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1.
L. E. Aleskerova K. A. Alenina E. N. Efremenko M. M. Mazhul’ N. A. Piskunkova A. D. Ismailov 《Microbiology》2014,83(4):315-321
Bioluminescence activity and ATP pool were investigated in the cells of psychrophilic bacteria Photobacterium phosphoreum collected from the exponential and stationary growth phases and immobilized in polyvinyl alcohol (PVA) cryogel. In liquid culture, ATP pool remained at an almost constant level throughout the luminescence cycle (over 100 h). The ATP pool in the stationary-phase and PVA-immobilized cells remained constant throughout their incubation in the medium (over 200 h) and in 3% NaCl solution (over 100 h). Quantitative assessment of integral photon yield and ATP pool indicated that bioluminescence decay in growing or stationary cells was not caused by limitation from the energy substrates of the luciferase reaction. Kinetic and quantitative parameters of emission activity and ATP pool excluded the possibility of formation of the aldehyde substrate for luciferase via reduction of the relevant fatty acids in NADPH and ATP-dependent reductase reaction and its oxidation in the monooxygenase reaction. Our results indicate that the aliphatic aldehyde is not utilized in the process of light emission. 相似文献
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In a complex medium, cells of Photobacterium phosphoreum (strain 496) grow equally well with 1% and 3% NaCl, but luminescence occurs only with 3% NaCl in the medium. However, the suppression of luminescence is not attributable to the lack of luciferase; log phase cells growing in 1% NaCl will develop luminescence following a shift to 3% NaCl, which is accompanied by an increase of intracellular potassium. Tetradecanal stimulates bioluminescence in a 1% NaCl culture, and also in the presence of nalidixic acid, an inhibitor or gyrase. It is thus suggested that the suppression of luminescence in 1% NaCl or in 3% NaCl with nalidixic acid is due to a deficiency in the synthesis of intracellular aldehyde. The increase in intracellular potassium that occurs upon shifting from 1% to 3% NaCl may also relate to aldehyde synthesis gene expression via activation of gyrase, or via an increase in negative supercoiling of the chromosome. However, since an initial decrease of light intensity is still observed during culture even with the addition of tetradecanal, an additional factor related to cell density must also be involved in bioluminescence expression.Abbreviations nal
nalidixic acid
- nal-r
nalidixic acid resistant strain 相似文献
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The study of sensitivity of luminous bacteria isolated from the Black and Azov seas to surfactants from various classes was carried out. It was shown that cationic surfactants had a strong inhibition effect on bacterial luminescence in contrast to anionic and in particular nonionic surfactants. To increase the luminous bacteria sensitivity to the action of OP-10 (nonionic surfactant) and ABS (anionic surfactant), which are widely used in industry, several approaches have been developed. They include modulation of bacterial sensitivity by the additives of cationic substances, use of luminous bacteria at a logarithmic stage of growth, realization of biotesting at low pH = 5.5. The use of these approaches allows to lower effective concentrations of OP-10 and ABS, which caused a decrease of bioluminescence by 50%, 3-200 times and opens perspectives for the use of the bioluminescent method to study these surfactants toxicity on the principle of biosensorics. 相似文献
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The acute and chronic toxicity of T-2 was studied by bioluminescent method with the use of two strains of luminous bacteria--P. phosphorum Sq3 u V. fischeri F1 as biological objects. It was shown that in acute experiments after 10 min incubation of bacteria in the presence of T-2 the bioluminescence inhibition on the 50% level was observed at the toxin concentration equal to 12 mg/mL. In chronic experiments such a level of bioluminescence inhibition was registered after 16 hours incubation at the toxin concentration of 18 mg/mL. T-2 toxicity was also investigated in the presence of different serum albumin concentrations. It decreases with the increase of albumin concentration at the short term of incubation (5 min) of the mixture to be analyzed. In case of the longer term of incubation (up to 30 min) of this mixture T-2 toxicity was restored. Probably, it is a result of destruction of protein-toxin complex, which is, evidently, reversible and may be characterized by some index. It is necessary to emphasize that the sensitivity of T-2 analysis increases under the decrease of pH value up to lower bacterial physiological level, i.e. to 5-5.5. The revealed abilities of T-2 toxin effect on the intensity of bacterial bioluminescence may be used under the development of instrumental analytical approach on the basis of biosensor technology for testing this toxin in the environment. Taking into account the analysis simplicity and rapidity, such analytical device may have a perspective for wide practical application. 相似文献
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In bioluminescent bacteria very few agents have been reported that can selectively inhibit the luminescence. In sensitivity tests with Photobacterium phosphoreum, using 55 different antibiotics, it was found that sulfamethizole, an inhibitor of dihydropteroate synthetase and the formation of folic acid, inhibited bioluminescence more than growth. Likewise, in mutants requiring thymine for growth, the luminescence per cell was much less in a medium low in thymine. In neither case could the decreased specific luminescence be attributed to a decrease in the cellular level of luciferase or aldehyde factor; the involvement of additional but unidentified factors in the regulation of in vivo bioluminescence is postulated. 相似文献
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Purification of lumazine proteins from Photobacterium leiognathi and Photobacterium phosphoreum: bioluminescence properties 总被引:4,自引:0,他引:4
Bright strains of the marine bioluminescent bacterium Photobacterium leiognathi produce a "lumazine protein" in amounts comparable to that previously found in Photobacterium phosphoreum. New protocols are developed for the purification to homogeneity of the proteins from both species in yields up to 60%. In dimmer strains the amounts of lumazine protein in extracts are less, and also there is an accompanying shift of the bioluminescence spectral maximum to longer wavelength, 492 nm. Both types of lumazine proteins have identical fluorescence spectra, with maxima at 475 nm, so it is suggested that, whereas lumazine protein is the major emitter in bright strains, there is a second emitter also present with a fluorescence maximum at longer wavelength. The two species of lumazine protein have the same 276 nm/visible absorbance ratio, 2.2, but differ in visible maxima: P. phosphoreum, 417 nm; P. leiognathi, 420 nm. For the latter the bound lumazine has epsilon 420 = 10 100 M-1 cm-1, practically the same as in free solution. The two lumazine proteins also differ quantitatively in their effect on the in vitro bioluminescence reaction, i.e., at blue shifting the bioluminescence spectrum or altering the kinetics. The P. phosphoreum lumazine protein is more effective with its homologous luciferase or with P. leiognathi luciferase than is the lumazine protein from P. leiognathi. These differences may have an electrostatic origin. 相似文献
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Measurements were made of the predation by Tetrahymena thermophila on several bacterial species in media containing heat-killed Escherichia coli cells to serve as an alternative prey. If grazing pressure was initially not intense on a mixture of bacterial species, the species that survived protozoan feeding at greater densities were those that grew quickly before the onset of active predation. If members of several species were incubated individually at similar initial densities with actively grazing T. thermophila, some species survived at ca. 10(4)/ml, some survived at ca. 10(2)/ml, and others were eliminated. Members of the first two groups but not the third group were able to multiply in the medium in the absence of the protozoan, but the growth rates in the protozoan-free medium did not correlate with the number of survivors. However, the species that persisted at the higher densities possessed highly hydrophobic cell surfaces. The size of the surviving population of four bacterial species whose growth was prevented by chloramphenicol correlated with the initial cell density that was incubated with T. thermophila. It is concluded that the individual species surviving predation on a mixture of species is related to the capacity of the bacterium to grow, the hydrophobicity of its cell surface, and the population density of the species before the onset of intense grazing. 相似文献
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The heat sensitivity of gram-negative, hydrocarbon-utilizing thermophilic bacteria was altered by a change in growth substrate. Thermophilic strains CC-6, BI-1, and LEH-1, grown with acetate or n-heptadecane as the carbon source, had a higher survival rate when incubated 5 degrees C above their maximum growth temperature than cells of the same organism after growth on glucose or glycerol. There was a correlation between the growth substrated, heat resistance, and the ratios of cellular n-hexadecanoic acid/branched hexadecanoic acid and n-heptadecanoic acid/branched heptadecanoic acid. The bacterial cells that were more heat resistant had ratios of straight-chain/branched-chain fatty acids above 1.0, whereas the heat-sensitive cells had ratios below 0.6. 相似文献
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The relationship between the pH of the medium and specific growth rates, in well-buffered media at 38.5 degrees C, was determined for three strains of Butyrivibrio fibrisolvens and for one strain each of Streptococcus bovis, Selenomonas ruminantium subsp. lactilytica. Megasphaera elsdenii, Veillonella alcalescens, and Propionibacterium acnes. The pH optima for growth were between 6.1 and 6.6 for all six species, and the upper pH limits were between 7.3 and 7.8. The lower limit pH values for growth on glucose were 5.4 for B. fibrisolvens, near 5.0 for V. alcalescens, and between 4.4 and 4.8 for the other four species. These values fall within the minimum pH ranges found when these species are grown in poorly buffered medium with nonlimiting glucose concentrations. Acid sensitivity per se could cause the washout of B. fibrisolvens, but not of the other five species, from the rumens of animals on high-starch diets. 相似文献
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Severe hypoxia leads to excess production of hydrogen sulfide in marine environments. In this study, we examined the effect of sulfide on growth of four facultative anaerobic marine bacteria in minimal media under anaerobic conditions. The Gram-negative chemolithoautotrophic Marinobacter sp. tolerated sulfide concentrations up to 0.60 mM, with doubling and lag times increasing as a function of increasing sulfide concentration but with no change in maximum culture yields; growth did not occur at 1.2 mM sulfide. Similar results were obtained for the metabolically diverse Gram-negative denitrifying Pseudomonas stutzeri, except that growth occurred at 1.2 mM and culture yields at 0.60 and 1.2 mM sulfide were approximately 10-fold lower than at sulfide concentrations between 0 and 0.30 mM. Increases in doubling and lag times accompanied by an overall 10-fold decrease in maximum culture yields were found for the Gram-negative chemoheterotrophic Vibrio sp. at all sulfide concentrations tested. In contrast, growth of a Gram-positive chemoheterotrophic Bacillus sp. was resistant to all sulfide concentrations tested (0.15–1.2 mM). Our results highlight the variable responses of marine bacteria to sulfide and provide some insight into shifts that may occur in microbial community structure and diversity as a consequence of changes in sulfide levels that are the result of hypoxia. 相似文献
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Vibrio fischeri andV. harveyi possess cytochromes a, b, and c, whereasPhotobacterium leiognathi andP. phosphoreum also contain cytochrome d. In all, cytochrome a as well as some of c binds carbon monoxide. Carbon monoxide does not inhibit bioluminescence (in vivo or in vitro), but carbonyl cyanidem-chlorophenylhydrazone inhibits only in vivo bioluminescence. This inhibition is due to dissipation of the proton motive force which indirectly inhibits bioluminescence by interruption of aldehyde recycling. Bioluminescence is thereby indirectly coupled to the proton motive force. 相似文献
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镉对平菇菌丝生长及同工酶表达的影响 总被引:8,自引:0,他引:8
采用液体培养研究了不同浓度镉(Cd)处理7d对平菇(Pleurotus ostreotus)菌丝体生长及其同工酶表达的影响.结果表明,50 μmol/L Cd处理对平菇菌丝生长抑制率为55.6%,2000μmol/L Cd为菌丝生长致死浓度.同工酶活性电泳图谱显示,Cd处理不仅改变酯酶(EST)、乳酸脱氢酶(LDH)、过氧化物酶(POD)和超氧化物岐化酶(SOD)同工酶带数,而且也影响各酶带的表达强度.50 μmol/L和100μmol/L Cd处理分别诱导出2条和3条新的POD同工酶带,而抑制一条分子量较大的POD酶带的表达,但明显增强总的POD活性.正常生长的平菇菌丝体LDH同工酶谱只出现2条酶带,50 μmol/L以下Cd处理不影响其同工酶的表达,100 μmol/L Cd处理组2条同工酶带均消失.50和100μmol/L Cd处理能够显著增强SOD活性,且诱导2条SOD同工酶表达.100μmol/L及其以下浓度Cd处理均能提高EST的活性,这可能具有加速细胞内酯类化合物水解而增加羧基的数量以螯合更多的游离Cd离子而解Cd毒的作用.Cd浓度在50μmol/L以下时,随着处理浓度的增加,对金属硫蛋白的诱导作用呈逐渐增强的趋势,而100 μmol/L Cd的诱导作用减弱. 相似文献
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V. S. Danilov G. B. Zavilgelsky A. P. Zarubina M. M. Mazhul 《Moscow University Biological Sciences Bulletin》2008,63(2):57-61
It is revealed that in the bacterial lacking luxCDE genes responsible in the standard scheme for synthesis of aliphatic aldehydes—the substrate for the bacterial bioluminescence—there is an aldehyde factor at sufficient concentration for bright luminescence of these bacteria. 相似文献
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We describe a protocol for imaging bacterial luciferase (Lux)-expressing bacteria in small living animals. In this protocol, light emitted by Lux-expressing bacteria is detected and monitored by a cooled charge-coupled device detector. When these bacteria are administered to animals, it provides a potentially valuable approach to generate sensitive whole-body images with extremely low background. This imaging technology should enable the real-time monitoring of bacterial migration into both primary and metastatic tumors in several different mouse tumor models at a strong quantification power. 相似文献
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Rosa Margesin 《Extremophiles : life under extreme conditions》2009,13(2):257-262
Three bacterial (Pedobacter heparinus, Pedobacter piscium, Pedobacter cryoconitis) and three yeast strains (Saccharomyces cerevisiae, Leucosporidiella creatinivora, Rhodotorula glacialis) of different thermal classes (mesophiles and psychrophiles) were tested for the effect of temperature on a range of growth
parameters, including optical density, viable cell numbers, and cell dry mass, in order to determine the temperature conditions
under which maximum biomass formation is obtained. Maximum values of growth parameters obtained at the stationary growth phase
of the strains were used for statistical calculation. Temperature had a significant (P ≤ 0.05) effect on all growth parameters for each strain; correlations between the growth parameters were significant (P ≤ 0.05–0.01). The maximum growth temperature or the temperature at which microbial growth was fastest was in no case the temperature
at which the investigated strains produced the highest amount of biomass. All tested psychrophilic bacteria and yeast strains
produced highest amounts of cells (as calculated per mg cell dry mass or per OD600 unit) at 1°C, while cell numbers of mesophiles were highest at 20°C. Thus, cultivation temperatures close to the maximum
growth temperature are not appropriate for studying psychrophiles. 相似文献