High root temperature blocks both linear and cyclic electron transport in the dark during chilling of the leaves of rice seedlings.
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Summary
The results suggest that electron transport was blocked between Q(A) and Q(B) in the dark 10°C/25°C leaves, but without irreversible damage to the components of this system.
- Type
- article
- Published
- 2011-09-01
- Cited by
- 58
- References
- 39
- Access
- Open access
- OpenAlex
- https://openalex.org/W21803813
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:18226932
Keywords
Biosolids, Sewage treatment, Environmental science, Wastewater, Waste management
References
- Resolving chlorophyll a fluorescence images of photosynthetic efficiency into photochemical and non-photochemical components – calculation of qP and Fv-/Fm-; without measuring Fo-;
- Effects of Leaf Chilling on Thylakoid Functions, Measured at Room Temperature, in Cucumis sativus L. and Oryza sativa L.
- Impacts of chilling temperatures on photosynthesis in warm-climate plants.
- Electrochromism: a useful probe to study algal photosynthesis
- Photosystem I electron transport and phosphorylation supported by electron donation to the plastoquinone region.
- Formation by NO of nitrosyl adducts of redox components of the Photosystem II reaction center. II. Evidence that HCO−3/CO2 binds to the acceptor-side non-heme iron
- Non-photochemical quenching. A response to excess light energy.
- Formation by NO of nitrosyl adducts of redox components of the Photosystem II reaction center. I. NO binds to the acceptor-side non-heme iron
- The site of photoinhibition in leaves of Cucumis sativus L. at low temperatures is photosystem I, not photosystem II
- Photoinhibition of photosystem II under environmental stress.
- Spectrophotometric characteristics of chlorophylls a and b and their phenophytins in ethanol
- The PsbQ Protein Is Required in Arabidopsis for Photosystem II Assembly/Stability and Photoautotrophy under Low Light Conditions*
- In Vivo Target Sites of Nitric Oxide in Photosynthetic Electron Transport as Studied by Chlorophyll Fluorescence in Pea Leaves1[OA]
- The violaxanthin cycle protects plants from photooxidative damage by more than one mechanism.
- Using chlorophyll fluorescence to assess the fraction of absorbed light allocated to thermal dissipa
- A Simple Alternative Approach to Assessing the Fate of Absorbed Light Energy Using Chlorophyll Fluorescence
- Probing subtle coordination changes in the iron-quinone complex of photosystem II during charge separation, by the use of NO.
- The chilling injury induced by high root temperature in the leaves of rice seedlings.
- Alternative electron flows (water-water cycle and cyclic electron flow around PSI) in photosynthesis: molecular mechanisms and physiological functions.
- Cyclic electron transport around photosystem I: genetic approaches.
Cited by
- The Effects of Cold Stress on Photosynthesis in Hibiscus Plants
- Cold-night responses in grapevine inflorescences.
- Involvement of chlororespiration in chilling stress in the tropical species Spathiphyllum wallisii.
- Differential response of photosystem II photochemistry in young and mature leaves of Arabidopsis thaliana to the onset of drought stress
- Simultaneous analysis of photosystem responses of Microcystis aeruginoga under chromium stress.
- High root temperature affects the tolerance to high light intensity in Spathiphyllum plants.
- Effects of cadmium on the activities of photosystems of Chlorella pyrenoidosa and the protective role of cyclic electron flow.
- Distinct regulation in inflorescence carbohydrate metabolism according to grapevine cultivars during floral development.
- Toxic effects of erythromycin on photosystem I and II in Microcystis aeruginosa
- Can the Chlorophyll-a Fluorescence be Useful in Identifying Acclimated Young Plants from Two Populations of Cecropia Pachystachya Trec. (Urticaceae), Under Elevated CO2 Concentrations?
- Cu2+ Inhibits Photosystem II Activities but Enhances Photosystem I Quantum Yield of Microcystis aeruginosa
- Toxic effects of mercury on PSI and PSII activities, membrane potential and transthylakoid proton gradient in Microsorium pteropus.
- Multiparameter-Based Bioassay of 2-(4-Chlorophenyl)-4-(4-methoxyphenyl) Quinazoline, a Newly-Synthesized Quinazoline Derivative, Toward Microcystis aeruginosa HAB5100 (Cyanobacteria)
- PSI Showed Higher Tolerance to Sb(V) than PSII Due to Stimulation of Cyclic Electron Flow Around PSI
- Accumulation of nitrate and nitrite in chilled leaves of rice seedlings is induced by high root temperature.
- Cyclic electron flow provides acclimatory plasticity for the photosynthetic machinery under various environmental conditions and developmental stages
- Spring Ephemerals Adapt to Extremely High Light Conditions via an Unusual Stabilization of Photosystem II
- Chlorophyll a fluorescence as a tool to monitor physiological status of plants under abiotic stress conditions
- Root-Zone Warming Differently Benefits Mature and Newly Unfolded Leaves of Cucumis sativus L. Seedlings under Sub-Optimal Temperature Stress
- Effects of the Herbicide Imazethapyr on Photosynthesis in PGR5- and NDH-Deficient Arabidopsis thaliana at the Biochemical, Transcriptomic, and Proteomic Levels.
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