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The chloroplast NADPH thioredoxin reductase C, NTRC, controls non-photochemical quenching of light energy and photosynthetic electron transport in Arabidopsis.
- Source :
-
Plant, cell & environment [Plant Cell Environ] 2016 Apr; Vol. 39 (4), pp. 804-22. Date of Electronic Publication: 2016 Jan 18. - Publication Year :
- 2016
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Abstract
- High irradiances may lead to photooxidative stress in plants, and non-photochemical quenching (NPQ) contributes to protection against excess excitation. One of the NPQ mechanisms, qE, involves thermal dissipation of the light energy captured. Importantly, plants need to tune down qE under light-limiting conditions for efficient utilization of the available quanta. Considering the possible redox control of responses to excess light implying enzymes, such as thioredoxins, we have studied the role of the NADPH thioredoxin reductase C (NTRC). Whereas Arabidopsis thaliana plants lacking NTRC tolerate high light intensities, these plants display drastically elevated qE, have larger trans-thylakoid ΔpH and have 10-fold higher zeaxanthin levels under low and medium light intensities, leading to extremely low linear electron transport rates. To test the impact of the high qE on plant growth, we generated an ntrc-psbs double-knockout mutant, which is devoid of qE. This double mutant grows faster than the ntrc mutant and has a higher chlorophyll content. The photosystem II activity is partially restored in the ntrc-psbs mutant, and linear electron transport rates under low and medium light intensities are twice as high as compared with plants lacking ntrc alone. These data uncover a new role for NTRC in the control of photosynthetic yield.<br /> (© 2015 John Wiley & Sons Ltd.)
- Subjects :
- Arabidopsis drug effects
Arabidopsis physiology
Arabidopsis Proteins genetics
Chlorophyll metabolism
Chloroplasts drug effects
Chloroplasts radiation effects
Dithiothreitol pharmacology
Electron Transport drug effects
Electron Transport radiation effects
Fluorescence
Gene Knockout Techniques
Mutation genetics
Nigericin pharmacology
Peroxiredoxins metabolism
Photosynthesis drug effects
Photosystem I Protein Complex metabolism
Photosystem II Protein Complex metabolism
Thioredoxin-Disulfide Reductase genetics
Xanthophylls metabolism
Arabidopsis enzymology
Arabidopsis radiation effects
Arabidopsis Proteins metabolism
Chloroplasts enzymology
Light
Photosynthesis radiation effects
Thioredoxin-Disulfide Reductase metabolism
Subjects
Details
- Language :
- English
- ISSN :
- 1365-3040
- Volume :
- 39
- Issue :
- 4
- Database :
- MEDLINE
- Journal :
- Plant, cell & environment
- Publication Type :
- Academic Journal
- Accession number :
- 26476233
- Full Text :
- https://doi.org/10.1111/pce.12652