Citation: | LIN Xuezheng, WANG Zhen, LI Yang, LI Jiang. Genome-wide transcriptional response of the Arctic bacterium Pseudoalteromonas sp. A2 to oxidative stress induced by hydrogen peroxide[J]. Acta Oceanologica Sinica, 2016, 35(12): 73-80. doi: 10.1007/s13131-016-0892-z |
Abele D, Puntarulo S. 2004. Formation of reactive species and induction of antioxidant defence systems in polar and temperate marine invertebrates and fish. Comp Biochem Physiol A Mol Integr Physiol, 138(4):405-415
|
Aberg A, Hahne S, Karlsson M, et al. 1989. Evidence for two different classes of redox-active cysteines in ribonucleotide reductase of Escherichia coli. J Biol Chem, 264(21):12249-12252
|
Arnér E S J, Holmgren A. 2000. Physiological functions of thioredoxin and thioredoxin reductase. FEBS J, 267(20):6102-6109
|
Cabiscol E, Tamarit J, Ros J. 2000. Oxidative stress in bacteria and protein damage by reactive oxygen species. Int Microbiol, 3(1):3-8
|
Casey A, Fox E M, Schmitz-Esser S, et al. 2014. Transcriptome analys-is of Listeria monocytogenes exposed to biocide stress reveals a multi-system response involving cell wall synthesis, sugar up-take, and motility. Front Microbiol, 5:68, doi: 10.3389/fmicb.2014.00068
|
Chattopadhyay M K. 2002. Low temperature and oxidative stress. Curr Sci, 83(2):109
|
Chattopadhyay M K, Raghu G, Sharma Y V R K, et al. 2011. Increase in oxidative stress at low temperature in an Antarctic bacterium. Curr Microbiol, 62(2):544-546
|
Conesa A, G.tz S, García-Gómez J M, et al. 2005. Blast2GO:a univer-sal tool for annotation, visualization and analysis in functional genomics research. Bioinformatics, 21(18):3674-3676
|
Donati A J, Jeon J M, Sangurdekar D, et al. 2011. Genome-wide tran-scriptional and physiological responses of Bradyrhizobium ja-ponicum to paraquat-mediated oxidative stress. Appl Environ Microbiol, 77(11):3633-3643
|
Dubbs J M, Mongkolsuk S. 2012. Peroxide-sensing transcriptional regulators in bacteria. J Bacteriol, 194(20):5495-5503
|
Gaupp R, Ledala N, Somerville G A. 2012. Staphylococcal response to oxidative stress. Front Cell Infect Microbiol, 2:33
|
Gocheva Y G, Krumova E T, Slokoska L S, et al. 2006. Cell response of Antarctic and temperate strains of Penicillium spp. to different growth temperature. Mycol Res, 110(11):1347-1354
|
Gocheva Y G, Tosi S, Krumova E T, et al. 2009. Temperature down-shift induces antioxidant response in fungi isolated from Ant-arctica. Extremophiles, 13(2):273-281
|
Imlay J A. 2013. The molecular mechanisms and physiological con-sequences of oxidative stress:lessons from a model bacterium. Nat Rev Microbiol, 11(7):443-454
|
Jobin M P, Delmas F, Garmyn D, et al. 1997. Molecular characteriza-tion of the gene encoding an 18-kilodalton small heat shock protein associated with the membrane of Leuconostoc oenos. Appl Environ Microbiol, 63(2):609-614
|
Kammer A R, Orczewska J I, O'Brien KM. 2011. Oxidative stress is transient and tissue specific during cold acclimation of threespine stickleback. J Exp Bio, 214(8):1248-1256
|
Kanehisa M, Goto S. 2000. KEGG:Kyoto encyclopedia of genes and genomes. Nucleic Acids Res, 28(1):27-30
|
Kanehisa M, Goto S, Sato Y, et al. 2014. Data, information, knowledge and principle:back to metabolism in KEGG. Nucleic Acids Res, 42(D1):D199-D205
|
Kilstrup M, Jacobsen S, Hammer K, et al. 1997. Induction of heat shock proteins DnaK, GroEL, and GroES by salt stress in Lacto-coccus lactis. Appl Environ Microbiol, 63(5):1826-1837
|
Kim S H, Kim S K, Jung K H, et al. 2013. Proteomic analysis of the ox-idative stress response induced by low-dose hydrogen perox-ide in Bacillus anthracis. J Microbiol Biotechnol, 23(6):750-758
|
Klatt P, Lamas S. 2000. Regulation of protein function by S-glutathi-olation in response to oxidative and nitrosative stress. Eur J Bio-chem, 267(16):4928-4944
|
Leichert L I O, Scharf C, Hecker M. 2003. Global characterization of disulfide stress in Bacillus subtilis. J Bacteriol, 185(6):1967-1975
|
Li Yingying, Liu Yang, Chew S C, et al. 2015. Complete genome se-quence and transcriptomic analysis of the novel pathogen Elizabethkingia anophelis in response to oxidative stress. Gen-ome Biol Evol, 7(6):1676-1685
|
Lin Xuezheng, Wang Zhen, Li Yang. 2014. Draft genome sequence of Pseudoalteromonas sp. strain A2, an isolate with high antioxid-ative activity from Arctic seawater. Genome Announc, 2(5):e00885-14, doi: 10.1128/genomeA.00885-14
|
Lister K N, Lamare M D, Burritt D J. 2010. Sea ice protects the embry-os of the Antarctic sea urchin Sterechinus neumayeri from oxid-ative damage due to naturally enhanced levels of UV-B radi-ation. J Exp Bio, 213(11):1967-1975
|
Liu Shenghao, Zhang Pengying, Cong Bailin, et al. 2010. Molecular cloning and expression analysis of a cytosolic Hsp70 gene from Antarctic ice algae Chlamydomonas sp. ICE-L. Extremophiles, 14(3):329-337
|
Lopez-Martinez G, Elnitsky M A, Benoit J B, et al. 2008. High resist-ance to oxidative damage in the Antarctic midge Belgica antarc-tica, and developmentally linked expression of genes encoding superoxide dismutase, catalase and heat shock proteins. Insect Biochem Mol Biol, 38(8):796-804
|
Mailloux R J, Lemire J, Appanna V D. 2011. Metabolic networks to combat oxidative stress in Pseudomonas fluorescens. Anton Leeuw, 99(3):433-442
|
Manney G L, Santee M L, Rex M, et al. 2011. Unprecedented Arctic ozone loss in 2011. Nature, 478(7370):469-475
|
Mishra S, Imlay J. 2012. Why do bacteria use so many enzymes to scavenge hydrogen peroxide?. Arch Biochem Biophys, 525(2):145-160
|
Mizuno N, Sugie A, Kobayashi F. 2008. Mitochondrial alternative pathway is associated with development of freezing tolerance in common wheat. J Plant Physiol, 165(4):462-467
|
Mostertz J, Scharf C, Hecker M, et al. 2004. Transcriptome and pro-teome analysis of Bacillus subtilis gene expression in response to superoxide and peroxide stress. Microbiology, 150(2):497-512
|
Munné-Bosch S, Alegre L. 2002. The function of tocopherols and to-cotrienols in plants. Cri Rev Plant Sci, 21(1):31-57
|
Nachin L, Nannmark U, Nystr.m T. 2005. Differential roles of the uni-versal stress proteins of Escherichia coli in oxidative stress res-istance, adhesion, and motility. J Bacteriol, 187(18):6265-6272
|
Pomposiello P J, Demple B. 2002. Global adjustment of microbial physiology during free radical stress. Adv Microb Physiol, 46:319-341
|
Regoli F, Nigro M, Bompadre S, et al. 2000. Total oxidant scavenging capacity (TOSC) of microsomal and cytosolic fractions from Antarctic, Arctic and Mediterranean scallops:differentiation between three potent oxidants. Aquat Toxicol, 49(1-2):13-25
|
Russel M, Model P. 1986. The role of thioredoxin in filamentous phage assembly. Construction, isolation, and characterization of mutant thioredoxins. J Biol Chem, 261(32):14997-15005
|
Salunkhe P, T.pfer T, Buer J, et al. 2005. Genome-wide transcription-al profiling of the steady-state response of Pseudomonas aeru-ginosa to hydrogen peroxide. J Bacteriol, 187(8):2565-2572
|
Shiu C T, Lee T M. 2005. Ultraviolet-B-induced oxidative stress and responses of the ascorbate-glutathione cycle in a marine mac-roalga Ulva fasciata. J Exp Bot, 56(421):2851-2865
|
Smith R C, Prezelin B B, Baker K S, et al. 1992. Ozone depletion:ultra-violet radiation and phytoplankton biology in Antarctic waters. Science, 255(5047):952-959
|
Tatusov R L, Fedorova N D, Jackson J D, et al. 2003. The COG data-base:an updated version includes eukaryotes. BMC Bioinform, 4(1):41
|
Thomas D N, Dieckmann G S. 2002. Antarctic sea ice-a habitat for ex-tremophiles. Science, 295(5555):641-644
|
Wang Ge, Alamuri P, Maier R J. 2006. The diverse antioxidant sys-tems of Helicobacter pylori. Mol Microbiol, 61(4):847-860
|
Wang Zhong, Gerstein M, Snyder M. 2009. RNA-Seq:a revolutionary tool for transcriptomics. Nat Rev Genet, 10(1):57-63
|