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Plant Cell & Environment
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Long‐term adaptation of Arabidopsis thaliana to far‐red light

Authors: Hu, Chen; Nawrocki, Wojciech Jacek; Croce, Roberta;

Long‐term adaptation of Arabidopsis thaliana to far‐red light

Abstract

AbstractVascular plants use carotenoids and chlorophylls a and b to harvest solar energy in the visible region (400–700 nm), but they make little use of the far‐red (FR) light. Instead, some cyanobacteria have developed the ability to use FR light by redesigning their photosynthetic apparatus and synthesizing red‐shifted chlorophylls. Implementing this strategy in plants is considered promising to increase crop yield. To prepare for this, a characterization of the FR light‐induced changes in plants is necessary. Here, we explore the behaviour of Arabidopsis thaliana upon exposure to FR light by following the changes in morphology, physiology and composition of the photosynthetic complexes. We found that after FR‐light treatment, the ratio between the photosystems and their antenna size drastically readjust in an attempt to rebalance the energy input to support electron transfer. Despite a large increase in PSBS accumulation, these adjustments result in strong photoinhibition when FR‐adapted plants are exposed to light again. Crucially, FR light‐induced changes in the photosynthetic membrane are not the result of senescence, but are a response to the excitation imbalance between the photosystems. This indicates that an increase in the FR absorption by the photosystems should be sufficient for boosting photosynthetic activity in FR light.

Countries
Netherlands, France
Keywords

Chlorophyll, senescence, Light, Arabidopsis, Light-Harvesting Protein Complexes, far-red light acclimation, Thylakoids, Fluorescence, light harvesting, photosystems, [SDV.BV] Life Sciences [q-bio]/Vegetal Biology, SDG 7 - Affordable and Clean Energy, Photosynthesis, photosynthesis, Photosystem I Protein Complex, far-red light acclimation fluorescence light harvesting photosynthesis photosystems senescence, Photosystem II Protein Complex, Original Articles, Adaptation, Physiological, Plant Leaves, fluorescence

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    popularity
    This indicator reflects the "current" impact/attention (the "hype") of an article in the research community at large, based on the underlying citation network.
    Top 10%
    influence
    This indicator reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically).
    Top 10%
    impulse
    This indicator reflects the initial momentum of an article directly after its publication, based on the underlying citation network.
    Top 10%
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selected citations
These citations are derived from selected sources.
This is an alternative to the "Influence" indicator, which also reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically).
BIP!Citations provided by BIP!
popularity
This indicator reflects the "current" impact/attention (the "hype") of an article in the research community at large, based on the underlying citation network.
BIP!Popularity provided by BIP!
influence
This indicator reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically).
BIP!Influence provided by BIP!
impulse
This indicator reflects the initial momentum of an article directly after its publication, based on the underlying citation network.
BIP!Impulse provided by BIP!
30
Top 10%
Top 10%
Top 10%
Green
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