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June 22, 2017SHILAP Revista de lepidopterología382 citationsOpen Access

Photosynthesis-dependent H2O2 transfer from chloroplasts to nuclei provides a high-light signalling mechanism

MEMauro EspositoPLPierre Philippe LaissueGYGabriel Yvon‐Durocher

Key Points

  • Determine whether photosynthetic hydrogen peroxide produced in chloroplasts is transferred directly to the nucleus to regulate gene expression during high-light acclimation.
  • Monitored hydrogen peroxide levels in photosynthetic Nicotiana benthamiana epidermal cells across the chloroplast stroma, cytosol, and nucleus using the fluorescent sensor HyPer2 under high-light exposure.
  • Assessed nuclear hydrogen peroxide accumulation and light-responsive gene expression following stromal or cytosolic ascorbate peroxidase overexpression and chemical inhibition of photosynthesis with DCMU.
  • High-light exposure triggered elevated hydrogen peroxide levels across the chloroplast stroma, cytosol, and nucleus.
  • Overexpression of stromal ascorbate peroxidase or DCMU treatment attenuated nuclear hydrogen peroxide accumulation and light-responsive gene expression, whereas cytosolic ascorbate peroxidase overexpression had minimal effect.
  • Direct transfer of hydrogen peroxide to the nucleus occurs via a distinct subpopulation of perinuclear chloroplasts, bypassing the cytosol to regulate nuclear transcription.

Abstract

Abstract Chloroplasts communicate information by signalling to nuclei during acclimation to fluctuating light. Several potential operating signals originating from chloroplasts have been proposed, but none have been shown to move to nuclei to modulate gene expression. One proposed signal is hydrogen peroxide (H 2 O 2 ) produced by chloroplasts in a light-dependent manner. Using HyPer2, a genetically encoded fluorescent H 2 O 2 sensor, we show that in photosynthetic Nicotiana benthamiana epidermal cells, exposure to high light increases H 2 O 2 production in chloroplast stroma, cytosol and nuclei. Critically, over-expression of stromal ascorbate peroxidase (H 2 O 2 scavenger) or treatment with DCMU (photosynthesis inhibitor) attenuates nuclear H 2 O 2 accumulation and high light-responsive gene expression. Cytosolic ascorbate peroxidase over-expression has little effect on nuclear H 2 O 2 accumulation and high light-responsive gene expression. This is because the H 2 O 2 derives from a sub-population of chloroplasts closely associated with nuclei. Therefore, direct H 2 O 2 transfer from chloroplasts to nuclei, avoiding the cytosol, enables photosynthetic control over gene expression.

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Cite This Study

Esposito et al. (2017) studied this question.

synapsesocial.com/papers/69db81044e9a02dbaa6854eahttps://doi.org/10.1038/s41467-017-00074-w
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