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The radish Ogura fertility restorer impedes translation elongation along its cognate CMS-causing mRNA.

Chuande WangLina LezhnevaNadège ArnalMartine QuadradoHakim Mireau
Published in: Proceedings of the National Academy of Sciences of the United States of America (2021)
The control of messenger RNA (mRNA) translation has been increasingly recognized as a key regulatory step for gene control, but clear examples in eukaryotes are still scarce. Nucleo-cytoplasmic male sterilities (CMS) represent ideal genetic models to dissect genetic interactions between the mitochondria and the nucleus in plants. This trait is determined by specific mitochondrial genes and is associated with a pollen sterility phenotype that can be suppressed by nuclear genes known as restorer-of-fertility (Rf). In this study, we focused on the Ogura CMS system in rapeseed and showed that reversion to male sterility by the PPR-B fertility restorer (also called Rfo) occurs through a specific translation inhibition of the mitochondria-encoded CMS-causing mRNA orf138 We also demonstrate that PPR-B binds within the coding sequence of orf138 and acts as a ribosome blocker to specifically impede translation elongation along the orf138 mRNA. Rfo is the first recognized fertility restorer shown to act this way. These observations will certainly facilitate the development of synthetic fertility restorers for CMS systems in which efficient natural Rfs are lacking.
Keyphrases
  • genome wide
  • childhood cancer
  • copy number
  • genome wide identification
  • dna methylation
  • binding protein
  • cell death
  • transcription factor
  • oxidative stress
  • bioinformatics analysis
  • heat shock
  • amino acid
  • heat stress