Herbert RA (1986) The ecology and physiology of psychrotrophic micro-organism. In: Herbert RA,
Codd GA (eds) Society for gen microbiology. Academic Press, Cambridge, pp 1–24
Herbraud M, Potier P (1999) Cold shock response and low temperature adaptation in psycrophilic
bacteria. J Mol Microbiol Biotechnol 1:211–219
Hoang LC, Dumomt F, Marechal PA, Thanh ML, Gervais P (2007) Rates of chilling to 0
C:
implication for the survival of microorganisms and relationship with membrane fluidity modification. Appl Microbiol Biotechnol 77:1379–1387
Hoch JA (2000) Two component and phosphorelay signal transduction. Curr Opin Microbiol
3:165–170
Horton AJ, Hak KM, Steffan RJ, Foster JW, Bej AK (2000) Adaptive response to cold temperatures
and characterization of cspA in Salmonella typhimurium LT2. Antonie van Leeuwenhoek
77:13–20
Hoyoux A, Jennes I, Dubois P, Genicot S, Dubail F, Francois JM, Baise E, Feller G, Gerday C
(2001) Cold-adapted beta-galactosidase from the Antarctic psychrophile Pseudoalteromonas
haloplanktis. Appl Environ Microbiol 67:1529–1535
Hurme R, Berndt K, Normark SJ, Rhen M (1997) A proteinaceous gene regulatory thermometer in
Salmonella. Cell 90:55–64
Jiang W, Hou Y, Inouye M (1997) CspA, the major cold-shock protein of Escherichia coli, is an
RNA chaperone. J Biol Chem 272:196–202
Jones PG, Vanbogelen RA, Neidhart FC (1987) Induction of proteins in response to low temperature in Escherichia coli. J Bacteriol 69:2092–2095
Jorov A, Zhorov BS, Yang DSC (2004) Theoretical study of interaction of winter flounder
antifreeze protein with ice. Protein Sci 13:1524–1537
Junge K, Eicken H, Deming JW (2003) Motility of Colwellia psychrerythraea strain 34H at subzero
temperatures. Appl Environ Microbiol 69:4282–4284
Kaan T, Jurgen B, Schweder T (1999) Regulation of the expression of the cold shock proteins CspB
and CspC in Bacillus subtilis. Mol Gen Genom 262:351–354
Kaan T, Mader U, Bandow J, Schweder T (2002) Genome-wide transcriptional profiling of the
Bacillus subtilis cold-shock response. Microbiol 148:3441–3455
Kaasen I, Falkenberg P, Styrvold OB, Stroem AR (1992) Molecular cloning and physical mapping
of the otsBA genes, which encode the osmoregulatory trehalose pathway of Escherichia coli:
evidence that transcription is activated by Kat F(AppR). J Bacteriol 174:889–898
Kakegawa TS, Hirose S, Kashiwagi K, Igarshi K (1986) Effect of polyamines on in vitro reconstitution of ribosomal sub units. Eur J Biochem 158:265–269
Kandror O, DeLeon A, Goldberg AL (2002) Trehalose synthesis is induced upon exposure of
Escherichia coli to cold and is essential for viability at low temperatures. Proc Natl Acad Sc
99:9727–9732
Karner MB, Delong EF, Karl DM (2001) Archeal dominance in the mesophilic zone of Pacific
Ocean. Nature 409:507–510
Kawahara H, Li J, Griffth M, Glick BR (2001) Relationship between Antifreeze protein and
Freezing Resistance in Pseudomonas putida GR 12-2. Curr Microbiol 43:365–370
Kawahara H, Nakano Y, Omiya K, Muryoi N, Nishikawa J, Obata H (2004) Production of two
types of ice crystal controlling proteins in Antarctic bacterium. J Biosci Bioeng 98:220–223
Kawahara H, Iwanaka Y, Higa S, Muryoi N, Sato M, Honda M, Omura H, Obata H (2007) A novel,
intracellular antifreeze protein in an Antarctic bacterium, Flavobacterium xanthum. Cryo Letters
28:39–49
Kempf B, Bremer E (1998) Uptake and synthesis of compatible solutes as microbial stress response
to high-osmolality environments. Arch Microbiol 170:319–330
Khan M, Kumar V, Goel R (2003) Characterization and localization of fluorescent Pseudomonas
cold shock protein(S) by Monospecific polyclonal Antibodies. Microbial Immunol 47:895–901
Khan M, Kumar S, Goel R (2007) Development of immunoassay for the identification of cold shock
proteins from diversified micro flora. Afr J Biotechnol 6:252–257
220
P. K. Mishra et al.
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