Polyphenolic Allelochemicals from the Aquatic Angiosperm Myriophyllum spicatumInhibit Photosystem II
Open Access
- 1 December 2002
- journal article
- Published by Oxford University Press (OUP) in Plant Physiology
- Vol. 130 (4) , 2011-2018
- https://doi.org/10.1104/pp.011593
Abstract
Myriophyllum spicatum (Haloragaceae) is a highly competitive freshwater macrophyte that produces and releases algicidal and cyanobactericidal polyphenols. Among them, β-1,2,3-tri-O-galloyl-4,6-(S)-hexahydroxydiphenoyl-d-glucose (tellimagrandin II) is the major active substance and is an effective inhibitor of microalgal exoenzymes. However, this mode of action does not fully explain the strong allelopathic activity observed in bioassays. Lipophilic extracts of M. spicatum inhibit photosynthetic oxygen evolution of intact cyanobacteria and other photoautotrophs. Fractionation of the extract provided evidence for tellimagrandin II as the active compound. Separate measurements of photosystem I and II activity with spinach (Spinacia oleracea) thylakoid membranes indicated that the site of inhibition is located at photosystem II (PSII). In thermoluminescence measurements with thylakoid membranes and PSII-enriched membrane fragments M. spicatum extracts shifted the maximum temperature of the B-band (S2QB −recombination) to higher temperatures. Purified tellimagrandin II in concentrations as low as 3 μm caused a comparable shift of the B-band. This demonstrates that the target site of this inhibitor is different from the QB-binding site, a common target of commercial herbicides like 3-(3,4-dichlorophenyl)-1,1-dimethylurea. Measurements with electron paramagnetic resonance spectroscopy suggest a higher redox midpoint potential for the non-heme iron, located between the primary and the secondary quinone electron acceptors, QA and QB. Thus, tellimagrandin II has at least two modes of action, inhibition of exoenzymes and inhibition of PSII. Multiple target sites are a common characteristic of many potent allelochemicals.Keywords
This publication has 42 references indexed in Scilit:
- Reduction of the Mn Cluster of the Water-Oxidizing Enzyme by Nitric Oxide: Formation of an S-2 StateBiochemistry, 2002
- An evaluation of structural models for the photosynthetic water-oxidizing complex derived from spectroscopic and X-ray diffraction signaturesJBIC Journal of Biological Inorganic Chemistry, 2001
- Resistance of microalgae to modern water contaminants as the result of rare spontaneous mutationsEuropean Journal of Phycology, 2001
- Binding of carboxylate anions at the non-heme Fe(II) of PS II. II. Competition with bicarbonate and effects on the QAQB electron transfer rateBiochimica et Biophysica Acta (BBA) - Bioenergetics, 1994
- Binding of carboxylate anions at the non-heme Fe(II) of PS II. I. Effects on the Q−AFe2+ and QAFe3+ EPR spectra and the redox properties of the ironBiochimica et Biophysica Acta (BBA) - Bioenergetics, 1994
- Participation of the g = 1.9 and g = 1.82 EPR forms of the semiquinone‐iron complex, QA−·Fe2+ of photosystem II in the generation of the Q and C thermoluminescence bands, respectivelyFEBS Letters, 1993
- Effects of root exudate sorgoleone on photosynthesisJournal of Chemical Ecology, 1993
- The iron‐quinone electron‐acceptor complex of photosystem IIPhysiologia Plantarum, 1991
- EPR measurements on the effects of bicarbonate and triazine resistance on the acceptor side of Photosystem IIFEBS Letters, 1984
- A highly resolved, oxygen‐evolving photosystem II preparation from spinach thylakoid membranesFEBS Letters, 1981