Activation of the root xylem proton pump by hydraulic signals from leaves under suppressed transpiration
Author:
Publisher
Springer Science and Business Media LLC
Subject
Plant Science
Link
https://link.springer.com/content/pdf/10.1007/s10265-022-01368-x.pdf
Reference30 articles.
1. Blum A (2011) Plant water relations, plant stress and plant production. Plant breeding for water-limited environments. Springer, Berlin, pp 28–32
2. Chazen O, Neumann PM (1994) Hydraulic signals from the roots and rapid cell wall hardening in growing maize (Zea mays L.) leaves are primary responses to polyethylene glycol-induced water deficits. Plant Physiol 104:1385–1392
3. Christmann A, Weller EW, Steudle E, Gril E (2007) A hydraulic signal in root-to-shoot signaling of water shortage. Plant J 52:167–174
4. Cochard H, Bodet C, Ameglio T, Cruiziat P (2000) Cryo-scanning electron microscopy observations of vessel content during transpiration in walnut petioles. Facts or Artifacts? Plant Physiol 124:1191–1202
5. De Boer AH, Katou K, Mizuno A, Kojima H, Okamoto H (1985) The role of electrogenic xylem pumps in K+ absorption from the xylem ofVigna unguiculata: the effects of auxin and fusicoccin. Plant Cell Environ 8:579–586
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