AI Article Synopsis

  • Rice endosperm is crucial for seed germination and grain yield, yet the role of RNA editing during its development is not well understood.
  • The study investigates the RNA editome in rice endosperm, revealing that most editing occurs in mitochondrial genes and affects protein structure through C-to-U changes.
  • The researchers classify mitochondrial genes based on editing patterns and identify candidate proteins involved in the RNA editing process, enhancing our understanding of endosperm development.

Article Abstract

Rice (Oryza sativa L.) endosperm is essential to provide nutrients for seed germination and determine grain yield. RNA editing, a post-transcriptional modification essential for plant development, unfortunately, is not fully characterized during rice endosperm development. Here, we perform systematic analyses to characterize RNA editome during rice endosperm development. We find that most editing sites are C-to-U CDS-recoding in mitochondria, leading to increased hydrophobic amino acids and changed structures of mitochondrial proteins. Comparative analysis of RNA editome reveals that CDS-recoding sites present higher editing frequencies with lower variabilities and their resultant recoded amino acids tend to exhibit stronger evolutionary conservation across many land plants. Furthermore, we classify mitochondrial genes into three groups, presenting distinct patterns in terms of CDS-recoding events. Besides, we conduct genome-wide screening to detect pentatricopeptide repeat (PPR) proteins and construct PPR-RNA binding profiles, yielding candidate PPR editing factors related to rice endosperm development. Taken together, our findings provide valuable insights for deciphering fundamental mechanisms of rice endosperm development underlying RNA editing machinery.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11471866PMC
http://dx.doi.org/10.1038/s42003-024-07032-5DOI Listing

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