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1.
2.
EPR spectroscopy is a powerful tool to identify at a molecular level, the different steps of catalyst preparation, and of catalytic reactions:
  1. Deposition of paramagnetic transition metal ions onto a support is monitored, and the coordination sphere of the metallic center is characterized by EPR.
  2. The catalyst is also characterized after activation (thermal oxidation or reduction):
  • - the distribution among the different sites in zeolites can be determined;
  • - the dispersion of the active phase may be appreciated;
  • - the unsaturation degree of the active site may be evaluated using probe molecules such as water or13C enriched carbon monoxide.
    1. The catalytic mechanisms can be investigated by studying the elementary steps of the catalytic reaction, as illustrated for methanol oxidation over Mo/SiO2 catalysts whose EPR results have extended the reaction mechanism proposed on the basis of kinetic data. In addition, reaction intermediates may be isolated inquasi-in situ conditions as in the case of olefin oligomerization catalyzed by Ni/SiO2 systems.
      相似文献   

    3.
    One hundred and four strains of heterotrophic bacteria have been isolated and characterized from two species of bivalve mollusks cultivated in the Gulf of Nha Trang (Vietnam) and from the water of a mariculture farm. The isolates have been identified on the basis of morphological, physiological, biochemical, and chemotaxonomic properties, as well as by the content of G+C bases in DNA. In the microflora of mollusks, Vibrio alginolyticus was predominant; the pathogenic species V. harveyi and V. splendidus were found as well. Staphylococci and bacilli occupied the second place in abundance after vibrios. In addition, coryneforms and enterobacteria, as well as Pseudomonas spp. and Pseudoalteromonas spp., were revealed. The composition of the water microflora was more diverse as compared with the microflora of mollusks. In the water, Bacillus spp., Vibrio spp., and Pseudomonas spp. were predominant. Brevibacterium spp. and other coryneform bacteria, as well as enterobacteria, occurred in significant amounts. In addition, Pseudoalteromonas spp., Marinococcus sp., Halobacillus sp., Shewanella sp., Sulfitobacter sp., and bacteria of the CFB cluster were noticed. The presence of pathogenic and conditionally pathogenic bacterial species in the water and mollusks is probably the reason for the high death rate of cultivated animals at the mariculture farm.  相似文献   

    4.
    U. H. Mane 《Hydrobiologia》1975,47(3-4):439-451
    1. The neutral red technique was employed to study the rate of filtration in Katelysia opima.
    2. The weight specific water filtration was found to be greater for younger clams compared to the older ones.
    3. The rate of water filtration increased with decreasing salinity.
    4. Water filtration was found to increase as temperature increased, reaching a maximum at 35°C. but then sharply decreasing at 39°C.
    5. Light had no significant effect on the rate of filtration.
    6. Suspended matter was found to affect the rate of water filtration.
    7. The rate of filtration was low at high pH and high in low pH.
    8. The rate of water filtration was found to be faster during high tide than during low tide.
    9. The presence of the parasitic crab, Pennotheris sp., in the mantle cavity of clams had a marked effect on the particle filtration.
    10. Accidental cut of the siphon tips had no effect on the rate of filtration.
      相似文献   

    5.
    J. Rzedowski 《Brittonia》1972,24(4):398-402
    1. -Bigelowia pyramidata Rob. & Greenm. from Oaxaca proves to be a dioecious plant and is therefore transferred to the genusBaccharis.
    2. -Baccharis matudae sp. nov. is described on the basis of material collected in Zacatecas and San Luis Potosí. The species is closely related toB. pyramidata (Rob. & Greenm.) Rzedowski.
    3. -Baccharis zamoranensis sp. nov. is described on the basis of material collected on the border of Querétaro and Guanajuato. The taxon is related toB. multiflora H.B.K., known from central and southern Mexico.
      相似文献   

    6.
    1. A collection of polychaetous annelids made by the Japanese research vessel ‘Umitaka-Maru’ in December 1968 from the Arabian Gulf was examined.
    2. Seventeen species, belonging to twelve families, are identified.
    3. Two pelagic families (Alciopidae, Tomopteridae) and five species (Plotohelmis capitata, Tomopteris sp.,Autolytus cf.A. longistaffi, Lysidice ninetta, Pista cristata) are recorded new to the fauna of the Arabian Gulf.
      相似文献   

    7.
    1. The fine-structure analysis of the hydrocarbon oxidizing microorganism, Acinetobacter sp., demonstrated a cytoplasmic modification resulting from growth on paraffinic and olefinic hydrocarbons.
    2. Intracytoplasmic hydrocarbon inclusions were documented by electron microscopy with chemical identifications obtained by gas chromatography and X-ray diffraction.
    3. These results demonstrate the ability of a micro-organism to accumulate hydrocarbon substrates intracellularly which, in turn, indicates transport across the cell membrane.
      相似文献   

    8.
    • 1.Loricariichthys sp., an air-breathing fish from the Amazon River has one major hemoglobin component.
    • 2. Quantitative studies on the kinetics of O2 dissociation and CO combination to the protein were performed by stopped-flow experiments at different pH values and a constant ATP concentration of 1.25 mM.
    • 3. The oxygen dissociation shows a simple first order behavior and a strong pH dependence.
    • 4. The CO combination kinetics, on the other hand, were homogeneous and fast at higher pH values and slow and clearly autocatalytic at pH values below 7.0.
      相似文献   

    9.
    1. An ecological and physiological study ofI. chelipes from Lake Veere, The Netherlands, was made.
    2. Both osmoregulatory capacity and survival decrease with increasing temperature as well as with decreasing salinity.
    3. Respiration experiments suggest that the need of energy by osmoregulatory activity may be supplied at the cost of other physiological processes, at any rate at temperatures of 10°C and higher.
    4. It may be expected that, if temperatures higher than 15°C and salinities lower than 8‰ coincide, the population ofI. chelipes will be affected negatively.
      相似文献   

    10.
    • 1. Blood oxygen affinities, erythrocytic nucleoside triphosphate concentrations (NTP) and other hematological parameters were measured in facultative air-breathing fish from the Amazon after acclimation to well-aerated (“normoxic”) and hypoxic water (PO2 = 125–135 and 20–25 mm, respectively).
    • 2. In the armored catfishHypostomus sp. andPterygoplichthys sp., hypoxia induces intermittent surfacing to gulp air and results in lower NTP levels, chiefly through significant decreases in guanosine triphosphate (GTP). The subsequent increases in blood O2 affinity appear adaptive to lowered time average internal O2 tensions. No similar changes were seen in the ellSynbranchus which breathes air almost continuously when kept in hypoxic water.
    • 3. The results are discussed in terms of their adaptive significance, and compared with data on temperate fish.
      相似文献   

    11.
    In this study, we investigated chitin hydrolysis by the bacteria inhabiting the ground of the Barents Sea. Four microbial cultures isolated from the ground were described as the genera of Rhodococcus sp., Bacillus sp., Pseudomonas sp., and Acinetobacter sp. Protein complexes with endochitinase and exochitinase activities were purified from the culture liquid. These microorganisms can participate in chitin degradation in sea water. The average molecular weight of the protein fraction with the chitinolytic activity constituted 92–135 kDa. The ratio of the endo-/exochitinase activities of the enzymatic systems was increased in the order Pseudomonas sp. < Bacillus sp. < Acinetobacter sp. < Rhodococcus sp.  相似文献   

    12.
    1. The respiratory chain energy conservation systems of Bacillus megaterium strains D440 and M have been investigated following growth in batch and continuous culture. Respiratory membranes from these strains contained cytochromes b, aa 3 , o and b, c, a, o, respectively; both readily oxidised NADH but neither showed any pyridine nucleotide transhydrogenase activity.
    2. Whole cells of both strains exhibited endogenous →H-/O ratios of approximately 4; when loaded with specific substrates the resultant →H+/O ratios indicated that proton translocating loops 1 and 2 were present in strain D440 and that loops 2 and 3 were present in strain M.
    3. In situ respiratory activities were measured as a function of dilution rate during growth in continuous culture. True molar growth yields with respect to oxygen (Y O 2) of approximately 50 g cells·mole oxygen-1 were obtained for most of the nutrient limitations employed. Average values for Y ATP of 12.7 and 10.8 g cells·mole ATP equivalents-1 were subsequently calculated for strains D440 and M respectively.
    4. Energy requirements for maintenance purposes were low in energy-limited cultures but were substantially increased when growth was limited by nitrogen source (NH 4 + ). Under the latter conditions there is probably a partial uncoupling of energy-conserving and energy-utilising processes leading to energy wastage.
      相似文献   

    13.
    The occurrence of the two key enzymes of the Entner-Doudoroff pathway, gluconate-6-phosphate dehydrase and 2-keto-3-deoxygluconate-6-phosphate aldolase, was determined in approximately 150 strains belonging to 37 different bacterial genera. The following results were obtained:
    1. 24 out of 37 genera have at least one representative with the Entner-Doudoroff mechanism. It is thus more widespread than previously thought.
    2. The Entner-Doudoroff mechanism occurs mainly in gram-negative bacteria with a DNA base composition in the range 52–70% GC. Eighty-five per cent of these organisms contain the system, while only 20% (6 strains) of the gram-negative organisms with less than 52% GC possess both enzymes.
    3. This pathway is absent in all gram-positive organisms investigated except in 5 out of 12Nocardia strains.
    4. Erwinia and some strains of theAchromobacter-Alcaligenes group are exceptional, since they possess only 2-keto-3-deoxygluconate-6-phosphate aldolase.
      相似文献   

    14.
    1. Malic enzyme was induced by malic acid and malo-lactic enzyme was induced by malic acid and glucose in cells of three strains ofLactobacillus casei that were able to grow on malate as carbon source. Two strains ofStreptococcus faecalis formed malic enzyme only, whereas only malo-lactic enzyme was formed by a glucose requiring strain ofStreptococcus lactis.
    2. Given sequential induction, cells ofLactobacillus casei M40 were found to contain malic enzyme and malo-lactic enzyme simultaneously.
    3. Malic enzyme and malo-lactic enzyme have been separated by chromatography on Sephadex G-200. These two enzymes have a different pH optimum, different affinities for substrates, form different end products from malate, and have molecular weights of 120000 and 150000 daltons respectively.
      相似文献   

    15.

    Introduction

    Atoms theory and symmetry theory dominated physics. Symmetry propagation and interactions verify the Curie principle. But its violation by symmetry breaking is spontaneous.Fragility is creative. An information breaks a generalized symmetry. Results on symmetry breakings are not valid for fuzzy symmetries. The breaking of a fuzzy symmetry leads only to a pour symmetry (Fig.1). Homogeneity breaking, and atom of time are not usual concepts. We examine in this work symmetry breakings which generate the living time.

    Relativistic Time-Space Breaking

    1. Medium and environment of living define ordinary referential of space and referential of time. Astronomical phenomena following classical mechanics and microphysical phenomena following quantum mechanics can be written with the same t coordinate.
    2. Relativity corrections. Schrödinger's Quantum mechanics (Eq.0) approximately governs molecular systems (Relativity corrections can be expressed as physical effects in the above defined referential).
    3. Time reversal symmetry. The well-known Wigner's transformation determines the microscopic reversibility.
    4. The three essential particle-vacancy equilibria. This transformation is verified by all particle-vacancy reciprocity. Vacancy moves like particle but with negative moment and positive kinetic energies. Only three biochemical equilibria admit this time reversal symmetry, namely: oxydo-reduction, acido-basicity, fluidity-viscosity. In these case, reacting electron, solvated proton, water molecule are respectively antagonist of the corresponding vacancy.
    5. Fuzzy character of time reversal symmetry. Dirac's equation does not admit this symmetry which only appears at the “non relativistic” limit of quantum phenomena. Hence particle-vacancy reciprocity is fuzzy according to the experimental evidence. (Laforgue et al., 1988).

    Oriented Time

    1. From the universal reversible time, an additional breaking generates the oriented time, both in the astronomical and in the living matter.
    2. Irreversibility for the environment. We refer to Prigogine and Stengers (1988).
    3. Irreversibility for the living matter. We refer to Lochak (1986). Because equation (0), above discussed, is “microreversible” the second breaking could come from an additional term vanishing in the stationary states but increasing with time in evolutionary processes.
    4. Negative times. Taking into account the fuzzy character of the time reversed symmetry, the third breaking cannot suppress completely the occurrence of negative times. Reversed time is controlled by direct time. Except in the three above reported cases, time reversal symmetry is not verified by the medium. Free motion of the particle following eg.(0) or of the vacancy following time reversal reciprocal equation takes place only during short jumps from an interaction site to an other. Fig. 2 schematizes the law of motion of the electric charge corresponding to the transport by proton or by proton vacancy in an unitary field (fluctuations are neglected). The reserved jumps are estimated in the range of 10?12s. It is not excluded that such a jump can control a direct phenomenon.
    5. The living time. Biological phenomenon appears as an oriented set of events. Nevertheless latency or exaltation phases could be perceived. This modulation could be described by positive and negative times additional to the basic time. (Negative can be interpreted as above)

    Living produces Time

    1. That were not understandable, if time was only a frame, in which change occurs. Taking chance as frame and time as effect, we regard biological activity as integrating reversible and irreversible time. Living synchronizes internal and external time by its own effort as it results (Lestienne, 1990) from Chronobiology.
    2. Time modulation. Let us consider the dy1...dyi...dyp changes in the variables of the systems, dy={dyi} has produced dt. We proof (eq.(1) to (4)) that time is modulated by a φ(y) speed coefficient depending on the medium. tmodulated=tφ (y) ?1
    3. The production of reversible time (e.g.acido-basicity) determines time modulation. As above reported it remains some reversibility effects (jumps of negative time) which modulate time. E.G., if an important amount of reagent is necessary to modify an acid-base equilibrium, φ(y) is small.
    4. Time modulation and activation-repression reciprocity. As well-known, long tmodulated means repression, short tmodulated means exaltation. Extrema of ? are symmetrical because particle and vacancy are reciprocal. Nevertheless reciprocity is not perfect. E.g., on fig. 3, the wet receptor determines the cell increasing, the dry receptor the cell senescence of a certain alga (Lück, 1962).
    5. Irreversible time production. Medium accepts entropy. Hence it acts in the second breaking of time. Living extracts the free energy from the medium, like a dissipative structure. That insures an operative point far from the thermodynamical equilibrium.

    Consumption of Time

    1. The three followings correspond to the more trivial time consumption.
    2. Rhythmical time. Free energy flux is favourable to the arising of order in space or time. This later gives a structure to the living time.
    3. Mutual dependence of reversible time and rhythms. Time irreversible structure can be controlled by the above considered particle-vacancy equilibrium. Consequently the living time (modulated and structured) is a chemical time connected to molecular properties and to statistical thermodynamics. Practically, the connection between chronobiology and chemistry is important. The use of drugs could be interpreted as a response to an aggression against biorhythms.
    4. Lifetime. The dead-birth rythm can be broken in two ways: evolution or indefinite life. This later is non exceptional for the living matter, e.g. in the vegetals where it is connected with the chlorophyllic assimilation; the time reversal significance of which is evident.
    5. The plan of the alchemist. Indefinitely life has fascinated individuals. Do the human species becomes better adapted by a longer life?

    Conclusions

    1. Atoms of time could exist.
    2. Biological time is defined by the breaking of five generalized symmetries, namely: Minkovski's space symmetry, reversibility, homogeneity, rhythmicity, generations reproduction.
    3. Environment and medium determine non relativistic, oriented, structured time.
    4. At the microphysical scale, a fuzzy time reversal symmetry takes place, the breaking of which is not complete. Reversible time and dominating irreversible time are integrated in living phenomena.
    5. Three fundamental particle-vacancy reciprocities admit a part of reversibity. Irreversibility governs the all others phenomena.
    6. Time is produced chemically.
    7. A new perspective is the connection between chemical equilibria and rhythms including the time of the life.
      相似文献   

    16.
    Hormone-directed transport is shown in a detached adult leaf ofPelargonium zonale, after a local application of solution (0.1 ml) of various groups of phytohormones (GA3 -BAP-AIA-ANA-2,4-D). Importance of isolated leaf as a simplified experimental system is underlined by the positive results obtained with35S (or32P). The idea of competition between two attractive foliar centers, induced by hormones is illustrated:
    1. with regard to the concentration of the same hormone (higher effect at 25 mg than at 2.5 mg.l-1 with GA3 for example);
    2. when two different hormones are competitive on the same leaf. In this respect, GA3 appears to be the most effective hormone tested on this material.
    Finally, the idea of a hormone-directed transport, independent of the antisenescence effect is supported by the fact that an orientated translocation remains induced after general pretreatment with an alternative hormone (BAP and GA3, for instance).  相似文献   

    17.

    Introduction

    Atoms theory and symmetry theory dominated physics. Symmetry propagation and interactions verify the Curie principle. But its violation by symmetry breaking is spontaneous.Fragility is creative. An information breaks a generalized symmetry. Results on symmetry breakings are not valid for fuzzy symmetries. The breaking of a fuzzy symmetry leads only to a pour symmetry (Fig.1). Homogeneity breaking, and atom of time are not usual concepts. We examine in this work symmetry breakings which generate the living time.

    Relativistic Time-Space Breaking

    1. Medium and environment of living define ordinary referential of space and referential of time. Astronomical phenomena following classical mechanics and microphysical phenomena following quantum mechanics can be written with the same t coordinate.
    2. Relativity corrections. Schrödinger's Quantum mechanics (Eq.0) approximately governs molecular systems (Relativity corrections can be expressed as physical effects in the above defined referential).
    3. Time reversal symmetry. The well-known Wigner's transformation determines the microscopic reversibility.
    4. The three essential particle-vacancy equilibria. This transformation is verified by all particle-vacancy reciprocity. Vacancy moves like particle but with negative moment and positive kinetic energies. Only three biochemical equilibria admit this time reversal symmetry, namely: oxydo-reduction, acido-basicity, fluidity-viscosity. In these case, reacting electron, solvated proton, water molecule are respectively antagonist of the corresponding vacancy.
    5. Fuzzy character of time reversal symmetry. Dirac's equation does not admit this symmetry which only appears at the “non relativistic” limit of quantum phenomena. Hence particle-vacancy reciprocity is fuzzy according to the experimental evidence. (Laforgue et al., 1988).

    Oriented Time

    1. From the universal reversible time, an additional breaking generates the oriented time, both in the astronomical and in the living matter.
    2. Irreversibility for the environment. We refer to Prigogine and Stengers (1988).
    3. Irreversibility for the living matter. We refer to Lochak (1986). Because equation (0), above discussed, is “microreversible” the second breaking could come from an additional term vanishing in the stationary states but increasing with time in evolutionary processes.
    4. Negative times. Taking into account the fuzzy character of the time reversal symmetry, the third breaking cannot suppress completely the occurrence of negative times. Reversed time is controlled by direct time. Except in the three above reported cases, time reversal symmetry is not verified by the medium. Free motion of the particle following eg.(0) or of the vacancy following time reversal reciprocal equation takes place only during short jumps from an interaction site to an other. Fig. 2 schematizes the law of motion of the electric charge corresponding to the transport by proton or by proton vacancy in an unitary field (fluctuations are neglected). The reserved jumps are estimated in the range of 10?12s. It is not excluded that such a jump can control a direct phenomenon.
    5. The living time. Biological phenomenon appears as an oriented set of events. Nevertheless latency or exaltation phases could be perceived. This modulation could be described by positive and negative times additional to the basic time. (Negative can be interpreted as above.)

    Living produces Time

    1. That were not understandable, if time was only a frame, in which change occurs. Taking change as frame and time as effect, we regard biological activity as integrating reversible and irreversible time. Living synchronizes internal and external time by its own effort as it results (Lestienne, 1990) from Chronobiology.
    2. Time modulation. Let us consider the dy1...dyi...dyp changes in the variables of the system, dy={dyi} has produced dt. We proof (eq.(1) to (4)) that time is modulated by a Φ(y) speed coefficient depending on the medium. tmodulated=tΦ-1 (y)
    3. The production of reversible time (e.g.acido-basicity) determines time modulation. As above reported it remains some reversibility effects (jumps of negative time) which modulate time. E.g., if an important amount of reagent is necessary to modify an acid-base equilibrium, Φ(y) is small.
    4. Time modulation and activation-repression reciprocity. As well-known, long tmodulated means repression, short tmodulated means exaltation. Extrema of ? are symmetrical because particle and vacancy are reciprocal. Nevertheless reciprocity is not perfect. E.g., on fig. 3, the wet receptor determines the cell increasing, the dry receptor the cell senescence of a certain alga (Lück, 1962).
    5. Irreversible time production. Medium accepts entropy. Hence it acts in the second breaking of time. Living extracts the free energy from the medium, like a dissipative structure. That insures an operative point far from the thermodynamical equilibrium.

    Consumption of Time

    1. The three followings correspond to the more trivial time consumption.
    2. Rhythmical time. Free energy flux is favourable to the arising of order in space or time. This later gives a structure to the living time.
    3. Mutual dependence of reversible time and rhythms. Time irreversible structure can be controlled by the above considered particle-vacancy equilibrium. Consequently the living time (modulated and structured) is a chemical time connected to molecular properties and to statistical thermodynamics. Practically, the connection between chronobiology and chemistry is important. The use of drugs could be interpreted as a response to an aggression against biorhythms.
    4. Lifetime. The dead-birth rhythm can be broken in two ways: evolution or indefinite life. This later is non exceptional for the living matter, e.g. in the vegetals where it is connected with the chlorophyllic assimilation; the time reversal significance of which is evident.
    5. The plan of the alchemist. Indefinitely life has fascinated individuals. Do the human species becomes better adapted by a longer life?

    Conclusions

    1. Atoms of time could exist.
    2. Biological time is defined by the breaking of five generalized symmetries, namely: Minkovski's space symmetry, reversibility, homogeneity, rhythmicity, generations reproduction.
    3. Environment and medium determine non relativistic, oriented, structured time.
    4. At the microphysical scale, a fuzzy time reversal symmetry takes place, the breaking of which is not complete. Reversible time and dominating irreversible time are integrated in living phenomena.
    5. Three fundamental particle-vacancy reciprocities admit a part of reversibility. Irreversibility governs the all others phenomena.
    6. Time is produced chemically.
    7. A new perspective is the connection between chemical equilibria and rhythms including the time of the life.
      相似文献   

    18.
    The paper presents data on primary productivity and phytoplankton communities in new experimental ponds which received the following treatments; ammonium nitrate and triplesuperphosphate, triplesuperphosphate, cracked corn (10% crude protein) and Auburn No. 3 fish feed (36% crude protein). Comparative data on algal communities were also obtained from production ponds which received feeds or fertilizers. Basic ecological data on macro-algae are also presented.
    1. All nutrient additions to experimental ponds resulted in higher levels of gross photosynthesis and greater concentrations of chlorophyll a than were found in the control treatments. Fertilization with both nitrogen and phosphorus gave the highest values. Chlorophyll a and gross photosynthesis were higher in ponds receiving high protein content feed (Auburn No. 3) than in ponds to which low protein content feed (corn) was applied.
    2. Persistent blooms of blue-green algae occurred in ponds receiving nitrogen and phosphorus fertilization. Phosphorus only fertilization produced blooms of blue-greens, but these blooms did not persist as in the ponds to which nitrogen was also added. Control ponds were dominated by green algae. Blue-green algae were seldom abundant in feed treatments.
    3. Production ponds had high level of gross photosynthesis and large concentrations of chlorophyll a.
    4. Many of the production ponds which received feed applications developed heavy blooms of blue-green algae.
    5. The major species of blue-green algae observed in the present study were Oscillatoria sp., Raphidiopsis curvata, Anacystis nidulans, A. aeruginosa, Spirulina sp., and Anabaena circinalis. Heterocyst bearing forms, which can presumably fix nitrogen, were seldom noted in ponds that received continuous additions of nitrogen from fish feeds.
    6. Macro-algae are abundant in many fish ponds. Data illustrating the competition of macro-algae with phytoplankton are presented.
      相似文献   

    19.
    • 1.1. Creatinine amidohydrolase from Pseudomonas sp. has a pH optimum of 8.0 and is activated by divalent metals manganese, magnesium, zinc and cobalt.
    • 2.2. It is acid labile but shows good stability at 55°C in alkaline solutions.
    • 3.3. It has a mol. wt in the region of 248,000 and Michaelis constants of 31.7mM and 80 mM for creatinine and creatine respectively.
    • 4.4. Results indicate that the enzyme molecule contains 8 subunits of similar mol. wt.
      相似文献   

    20.
    1. Phage-like particles Nb1 isolated from cells of Nitrobacter agilis were characterized after freeze etching and after treatment by fixation agents.
    2. Ethanol-acetic acid fixed particles can be digested by the proteolytic enzyme papain.
    3. Ethanol-acetic acid fixed particles show a loss in mass and volume after treatment with DNase. Under the same conditions RNase has no influence.
    4. The chemical composition of the phage-like particle Nb1 is discussed.
      相似文献   

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