Meighen Ea. Molecular Biology Of Bacterial Bioluminescence. Microbiol Rev. 1991;55:123–142

7 Figure 2: Pictured here are lux-based bioluminescent bacterial. a Ph.D. in Microbiology and Molecular Genetics from Oklahoma State University. He has done extensive research in the construction.

Dec 28, 2010. Keywords: bacterial luciferase; bioluminescent imaging; BLI; firefly luciferase; Lux ; Luc. 1.. image individual areas [142], making it an excellent proxy for quickly evaluating the effectiveness of. USA 1991, 88, 4438-4442. 4. Meighen, E.A. Molecular biology of bacterial bioluminescence. Microbiol. Rev.

This paper will review the chronology of scientific discoveries on bacterial. Key words: bacteria, bioluminescence, lux genes, Microtox toxicity bioassay. Meighen, E.A. Molecular biology of bacterial bioluminescence. Microbiol. Rev., 55: 123-142, 1991. 38. Meighen, E. Genetics of bacterial bioluminescence. Annu. Rev.

Microbiol Rev. 1991 Mar; 55(1): 123–142. E A Meighen. The cloning and expression of the lux genes from different luminescent bacteria including. advances in our knowledge of the molecular biology of bacterial bioluminescence.

Microbiol Rev. 1991 Mar;55(1):123-42. Molecular biology of bacterial bioluminescence. Meighen EA(1). Author information: (1)Department of Biochemistry,

¶Department of Molecular Genetics and Cell Biology, University of Chicago, Chicago, IL 60637. collection of Escherichia coli bioluminescent reporter gene fusions. Bacterial Strains and Plasmids. The. Meighen, E. A. (1991) Microbiol. Rev. 55, 123–142. 15. Van Dyk, T. K., Ayers, B. L., Morgan, R. W. & LaRossa, R. A.

Dec 1, 2008. to supply reduced flavin for the bioluminescence reaction (1). Within a given. THE JOURNAL OF BIOLOGICAL CHEMISTRY VOL. 284, NO. Fre Supplies FMNH2 for Recombinant Bacterial Bioluminescence. MARCH 27. 47, 348 – 353. 3. Meighen, E. A. (1991) Microbiol. Rev. 55, 123–142. 4. Baldwin.

Meighen, E. A. 1991. Molecular biology of bacterial biolumines- cence. Microbiol. Rev. 55:123-142. 47. Mekalanos, J. J. 1992. Environmental signals controlling.

Assays using bacterial bioluminescence for the detection. Ann. Rev. Microbiol. 42:151-176. 26. Meighen, E. A. 1991. Molecular biology of. Rev. 55:123-142.

MEIGHEN. molecular biology of the luminescent systems from different. and 37 kDa, respectively. The two polypeptides, encoded on. MICROBIOL. REV. 142). luxG has been found in all strains of luminescent bacteria except Xenorhabdus. erties similar to those of the reductase component involved. VOL. 55, 1991.

advanced texts in microbiology, molecular biology and medical research. ( 1991) has been shown to be a useful reporter of gene. Meighen, E.A. 1991. Molecular biology of bacterial bioluminescence. Microbiol. Rev. 55: 123-142.

to provide a bioluminescent reporter for constitutive and promoter. [5] Meighen , E.A. (1991) Molecular biology of bacterial biolumi- nescence. Microbiol. Rev. 55, 123^142. [8] Meighen, E.A. and Szittner, R.B. (1992) Multiple repetitive.

The lux genes required for bacterial bioluminescence are arranged in a single operon, luxCDABE. Since the operon encodes not only the. Meighen E. A. 1993. Bacterial bioluminescence:. Meighen E. A. 1991. Molecular biology of bacterial bioluminescence. Microbiol. Rev. 55:123–142. OpenUrlAbstract/FREE Full.

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Key words: bacteria, bioluminescence, lux genes, Microtox toxicity bioassay. Chatterjee, J.; Meighen, E.A. Biotechnical applications of bacterial bioluminescence (lux) genes. Photochem. Com., 176: 541-548, 1991. Meighen, E.A. Molecular biology of bacterial bioluminescence. Microbiol. Rev., 55: 123-142, 1991.

paper considers the main features of bacterial bioluminescence and isolated luminescent system, and also the applications of. where microbial bioassays are widely used. Nealson, Hastings, 1979; Meighen, 1991, 1994) led to the. 55: 123-142. Meighen E.A. (1994) Genetics of bacterial bioluminescence. Ann. Rev.

It is revealed that in the bacterial lacking luxCDEgenes responsible in the standard scheme for synthesis of aliphatic aldehydes—the. Department of MicrobiologyMoscow State UniversityMoscowRussia; 2. Meighen, E.A., Molecular Biology of Bacterial Bioluminescence, Micr. Rev., 1991, vol. 55, no. 1, pp. 123–142.

In the human oral cavity, which is an open growth system, bacteria must first adhere to a surface in order. Infect Immun 55:123-128. Meighen EA (1991). Molecular biology of bacterial bioluminescence (review). Microbial Rev 55:124- 142.

Meighen, E.A. (1991b) Molecular biology of bacterial bioluminescence. Microbiol. Rev., 55, 123–142.Google Scholar. Miller, L.F., Mabee., M.S., Gress, H.S. and.

7 Figure 2: Pictured here are lux-based bioluminescent bacterial. a Ph.D. in Microbiology and Molecular Genetics from Oklahoma State University. He has done extensive research in the construction.

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In principle, the biological functions of bioluminescence can be categorized into four major groups: defense, Meighen E.A. Molecular biology of bacterial bioluminescence. Microbiol Rev. 1991;55:123–142. FEMS Microbiol Rev. 2011.