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Transcriptional and post-transcriptional regulation of RNAi-related gene expression during plant-virus interactions.

Qian GongYunjing WangZhenhui JinYiguo HongYule Liu
Published in: Stress biology (2022)
As sessile organisms, plants encounter diverse invasions from pathogens including viruses. To survive and thrive, plants have evolved multilayered defense mechanisms to combat virus infection. RNAi, also known as RNA silencing, is an across-kingdom innate immunity and gene regulatory machinery. Molecular framework and crucial roles of RNAi in antiviral defense have been well-characterized. However, it is largely unknown that how RNAi is transcriptionally regulated to initiate, maintain and enhance cellular silencing under normal or stress conditions. Recently, insights into the transcriptional and post-transcriptional regulation of RNAi-related genes in different physiological processes have been emerging. In this review, we integrate these new findings to provide updated views on how plants modulate RNAi machinery at the (post-) transcriptional level to respond to virus infection.
Keyphrases
  • gene expression
  • transcription factor
  • dna methylation
  • gram negative
  • heat shock
  • antimicrobial resistance
  • innate immune