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Root apex transition zone: a signalling-response nexus in the root.

Trends in plant science, July 2010, Vol.15(7), pp.402-408 [Peer Reviewed Journal]

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Root apex transition zone as oscillatory zone

Frontiers in plant science, 2013, Vol.4, pp.354 [Peer Reviewed Journal]

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Sequential depolarization of root cortical and stelar cells induced by an acute salt shock - implications for Na(+) and K(+) transport into xylem vessels.

Plant, cell & environment, May 2011, Vol.34(5), pp.859-869 [Peer Reviewed Journal]

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Illumination of Arabidopsis roots induces immediate burst of ROS production.

Plant signaling & behavior, October 2011, Vol.6(10), pp.1460-1464 [Peer Reviewed Journal]

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Local root apex hypoxia induces NO-mediated hypoxic acclimation of the entire root

Plant & cell physiology, May 2012, Vol.53(5), pp.912-20 [Peer Reviewed Journal]

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The plant as a biomechatronic system.

Plant signaling & behavior, February 2010, Vol.5(2), pp.90-93 [Peer Reviewed Journal]

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Na+ extrusion from the cytosol and tissue-specific Na+ sequestration in roots confer differential salt stress tolerance between durum and bread wheat.

Journal of experimental botany, July 18, 2018, Vol.69(16), pp.3987-4001 [Peer Reviewed Journal]

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Cell-Type-Specific H+-ATPase Activity in Root Tissues Enables K+ Retention and Mediates Acclimation of Barley (Hordeum vulgare) to Salinity Stress.

Plant physiology, December 2016, Vol.172(4), pp.2445-2458 [Peer Reviewed Journal]

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Root based responses account for Psidium guajava survival at high nickel concentration.

Journal of plant physiology, February 1, 2015, Vol.174, pp.137-146 [Peer Reviewed Journal]

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The signal transducer NPH3 integrates the phototropin1 photosensor with PIN2-based polar auxin transport in Arabidopsis root phototropism.

The Plant cell, February 2012, Vol.24(2), pp.551-565 [Peer Reviewed Journal]

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by this Author/Contributor:

  1. Mancuso, S
  2. Mancuso, Stefano
  3. Azzarello, Elisa
  4. Azzarello, E.
  5. Pandolfi, Camilla

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