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Planta|November 23, 2013
Electron microscopy of gas space (aerenchyma) formation in adventitious roots of Zea mays L. subjected to oxygen shortageR Campbell, M C DrewPlant Physiology|October 1, 1971
Effect of metabolic inhibitors and temperature on uptake and translocation of ca and k by intact bean plantsM C Drew, O BiddulphPlant Physiology|September 1, 1985
Oxygen-Dependent Exclusion of Sodium Ions from Shoots by Roots of Zea mays (cv Pioneer 3906) in Relation to Salinity DamageM C Drew, A LäuchliPlanta|November 22, 2013
Uptake and long-distance transport of phosphate, potassium and chloride in relation to internal ion concentrations in barley: evidence of non-allosteric regulationM C Drew, L R SakerPlant Physiology|May 1, 1992
Stomatal and Nonstomatal Components to Inhibition of Photosynthesis in Leaves of Capsicum annuum during Progressive Exposure to NaCl SalinityP C Bethke, M C DrewPlant Physiology|November 1, 1989
Hypoxic Induction of Anoxia Tolerance in Root Tips of Zea maysJ Johnson, B G Cobb, M C DrewPlanta|December 7, 2013
Ethylene-promoted adventitious rooting and development of cortical air spaces (aerenchyma) in roots may be adaptive responses to flooding in Zea mays LM C Drew, M B Jackson, S GiffardPlant Physiology|October 1, 1992
Hormonal and Environmental Regulation of the Carrot lea-Class Gene Dc3J Vivekananda, M C Drew, T L ThomasPlant Physiology|January 1, 1988
Metabolic Acclimation to Anoxia Induced by Low (2-4 kPa Partial Pressure) Oxygen Pretreatment (Hypoxia) in Root Tips of Zea maysP H Saglio, M C Drew, A PradetPlanta|November 19, 2013
Larger adenylate energy charge and ATP/ADP ratios in aerenchymatous roots of Zea mays in anaerobic media as a consequence of improved internal oxygen transportM C Drew, P H Saglio, A PradetPageof 4