AbstractThe rapid conversion of the carotenoid violaxanthin to zeaxanthin via antheraxanthin (xanthophyll cycle) in potato leaves exposed at 23°C to a strong white light of 2000 μE·M−2·S−1 was associated with a slight inhibition of photosynthetic electron transport (as estimated from chlorophyll fluorescence measurements) and a low lipid peroxidation (as estimated from ethane measurements). When the xanthophyll cycle was blocked by dithiothreitol (3 mM) or low temperature (3°C), photoinhibition of electron transport was exacerbated and pronounced lipid peroxidation occurred concomitantly. Accumulation of zeaxanthin and antheraxanthin in potato leaves by a non-photoinhibitory light treatment at 23°C (900 μE·m−2·s−1 for 1 h) considerably redu...
The xanthophyll cycles of higher plants and algae represent an important photoprotection mechanism. ...
The xanthophyll cycle is a ubiquitous activity in higher plants. A major function of the cycle is to...
Moderately high temperature reduces photosynthetic capacities of leaves with large effects on thylak...
AbstractThe rapid conversion of the carotenoid violaxanthin to zeaxanthin via antheraxanthin (xantho...
During the last few years much interest has been focused on the photoprotective role of zeaxanthin. ...
The xanthophyll cycle has a major role in protecting plants from photo-oxidative stress, although th...
AbstractBarley leaves were exposed for several min to a white light of photon flux density 1000 μmol...
When light absorbed by plants exceeds the capacity of photosynthesis, the xanthophyll violaxanthin i...
AbstractThe violaxanthin cycle describes the reversible conversion of violaxanthin to zeaxanthin via...
There is widespread agreement that the xanthophyll cycle provides a major photoprotection system for...
Carotenes and their oxygenated derivatives, xanthophylls, are structural elements of the photosynthe...
In green plants, the xanthophyll carotenoid zeaxanthin is synthesized transiently under conditions o...
Plants require light for the process of photosynthesis, but excess of light absorption can cause pho...
AbstractBarley leaves were exposed for several min to a white light of photon flux density 1000 μmol...
Thesis (Ph. D.)--University of Hawaii at Manoa, 1992.Includes bibliographical references (leaves 160...
The xanthophyll cycles of higher plants and algae represent an important photoprotection mechanism. ...
The xanthophyll cycle is a ubiquitous activity in higher plants. A major function of the cycle is to...
Moderately high temperature reduces photosynthetic capacities of leaves with large effects on thylak...
AbstractThe rapid conversion of the carotenoid violaxanthin to zeaxanthin via antheraxanthin (xantho...
During the last few years much interest has been focused on the photoprotective role of zeaxanthin. ...
The xanthophyll cycle has a major role in protecting plants from photo-oxidative stress, although th...
AbstractBarley leaves were exposed for several min to a white light of photon flux density 1000 μmol...
When light absorbed by plants exceeds the capacity of photosynthesis, the xanthophyll violaxanthin i...
AbstractThe violaxanthin cycle describes the reversible conversion of violaxanthin to zeaxanthin via...
There is widespread agreement that the xanthophyll cycle provides a major photoprotection system for...
Carotenes and their oxygenated derivatives, xanthophylls, are structural elements of the photosynthe...
In green plants, the xanthophyll carotenoid zeaxanthin is synthesized transiently under conditions o...
Plants require light for the process of photosynthesis, but excess of light absorption can cause pho...
AbstractBarley leaves were exposed for several min to a white light of photon flux density 1000 μmol...
Thesis (Ph. D.)--University of Hawaii at Manoa, 1992.Includes bibliographical references (leaves 160...
The xanthophyll cycles of higher plants and algae represent an important photoprotection mechanism. ...
The xanthophyll cycle is a ubiquitous activity in higher plants. A major function of the cycle is to...
Moderately high temperature reduces photosynthetic capacities of leaves with large effects on thylak...