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  • American Society for Microbiology  (3)
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  • American Society for Microbiology  (3)
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  • 1
    Online Resource
    Online Resource
    American Society for Microbiology ; 2009
    In:  Journal of Bacteriology Vol. 191, No. 13 ( 2009-07), p. 4458-4464
    In: Journal of Bacteriology, American Society for Microbiology, Vol. 191, No. 13 ( 2009-07), p. 4458-4464
    Abstract: The integrase (Int) of the λ-like coliphage HK022 catalyzes the site-specific integration and excision of the phage DNA into and from the chromosome of its host, Escherichia coli . Int recognizes two different pairs of recombining sites attP × attB and attL × attR for integration and excision, respectively. This system was adapted to the cyanobacterium Anabaena sp. strain PCC 7120 as a potential tool for site-specific gene manipulations in the cyanobacterium. Two plasmids were consecutively cointroduced by conjugation into Anabaena cells, one plasmid that expresses HK022 Int recombinase and the other plasmid that carries the excision substrate P glnA - attL -T1/T2- attR - lacZ , where T1/T2 are the strong transcription terminators of rrnB , to prevent expression of the lacZ reporter under the constitutive promoter P glnA . The Int-catalyzed site-specific recombination reaction was monitored by the expression of lacZ emanating as a result of T1/T2 excision. Int catalyzed the site-specific excision reaction in Anabaena cells when its substrate was located either on the plasmid or on the chromosome with no need to supply an accessory protein, such as integration host factor and excisionase (Xis), which are indispensable for this reaction in its host, E. coli .
    Type of Medium: Online Resource
    ISSN: 0021-9193 , 1098-5530
    Language: English
    Publisher: American Society for Microbiology
    Publication Date: 2009
    detail.hit.zdb_id: 1481988-0
    SSG: 12
    Location Call Number Limitation Availability
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  • 2
    Online Resource
    Online Resource
    American Society for Microbiology ; 1990
    In:  Applied and Environmental Microbiology Vol. 56, No. 11 ( 1990-11), p. 3499-3504
    In: Applied and Environmental Microbiology, American Society for Microbiology, Vol. 56, No. 11 ( 1990-11), p. 3499-3504
    Abstract: An ammonium-excreting mutant (SS1) of the rice field nitrogen-fixing cyanobacterium Anabaena siamensis was isolated after ethyl methanesulfonate mutagenesis by selection on 500 μM l -methionine- dl -sulfoximine. SS1 grew in the presence and absence of l -methionine- dl -sulfoximine at a rate comparable to that of the wild-type strain, with a doubling time of 5.6 h. The rate of ammonium release by SS1 depended on cell density; it peaked at the 12th hour of growth with 8.7 μmol mg of chlorophyll −1 h −1 (at a chlorophyll concentration of 5 μg ml −1 ) and slowed down to almost nil at the fourth day of growth. A similar pattern of release by immobilized SS1 was observed between 12 to 20 h after loading alginate beads in packed-bed reactors at the rate of 11.6 μmol mg of chlorophyll −1 h −1 . The rate was later reduced significantly due to the fast growth of SS1 on the substrate. Prolonged release of ammonium at the peak level was achieved only by maintaining SS1 under continuous cultivation at low chlorophyll levels (5 to 7 μg ml −1 ). Under these conditions, nitrogen fixation in the mutant was 30% higher than that in its parent and glutamine synthetase activity was less by 50%. Immunoblot analysis revealed that SS1 and its parent have similar quantities of glutamine synthetase protein under ammonium excretion conditions. In addition, a protein with a molecular weight of about 30,000 seems to have been lost, as seen by electrophoretic separation of total proteins from SS1.
    Type of Medium: Online Resource
    ISSN: 0099-2240 , 1098-5336
    RVK:
    Language: English
    Publisher: American Society for Microbiology
    Publication Date: 1990
    detail.hit.zdb_id: 223011-2
    detail.hit.zdb_id: 1478346-0
    SSG: 12
    Location Call Number Limitation Availability
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  • 3
    Online Resource
    Online Resource
    American Society for Microbiology ; 2009
    In:  Journal of Bacteriology Vol. 191, No. 18 ( 2009-09-15), p. 5879-5879
    In: Journal of Bacteriology, American Society for Microbiology, Vol. 191, No. 18 ( 2009-09-15), p. 5879-5879
    Type of Medium: Online Resource
    ISSN: 0021-9193 , 1098-5530
    Language: English
    Publisher: American Society for Microbiology
    Publication Date: 2009
    detail.hit.zdb_id: 1481988-0
    SSG: 12
    Location Call Number Limitation Availability
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