Team:Utah State/References
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<li>Akita M, Sasaki S, Matsuyama S, Mizushima S (1990) J Biol Chem 265:8164-8169</li> | <li>Akita M, Sasaki S, Matsuyama S, Mizushima S (1990) J Biol Chem 265:8164-8169</li> | ||
+ | <li> Albert F, Anderson A (1987) The effect of <i>Pseudomonas putida</i> colonization on root surface peroxidase. Plant Physiol 85: 537-541</li> | ||
<li>Anderson AJ, Dawes EA (1990) Occurrence, metabolism, metabolic role, and industrial uses of bacterial polyhydroxyalkanoates. Microbiol Rev 54:450-472</li> | <li>Anderson AJ, Dawes EA (1990) Occurrence, metabolism, metabolic role, and industrial uses of bacterial polyhydroxyalkanoates. Microbiol Rev 54:450-472</li> | ||
+ | <li> Bakker PAHM, Lamers JG, Bakker AW, Marugg JD, Weisbeek PJ, Schippers, B (1986) The role of siderophores in potato tuber yield increase by <i>Pseudomonas putida</i> in a short rotation of potato. Neth J Pl Path 92: 249-256</li> | ||
<li>Barrett CML, Ray N, Thomas JD, Robinson C, Bolhuis A (2003) Quantitative export of a reporter protein, GFP, by the twin-arginine translocation pathway in Escherichia coli. Biochem BIophys Res Comm 304:279-284</li> | <li>Barrett CML, Ray N, Thomas JD, Robinson C, Bolhuis A (2003) Quantitative export of a reporter protein, GFP, by the twin-arginine translocation pathway in Escherichia coli. Biochem BIophys Res Comm 304:279-284</li> | ||
<li>Berks BC (1996) Mol Microbiol 22:393-404</li> | <li>Berks BC (1996) Mol Microbiol 22:393-404</li> | ||
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Fernandez LA, de Lorenzo V (2001) Fomration of disulphide bonds during secretion of proteins through the periplasmic-independent type I pathway. Mol Microbiol 40:332-346</li> | Fernandez LA, de Lorenzo V (2001) Fomration of disulphide bonds during secretion of proteins through the periplasmic-independent type I pathway. Mol Microbiol 40:332-346</li> | ||
<li>Gentschev I, Goebel W (2003) Type I protein secretion systems in gram-negative bacteria: <i>Escherichia coli</i> alpha-hemolysin secretion. In: Oudega B, editor. Kluwer Academic Publishers, pp.121-139</li> | <li>Gentschev I, Goebel W (2003) Type I protein secretion systems in gram-negative bacteria: <i>Escherichia coli</i> alpha-hemolysin secretion. In: Oudega B, editor. Kluwer Academic Publishers, pp.121-139</li> | ||
+ | <li> Gombos, Z, Wada, H, Murata, N (1992) Unsaturation of fatty acids in membrane lipids enhances tolerance of the cyanobacterium <i>Synechocystis</i> PCC6803 to low-temperature photoinhibition. Proc Natl Acad Sci 89: 9959-9963</li> | ||
+ | <li> Haas D, Defago G (2005) Biological control of soil-borne pathogens by fluorescent pseudomonads. Nat Rev Microbiol 3: 307-320</li> | ||
<li>Hearn MT, Acosta D (2001) Applications of novel affinity cassette methods: Use of peptide fusion handles for the purification of recombinant proteins. J Mol Recognit 14:323-369</li> | <li>Hearn MT, Acosta D (2001) Applications of novel affinity cassette methods: Use of peptide fusion handles for the purification of recombinant proteins. J Mol Recognit 14:323-369</li> | ||
<li>Haller C.A., & Dichristina, T.J. (2002). Genetic approaches in bacteria with no natural genetic systems. New York, NY: Wiley-Liss, Inc. </li> | <li>Haller C.A., & Dichristina, T.J. (2002). Genetic approaches in bacteria with no natural genetic systems. New York, NY: Wiley-Liss, Inc. </li> | ||
<li>Hess J, Gentschev I, Goebel W, Jarchau T (1990) Analysis of the haemolysin secretion system by PhoA-HlyA fusion proteins. Mol Gen Genet 224:201-208</li> | <li>Hess J, Gentschev I, Goebel W, Jarchau T (1990) Analysis of the haemolysin secretion system by PhoA-HlyA fusion proteins. Mol Gen Genet 224:201-208</li> | ||
<li>Invitrogen Corporation (2009) Cloning of A-tailed PCR fragments using conventional ligase method. Retrieved October 2009. https://commerce.invitrogen.com</li> | <li>Invitrogen Corporation (2009) Cloning of A-tailed PCR fragments using conventional ligase method. Retrieved October 2009. https://commerce.invitrogen.com</li> | ||
+ | <li> Irisarri P, Gonnet S, Monza J (2001) Cyanobacteria in Uruguayan rice fields: diversity, nitrogen fixing ability and tolerance to herbicides and combined nitrogen. Biotechnology 91: 95-103 </li> | ||
<lI>Jung IL, Phyo KH, Kim KC, Park HK, Kim IG (2005) Spontaneous liberation of intracellular polyhydroxybutyrate granules in <i>Escherichia coli</i>. Res Microbiol 156:865-873</li> | <lI>Jung IL, Phyo KH, Kim KC, Park HK, Kim IG (2005) Spontaneous liberation of intracellular polyhydroxybutyrate granules in <i>Escherichia coli</i>. Res Microbiol 156:865-873</li> | ||
<li>Kaderbhai MA, Davey HM, Kaderbhai NN (1997) A directed evolution strategy for optimized export of recombinant proteins reveals critical determinants for preprotein discharge. Protein Science 13:2458-2469</li> | <li>Kaderbhai MA, Davey HM, Kaderbhai NN (1997) A directed evolution strategy for optimized export of recombinant proteins reveals critical determinants for preprotein discharge. Protein Science 13:2458-2469</li> | ||
<Li>Koster M, Bitter W, Tommassen J (2000) Protein secretion mechanisms in Gram-negative bacteria. Int J Med Microbiol 290:325-331</li> | <Li>Koster M, Bitter W, Tommassen J (2000) Protein secretion mechanisms in Gram-negative bacteria. Int J Med Microbiol 290:325-331</li> | ||
+ | <li> Kucho K, Okamoto K, Tsuchiya Y, Nomura S, Nango M, Kanehisa M et al. (2005) Global analysis of circadian expression in the cyanobacterium <i>Synechocystis</i> sp. Strain PCC 6803. J Bact 187: 2190-2199</li> | ||
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<li>Lee SY (1996) Bacterial Polyhydroxyalkanoates. Biotechnol Bioeng. 49:1-14 | <li>Lee SY (1996) Bacterial Polyhydroxyalkanoates. Biotechnol Bioeng. 49:1-14 | ||
+ | <li> Lemanceau P, Bakker PAHM, De Kogel WJ, Alabouvette C, Schippers B (1992) Effect of pseudobactin 358 production by <i>Pseudomonas putida</i> WCS358 on suppression of fusarium wilt of carnations by nonpathogenic <i>Fusarium oxysporum</i> Fo47. Appl Environment Micro 58:2978-2982</li> | ||
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+ | <li> Mackenzie C, Eraso JM, Choudhary M, Roh JH, Zeng X, Bruscella P et al.(2007) Postgenomic Adventures with <i>Rhodobacter sphaeroides</i> 61: 283-307</li> | ||
<Li>Madison LL, Huisman GW (1999) Metabolic engineering of poly (3-hydroxyalkanoates): from DNA to plastic. Microbiol Mol Biol R 63:21-53</li> | <Li>Madison LL, Huisman GW (1999) Metabolic engineering of poly (3-hydroxyalkanoates): from DNA to plastic. Microbiol Mol Biol R 63:21-53</li> | ||
<li>Maehara A, Ueda S, Nakano H, Yamane T (1999) Analyses of a polyhydroxyalkanoic acid granule-associated 16-kilodalton protein and its putative regulator in the pha locus of <i>Paracoccus denitrificans</i>. J Bacteriol 191:2914-2921</li> | <li>Maehara A, Ueda S, Nakano H, Yamane T (1999) Analyses of a polyhydroxyalkanoic acid granule-associated 16-kilodalton protein and its putative regulator in the pha locus of <i>Paracoccus denitrificans</i>. J Bacteriol 191:2914-2921</li> | ||
<li>Mergulhão, FJM, Summers DK, Monteiro (2005) Recombinant protein secretion in <i>Escherichia coli</i> Biotechnol Adv 23:177-202</li> | <li>Mergulhão, FJM, Summers DK, Monteiro (2005) Recombinant protein secretion in <i>Escherichia coli</i> Biotechnol Adv 23:177-202</li> | ||
<li>Molhoj M (2004) Leader sequences are not signal peptides. Nat Biotech 22:1502</li> | <li>Molhoj M (2004) Leader sequences are not signal peptides. Nat Biotech 22:1502</li> | ||
+ | <li> Nelson KE, Weinel C, Paulsen IT, Dodson RJ, Hilbert H, Martins dos Santos VA, et al. (2002) Complete genome sequence and comparative analysis of the metabolically versatile <i>Pseudomonas putida</i> KT2440. Environ Microbiol 4: 799–808</li> | ||
+ | <li> O’Gara JP, Gomelsky M, Kaplan S (1997) Identification and molecular genetic analysis of multiple loci contributing to high-level tellurite resistance in <i>Rhodobacter sphaeroides</i> 2.4.1. Appl Environ Microbiol 63: 4713-4720</li> | ||
<li>Palmer T, Berks BC (2004) The Tat protein export pathway In: Oudega B, editor. Kluwer Academic Publishers, pp 51-64</li> | <li>Palmer T, Berks BC (2004) The Tat protein export pathway In: Oudega B, editor. Kluwer Academic Publishers, pp 51-64</li> | ||
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+ | <li> Roy A, Shukla AK, Haase W, Michel H (2008) Employing <i>Rhodobacter sphaeroides</i> to functionally express and purify human G protein-coupled receptors. Biol Chem 389: 69-78</li> | ||
<li>Sabirova JS, Ferror M, Lunsdorf H, Wray V, Kalscheuer R, Steinbuchel A, Timmis KN, Golyshin PN (2006) Mutation in a “<i>tesB</i>-Like” Hydroxyacyl-coenzyme A-specific thioesterase gene causes hyperproduction of extracellular polyhydroxalkanoates by <i>Alcanivorax borkumensis</i> SK2. J Bacteriol 188:8452-8459</li> | <li>Sabirova JS, Ferror M, Lunsdorf H, Wray V, Kalscheuer R, Steinbuchel A, Timmis KN, Golyshin PN (2006) Mutation in a “<i>tesB</i>-Like” Hydroxyacyl-coenzyme A-specific thioesterase gene causes hyperproduction of extracellular polyhydroxalkanoates by <i>Alcanivorax borkumensis</i> SK2. J Bacteriol 188:8452-8459</li> | ||
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+ | <li> Tabei Y, Okada K, Tsuzuki M (2007) SII1330 controls the expression of glycolytic genes in <i>Synechocystis</i> sp. PCC 6803. Biochem Biophys Res Commun 355: 1045-1050</li> | ||
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+ | <li>Wolk CP, Fan Q, Zhou R, Huang G, Lechno-Yossef S, Kuritz T, Wojciuch E. (2007) Paired cloning vectors for complementation of mutations in the cyanobacterium <i>Anabaena</i> sp. strain PCC 7120. Arch. Microbiol. 188:551-563</li> | ||
+ | <li> Yokoi H, Maki R, Hirose J, Hayashi S (2002) Microbial production of hydrogen from starch-manufacturing wastes. Biomass Bioenergy 22: 389-395</li> | ||
<li>York GM, Junker BH, Stubbe J, Sinskey AJ (2001) Accumulation of the PhaP Phasin of Ralstonia eutropha is dependent on production of polyhydroxybutyrate in cells. J Bacteriol 183:4217-4226</li> | <li>York GM, Junker BH, Stubbe J, Sinskey AJ (2001) Accumulation of the PhaP Phasin of Ralstonia eutropha is dependent on production of polyhydroxybutyrate in cells. J Bacteriol 183:4217-4226</li> | ||
<li>York GM, Stubbe J, Sinkskey AJ (2002) New insight into the role of the PhaP phasin of <i>Ralstonia eutropha</i> in promoting synthesis of polyhydroxybutyrate. J Bacteriol 183:2394-2397</li> | <li>York GM, Stubbe J, Sinkskey AJ (2002) New insight into the role of the PhaP phasin of <i>Ralstonia eutropha</i> in promoting synthesis of polyhydroxybutyrate. J Bacteriol 183:2394-2397</li> | ||
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Latest revision as of 04:37, 12 November 2009
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