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Polar auxin transport is implicated in vessel differentiation and spatial patterning during secondary growth in Populus.

Dan JohnsonPhoebe EckartNoah AlsamadisiHilary NobleCelia MartinRachel Spicer
Published in: American journal of botany (2018)
These results are consistent with a model of vessel development in which basipetal polar auxin transport through the xylem-side cambial derivatives is required for proper expansion and patterning of vessels and demonstrate that reduced auxin transport can produce stems with altered stem hydraulic properties.
Keyphrases
  • arabidopsis thaliana
  • ionic liquid