4.7 Article

Decreased glutathione reductase2 leads to early leaf senescence in Arabidopsis

Journal

JOURNAL OF INTEGRATIVE PLANT BIOLOGY
Volume 58, Issue 1, Pages 29-47

Publisher

WILEY
DOI: 10.1111/jipb.12371

Keywords

Arabidopsis thaliana; ascorbate-glutathione cycle; glutathione reductase2; hydrogen peroxide; leaf senescence

Funding

  1. National Natural Science Foundation of China [30970218]
  2. State Key Basic Research and Development Plan of China [2015CB150105]

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Glutathione reductase (GR) catalyzes the reduction of glutathione disulfide (GSSG) to reduced glutathione (GSH) and participates in the ascorbate-glutathione cycle, which scavenges H2O2. Here, we report that chloroplastic/mitochondrial GR2 is an important regulator of leaf senescence. Seed development of the homozygous gr2 knockout mutant was blocked at the globular stage. Therefore, to investigate the function of GR2 in leaf senescence, we generated transgenic Arabidopsis plants with decreased GR2 using RNAi. The GR2 RNAi plants displayed early onset of age-dependent and dark- and H2O2-induced leaf senescence, which was accompanied by the induction of the senescence-related marker genes SAG12 and SAG13. Furthermore, transcriptome analysis revealed that genes related to leaf senescence, oxidative stress, and phytohormone pathways were upregulated directly before senescence in RNAi plants. In addition, H2O2 accumulated to higher levels in RNAi plants than in wild-type plants and the levels of H2O2 peaked in RNAi plants directly before the early onset of leaf senescence. RNAi plants showed a greater decrease in GSH/GSSG levels than wild-type plants during leaf development. Our results suggest that GR2 plays an important role in leaf senescence by modulating H2O2 and glutathione signaling in Arabidopsis.

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