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171.
Summary In contrast with the toxicities of sulfate and chloride salts added to substrates, the anions SO4 and C1 were not injurious when accumulated without leaf burning by cotton and tomato plants from atmospheres enriched with
SO2 or HC1 gases. The foregoing results are discussed in terms of cationenzyme interactions which appear to represent at least
a major cause of salt toxicity. Although anions are largely unreactive with enzymes it has long been observed that chloride
salts in soil solutions are far more toxic than sulfate salts. Five of seven species have shown nearly equal growth repressions
on substrates with 100 me/1 of C1 salts versus 200 me of SO4 salts, each added as 50 per cent Na. The ion activities of the two solutions were equal and the sum of cations in the plant
saps were similar. The osmotic differentials (average about 10 atm) between the expressed tissue fluids and these substrate
solutions were remarkably uniform within species. It is projected that the downward transport of salts via the phloem provides
for root concentrations which supply ions to the xylem and thereby control the uptake of substrate salts. 相似文献
172.
Mercuric ions, as well as organomercuric ions and cadmium ions, can inhibit deoxyribonucleic acid-mediated transformation in Bacillus subtilis 168 without decreasing the viability of the total population. Differences in the inhibition of transformation by mercuric ions are identifiable on a temporal and concentration dependence basis. Sensitivity to low concentrations (9.2 x 10(-8) M) appears early in the uptake of deoxyribonucleic acid before the transformed markers have become insensitive to deoxyribonuclease. Resistance to "low concentrations" of Hg(2+) is kinetically indistinguishable from the requirement for magnesium in the transformation process. This inactivation is not reversed by the mercury-binding compound glutathione. Sensitivity to mercuric ions at a higher concentration (5.52 x 10(-7) M) occurs after the donor deoxyribonucleic acid has become insensitive to deoxyribonuclease. These complex interactions between mercuric ions and the process of transformation are discussed. 相似文献
173.
Mutation in Saccharomyces cerevisiae Conferring Streptomycin and Cold Sensitivity by Affecting Ribosome Formation and Function 总被引:9,自引:3,他引:6
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A cold-sensitive, streptomycin-sensitive mutant of Saccharomyces cerevisiae accumulates a 28S ribonucleoprotein particle when grown at low temperature. This particle contains 17S ribosomal ribonculeic acid which is degraded when exposed to ribonuclease. The particle does not serve as a precursor to 60 and 40S ribosomal subunits nor is it turned over when growth is allowed to resume at the permissive temperature; rather it is only diluted by growth. That streptomycin sensitivity (allelic with cold sensitivity) is ribosomal is evidenced by the inhibition of protein synthesis in vitro by streptomycin and the binding of labeled streptomycin to the mutant but not the parental 40S ribosomal subunit. 相似文献
174.
175.
176.
177.
Binding of ethidium bromide to double-stranded ribonucleic acid 总被引:4,自引:0,他引:4
178.
The synthesis of poly(N-methyl-L -alanine) and poly (N-methyl-DL -alanine) are described. The polymers were examined by 220 MHz high-resolution nuclear magnetic resonance (nmr) and circular dichroism (CD). The results demonstrate that poly(N-methyl-L -alanine) exists as an ordered helical structure with all the amide bonds in the trans configuration in appropriate solvents. As trifluoroacetic acid (TFA) is added to the solutions of the polymer in helix-supporting solvents, resonances corresponding to both trans and cis amide conformations of N-methyl, C-methyl, and α-CH are observed. The presence of both the trans and the cis peptide bonds in a polymer chain disrupts the ordered structures. Our conclusions from CD data are in agreement with the nmr results. Ultracentrifugation shows that degradation of the polymer chain does not occur during the TFA treatment. 相似文献
179.
180.
Frank Wunderlich 《Cell and tissue research》1969,101(4):581-587
Summary Macronuclear envelopes were isolated from the ciliated protozoan Tetrahymena pyriformis GL, negatively stained and examined in the electron microscope. The frequency of central granules in the macronuclear pores was evaluated in five different physiological states: (1) stationary phase of growth, (2) exponential phase of growth, (3) heat-synchronized cultures at the end of the heat-synchronization treatment, (4) heat-synchronized cultures at the beginning of the first division, (5) heat-synchronized cultures at the end of the first division.The percentage of pores containing a central granule was markedly enhanced in heatsynchronized cultures at the end of the first division, i.e. a state known for an increase in ribosome formation. Actinomycin D was found to cause a significant decrease in central granule frequency.The observed alterations in central granule frequency seem to confirm the hypotheses which consider the central granule as representing a ribonucleoprotein particle in transit from nucleus to cytoplasm through the nuclear pore.For careful technical assistance I am indebted to Miss Marianne Whiter as well as to Drs. H. Falk, W.W. Franke and P. Sitte for helpful discussions. This work was supported in part by the Deutsche Forschungsgemeinschaft. 相似文献