Inhibitory effect of piperidinoethylesters of alkoxyphenylcarbamic acids on photosynthesis
Language English Country Slovakia Media print
Document type Comparative Study, Journal Article
PubMed
1330811
Knihovny.cz E-resources
- MeSH
- Chlorella drug effects metabolism MeSH
- Electron Spin Resonance Spectroscopy MeSH
- Esters MeSH
- Photosynthesis drug effects MeSH
- Carbamates pharmacology MeSH
- Manganese metabolism MeSH
- Piperidines pharmacology MeSH
- Plants drug effects metabolism MeSH
- Structure-Activity Relationship MeSH
- Publication type
- Journal Article MeSH
- Comparative Study MeSH
- Names of Substances
- Esters MeSH
- Carbamates MeSH
- Manganese MeSH
- Piperidines MeSH
Piperidinoethylesters of 2-, 3- and 4-alkoxysubstituted phenylcarbamic acids (alkoxy = methoxy - decyloxy) inhibit photosynthetic processes in algae and plant chloroplasts. The inhibitory activity is strongly dependent on the alkyl chain length of the alkoxy-substituent showing a typical quasi-parabolic dependence with maximum effect at 6-8 carbon atoms in the alkyl chain. The alkoxy-substitution in position 2 decreases the inhibitory activity of a compound when compared with its 3- and 4-substituted analogues. ESR studies of spinach chloroplasts confirm that the compounds studied cause destruction of PS II whereby, in the presence of the most effective of the derivatives tested, Mn2+ ions are released from the protein complex.
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