Receptor kinase module targets PIN-dependent auxin transport during canalization.
basic_science · Level V
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- Record sourced from PubMed, PMID 33122378.
- Also identified by DOI 10.1126/science.aba3178 and PMC identifier 7116426.
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Abstract
Spontaneously arising channels that transport the phytohormone auxin provide positional cues for self-organizing aspects of plant development such as flexible vasculature regeneration or its patterning during leaf venation. The auxin canalization hypothesis proposes a feedback between auxin signaling and transport as the underlying mechanism, but molecular players await discovery. We identified part of the machinery that routes auxin transport. The auxin-regulated receptor CAMEL (Canalization-related Auxin-regulated Malectin-type RLK) together with CANAR (Canalization-related Receptor-like kinase) interact with and phosphorylate PIN auxin transporters. <i>camel</i> and <i>canar</i> mutants are impaired in PIN1 subcellular trafficking and auxin-mediated PIN polarization, which macroscopically manifests as defects in leaf venation and vasculature regeneration after wounding. The CAMEL-CANAR receptor complex is part of the auxin feedback that coordinates polarization of individual cells during auxin canalization.
Medical subject headings
- Arabidopsis
- Indoleacetic Acids
- Protein Kinases