 20852 U.S.A. |
| Source | Corn silage |
| Date of Accession | 06/02/1950 |
| History | E.McCoy |
| Other collection IDs | ATCC8014 BUCSAV217 BUCSAV449 CCM1904 CIPA159 DSM20205 IAM1401 ICPB2080 IFO3070 JCM1057 NCDO82 NCIMB6376 NCIMB8030 NCIMB8864 NCIMB8960 NCTC6376 |
| Yeast? | False |
| K12 | No |
| References | Snell E.E. and Wright L.D. (1941) J. biol. Chem. 139 pp675-686 Shankman S. (1943) J. biol. Chem. 150 p305 Barton-Wright E.C. (1944) Biochem J. 38 p314-319 Evans R.J. (1948) Arch Biochem. 16 p357 MacLeod R.A. and Snell E.E. (1950) J. Bact. 59 p783 Kundrat W. (1958) Zentbl. Bakt. ParasitKde Abt. II 111 p250 Braekkan O.R. (1960) J. Bact. 80 p626 Nathan H.A. (1961) Arch. Mikrobiol. 38 p107 Zygmunt W.A. et al (1962) Can. J. Microbiol. 8 pp429-435 Girdwood R.H. (1963) J. med Lab. Tech. 20 p26 Streightoff F. (1963) J. Bact. 85 p42 Glaser L. (1963) Biochim. biophys. Acta. 67 p525 Ikawa M. (1963) J. Bact. 85 p772 Logan D.M. and Singer M.F. (1968) J. biol. Chem 243923) pp6161-6166. The processive degradation of individual polyribonucleic chains III. Lactobacillus plantarum exoribonuclease Norton S.J. and Chen Y.T. (1969) Arch. Biochem. Biophys. 129 pp560-566. Beta aspartylhydroxamic acid: its action as a feedback inhibitor and a repressor of asparagine syntetase in L. arabinosus. Engelbrecht H.L. and Sadoff H.L. (1969) J. biol. Chem. 244(22) pp6228-6232. Properties of purine nucleoside phosphorylases from spores and vegetative cells of B. aureus and their modification by orthophosphate. Schleifer K.H. and Kandler O. (1972) Bact. Rev. 36(4) p407. J. Appl. Bacteriol. 1993, vol 75, no 2, pp 168-175 (Unknown), 136 106, 113, 1971 (Unknown), Lactic acid fermentation of concentrated coconut water Proc Asia-Pacific Biotechnol Congr 1986, 93-99, 1986 AOAC International, Pantothenic acid in vitamin preparations, microbiological method Gaithersburg, MD, AOAC International; AOAC Official Method 945.74, 1990 Dietary Supplements: Oil-and Water-Soluble Vitamins with Minerals Tablets.Rockville, MD: U.S. Pharmacopeia, (journal unknown) , USP USP28-NF23, 2005 Comparison of partial malolactic enzyme gene sequences for phylogenetic analysis of some lactic acid bacteria species and relationships with the malic enzyme, Int J Syst Bacteriol 49 Pt 4, 1417-1428, 1999 Analysis of genes encoding D-alanine:D-alanine ligase-related enzymes in Leuconostoc mesenteroides and Lactobacillus spp, Gene 152(1), 79-83, 1995 Arginine biosynthesis and regulation in Lactobacillus plantarum: the carA gene and the argCJBDF cluster are divergently transcribed, J Bacteriol 179(8), 2697-2706, 1997 Characterization of the melA locus for alpha-galactosidase in Lactobacillus plantarum, Appl Environ Microbiol 68(11), 5464-5471, 2002 Cloning and characterization of cspL and cspP, two cold-inducible genes from Lactobacillus plantarum, J Bacteriol 179(9), 3039-3042, 1997 Cloning, expression, purification, and characterization of a novel esterase from Lactobacillus plantarum, Mol Biotechnol 44(3), 242-249, 2010 Comparison of three tannases cloned from closely related lactobacillus species: L. Plantarum, L. Paraplantarum, and L. Pentosus, BMC Microbiol 14, 87-87, 2013 Construction of a new reporter system to study the NaCl-dependent dnaK promoter activity of Lactobacillus sanfranciscensis, Appl Microbiol Biotechnol 70(6), 690-697, 2006 Deoxyribonucleic acid homology among Lactobacillus species of the subgenus Streptobacterium Orla-Jensen, Int J Syst Bacteriol 25, 160-172, 1975 Detection of arc Genes Related with the Ethyl Carbamate Precursors in Wine Lactic Acid Bacteria, J Agric Food Chem 57(5), 1841-1847, 2009 In Lactobacillus plantarum, carbamoyl phosphate is synthesized by two carbamoyl-phosphate synthetases (CPS): carbon dioxide differentiates the arginine-repressed from the pyrimidine-regulated CPS, J Bacteriol 182(12), 3416-3422, 2000 ISLpl1 is a functional IS30-related insertion element in Lactobacillus plantarum that is also found in other lactic acid bacteria, Appl Environ Microbiol 69(10), 6032-6040, 2003 Lactobacillus pentosus (Fred, Peterson and Anderson) sp. nov., nom. rev, Int J Syst Bacteriol 37, 339-341, 1987 Lactobacillus plantarum ccl gene is non-essential, arginine-repressed and codes for a conserved protein in Firmicutes, Arch Microbiol 183(5), 307-316, 2005 Linoleate isomerase activity occurs in lactic acid bacteria strains and is affected by pH and temperature, J Appl Microbiol 111(3), 593-606, 2011 Rapid discrimination and classification of the Lactobacillus plantarum group based on a partial dnaK sequence and DNA fingerprinting techniques, Antonie Van Leeuwenhoek 97(3), 289-296, 2010 Rapid species identification within two groups of closely related lactobacilli using PCR primers that target the 16S/23S rRNA spacer region, FEMS Microbiol Lett 161(1), 97-106, 1998 Repression of the pyr operon in Lactobacillus plantarum prevents its ability to grow at low carbon dioxide levels, J Bacteriol 187(6), 2093-2104, 2005 Structural and functional analysis of two cryptic plasmids from Lactobacillus pentosus MD353 and Lactobacillus plantarum ATCC 8014, Mol Gen Genet 234(2), 265-274, 1992 Structure and organisation of the pyrimidine biosynthesis pathway genes in Lactobacillus plantarum: a PCR strategy for sequencing without cloning, Gene 182(1-2), 37-43, 1996 Two arginine repressors regulate arginine biosynthesis in Lactobacillus plantarum, J Bacteriol 186(18), 6059-6069, 2004 |
| PubMed Publication | https://www.ncbi.nlm.nih.gov/m/pubmed/26782045 |