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Plant Physiology|October 1, 1996
Transduction of an Ethylene Signal Is Required for Cell Death and Lysis in the Root Cortex of Maize during Aerenchyma Formation Induced by HypoxiaC. J. He, P. W. Morgan, M. C. DrewPlant Physiology|September 1, 1989
Decreased Ethylene Biosynthesis, and Induction of Aerenchyma, by Nitrogen- or Phosphate-Starvation in Adventitious Roots of Zea mays LM C Drew, C J He, P W MorganBrain Research|January 24, 1983
Recovery of function after mesotelencephalic dopaminergic injury in senescenceJ F Marshall, M C Drew, K A NevePlant Physiology|November 1, 1992
Intact Leaves Exhibit a Climacteric-Like Rise in Ethylene Production before AbscissionP W Morgan, C J He, M C DrewTrends in Plant Science|March 9, 2000
Programmed cell death and aerenchyma formation in rootsM C Drew, C J He, P W MorganPlant Physiology|May 1, 1992
Structural Changes and Associated Reduction of Hydraulic Conductance in Roots of Sorghum bicolor L. following Exposure to Water DeficitR T Cruz, W R Jordan, M C DrewPlant Physiology|January 1, 1992
Enhanced Sensitivity to Ethylene in Nitrogen- or Phosphate-Starved Roots of Zea mays L. during Aerenchyma FormationC J He, P W Morgan, M C DrewPlant Physiology|July 1, 1994
Induction of Enzymes Associated with Lysigenous Aerenchyma Formation in Roots of Zea mays during Hypoxia or Nitrogen StarvationC. J. He, M. C. Drew, P. W. MorganThe New Phytologist|April 20, 2021
FOLIAR ENTRY AND INCORPORATION OF ATMOSPHERIC NITROGEN DIOXIDE INTO BARLEY PLANTS OF DIFFERENT NITROGEN STATUSA J Rowland, M C Drew, A R WellburnPlant Physiology|May 1, 1994
Hypoxic Induction of Anoxia Tolerance in Roots of Adh1 Null Zea mays LJ. R. Johnson, B. G. Cobb, M. C. DrewPageof 4