violaxanthin

Known as: (3S,3'S,5R,5'R, 6S,6'S)-5,6:5',6'-diepoxy-5,5',6,6'-tetrahydro-beta,beta- carotene-3,3'-diol, 5,6:5',6'-diepoxy-5,5',6,6'- tetrahydro-beta-carotene-3,3'-diol, zeaxanthin diepoxide 
 
National Institutes of Health

Topic mentions per year

Topic mentions per year

1960-2018
020406019602018

Papers overview

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Highly Cited
2005
Highly Cited
2005
The plant light-harvesting complex of photosystem II (LHC-II) collects and transmits solar energy for photosynthesis in… (More)
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Highly Cited
2002
Highly Cited
2002
As a response to high light, plants have evolved non-photochemical quenching (NPQ), mechanisms that lead to the dissipation of… (More)
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Highly Cited
1999
Highly Cited
1999
When light energy absorbed by plants becomes excessive relative to the capacity of photosynthesis, the xanthophyll violaxanthin… (More)
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Highly Cited
1999
Highly Cited
1999
According to general agreement, all photosynthetic organisms using xanthophyll cycling for photoprotection contain either the… (More)
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Highly Cited
1998
Highly Cited
1998
A conserved regulatory mechanism protects plants against the potentially damaging effects of excessive light. Nearly all… (More)
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Highly Cited
1997
Highly Cited
1997
The photosynthetic apparatus in plants is protected against oxidative damage by processes that dissipate excess absorbed light… (More)
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1996
1996
Violaxanthin de-epoxidase catalyzes the de-epoxidation of violaxanthin to antheraxanthin and zeaxanthin in the xanthophyll cycle… (More)
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1993
1993
The absorbance change at 505 nm was used to monitor the kinetics of violaxanthin deepoxidation in isolated pea (Pisum sativum… (More)
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Highly Cited
1990
Highly Cited
1990
The role of the xanthophyll cycle in regulating the energy flow to the PS II reaction centers and therefore in photoprotection… (More)
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Highly Cited
1990
Highly Cited
1990
As a part of our investigations to test the hypothesis that zeaxanthin formed by reversible de-epoxidation of violaxanthin serves… (More)
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