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Functional Plant Biology : FPB|July 22, 2020
Tissue stresses and resistance to water flow conspire to uncouple the water potential of the epidermis from that of the xylem in elongating plant stemsJohn B Passioura, John S BoyerJournal of Experimental Botany|November 18, 2006
Calcium pectate chemistry controls growth rate of Chara corallinaTimothy E Proseus, John S BoyerAnnals of Botany|May 26, 2004
Glucose localization in maize ovaries when kernel number decreases at low water potential and sucrose is fed to the stemsJohn E McLaughlin, John S BoyerPlant Signaling & Behavior|August 25, 2012
Pectate chemistry links cell expansion to wall deposition in Chara corallinaTimothy E Proseus, John S BoyerJournal of Experimental Botany|March 24, 2012
Calcium deprivation disrupts enlargement of Chara corallina cells: further evidence for the calcium pectate cycleTimothy E Proseus, John S BoyerAnnals of Botany|September 10, 2004
Sugar-responsive gene expression, invertase activity, and senescence in aborting maize ovaries at low water potentialsJohn E McLaughlin, John S BoyerAnnals of Botany|May 25, 2006
Periplasm turgor pressure controls wall deposition and assembly in growing Chara corallina cellsTimothy E Proseus, John S BoyerJournal of Experimental Botany|November 16, 2006
Functional reversion to identify controlling genes in multigenic responses: analysis of floral abortionJohn S Boyer, John E McLaughlinJournal of Experimental Botany|August 9, 2006
Identifying cytoplasmic input to the cell wall of growing Chara corallinaTimothy E Proseus, John S BoyerPageof 3