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Natural genetic variation in GLK1-mediated photosynthetic acclimation in response to light. | LitMetric

Natural genetic variation in GLK1-mediated photosynthetic acclimation in response to light.

BMC Plant Biol

Plant Cell and Molecular Biology, Institute of Biology, Humboldt-Universität zu Berlin, Philippstr. 13, 10115, Berlin, Germany.

Published: February 2024

AI Article Synopsis

  • GOLDEN-like (GLK) transcription factors play a key role in chloroplast development and photosynthetic adaptation in Arabidopsis, influenced by signals from chloroplasts.
  • Research shows natural variation in GLK1 regulatory networks among different Arabidopsis accessions, tied to their geographical origins and linked to genetic differences across various biological pathways.
  • Accessions with higher GLK1 activity, typically from regions with fluctuating solar radiation, are better at adjusting to bright light and exhibit less photoinhibition.

Article Abstract

Background: GOLDEN-like (GLK) transcription factors are central regulators of chloroplast biogenesis in Arabidopsis and other species. Findings from Arabidopsis show that these factors also contribute to photosynthetic acclimation, e.g. to variation in light intensity, and are controlled by retrograde signals emanating from the chloroplast. However, the natural variation of GLK1-centered gene-regulatory networks in Arabidopsis is largely unexplored.

Results: By evaluating the activities of GLK1 target genes and GLK1 itself in vegetative leaves of natural Arabidopsis accessions grown under standard conditions, we uncovered variation in the activity of GLK1 centered regulatory networks. This is linked with the ecogeographic origin of the accessions, and can be associated with a complex genetic variation across loci acting in different functional pathways, including photosynthesis, ROS and brassinosteroid pathways. Our results identify candidate upstream regulators that contribute to a basal level of GLK1 activity in rosette leaves, which can then impact the capacity to acclimate to different environmental conditions. Indeed, accessions with higher GLK1 activity, arising from habitats with a high monthly variation in solar radiation levels, may show lower levels of photoinhibition at higher light intensities.

Conclusions: Our results provide evidence for natural variation in GLK1 regulatory activities in vegetative leaves. This variation is associated with ecogeographic origin and can contribute to acclimation to high light conditions.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10840168PMC
http://dx.doi.org/10.1186/s12870-024-04741-1DOI Listing

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