AI Article Synopsis

  • The study reveals that maize lateral root primordia 1 (lrp1) is a transcriptional activator regulated by the Aux/IAA protein RUM1, playing a role in auxin signaling related to root development.
  • LRP1 is expressed primarily in early root primordia and meristems, and is shown to be a nuclear transcription factor that activates downstream gene activity.
  • The repression of lrp1 transcription in rum1 mutants occurs due to the stable, mutated RUM1 proteins binding to the lrp1 promoter, preventing its expression and demonstrating RUM1's direct involvement in regulating lrp1 and maize root development.

Article Abstract

Only little is known about target genes of auxin signalling downstream of the Aux/IAA-ARF module. In the present study, it has been demonstrated that maize lateral root primordia 1 (lrp1) encodes a transcriptional activator that is directly regulated by the Aux/IAA protein ROOTLESS WITH UNDETECTABLE MERISTEM 1 (RUM1). Expression of lrp1 is confined to early root primordia and meristems and is auxin-inducible. Based on its primary protein structure, LRP1 is predicted to be a transcription factor. This notion is supported by exclusive LRP1 localization in the nucleus and its ability to activate downstream gene activity. Based on the observation that lrp1 transcription is completely repressed in the semi-dominant gain of function mutant rum1, it was demonstrated that the lrp1 promoter is a direct target of RUM1 proteins. Subsequently, promoter activation assays indicated that RUM1 represses the expression of a GFP reporter fused to the native promoter of lrp1. Constitutive repression of lrp1 in rum1 mutants is a consequence of the stability of mutated rum1 proteins which cannot be degraded by the proteasome and thus constitutively bind to the lrp1 promoter and repress transcription. Taken together, the repression of the transcriptional activator lrp1 by direct binding of RUM1 to its promoter, together with specific expression of lrp1 in root meristems, suggests a function in maize root development via the RUM1-dependent auxin signalling pathway.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4473986PMC
http://dx.doi.org/10.1093/jxb/erv187DOI Listing

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