Seasonal patterns of CO2 and water vapor exchange of the tall and short height forms of Spartina alterniflora Loisel in a Georgia salt marsh
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[1] P. Gaastra,et al. Photosynthesis of crop plants as influenced by light, carbon dioxide, temperature, and stomatal diffusion resistance , 1959 .
[2] David A. Adams,et al. Factors Influencing Vascular Plant Zonation in North Carolina Salt Marshes , 1963 .
[3] A. W. Cooper,et al. SEED GERMINATION RESPONSE AND EVIDENCE FOR HEIGHT ECOPHENES IN SPARTINA ALTERNIFLORA FROM NORTH CAROLINA , 1971 .
[4] D. Rains. Salt Transport by Plants in Relation to Salinity , 1972 .
[5] C. C. Black,et al. Pathways of Carbon Metabolism Related to Net Carbon Dioxide Assimilation by Monocotyledons , 1973, The Quarterly Review of Biology.
[6] R. R. Johnson,et al. Effect of Water Stress on Photosynthesis and Transpiration of Flag Leaves and Spikes of Barley and Wheat 1 , 1974 .
[7] D. Graham,et al. The effect of light on the tricarboxylic Acid cycle in green leaves: I. Relative rates of the cycle in the dark and the light. , 1974, Plant physiology.
[8] C. E. Anderson. A REVIEW OF STRUCTURE IN SEVERAL NORTH CAROLINA SALT MARSH PLANTS , 1974 .
[9] R. Bidwell,et al. The extent of dark respiration in illuminated leaves and its control by ATP levels , 1974 .
[10] J. Wilson. Comparative response to nitrogen deficiency of a tropical and temperate grass in the interrelation between photosynthesis, growth, and the accumulation of non-structural carbohydrate , 1975 .
[11] J. L. Gallagher. EFFECT OF AN AMMONIUM NITRATE PULSE ON THE GROWTH AND ELEMENTAL COMPOSITION OF NATURAL STANDS OF SPARTINA ALTERNIFLORA AND JUNCUS ROEMERIANUS , 1975 .
[12] E. Dunn. Environmental Stresses and Inherent Limitations Affecting CO 2 Exchange in Evergreen Sclerophylls in Mediterranean Climates , 1975 .
[13] J. Gale. Water Balance and Gas Exchange of Plants under Saline Conditions , 1975 .
[14] W. Niering,et al. BIOCHEMICAL AND TRANSPLANTATION STUDIES OF THE GROWTH FORM OF SPARTINA ALTERNIFLORA ON CONNECTICUT SALT MARSHES , 1975 .
[15] A. J. Barr,et al. A user's guide to SAS 76 , 1976 .
[16] J. O’toole,et al. Mesophyll Resistance and Carboxylase Activity: A Comparison under Water Stress Conditions. , 1976, Plant physiology.
[17] E. Haines. Stable carbon isotope ratios in the biota, soils and tidal water of a Georgia salt marsh , 1976 .
[18] J. Boyer,et al. Chloroplast Response to Low Leaf Water Potentials: IV. Quantum Yield Is Reduced. , 1976, Plant physiology.
[19] S. Yoshida,et al. NITROGEN NUTRITION, LEAF RESISTANCE, AND LEAF PHOTOSYNTHETIC RATE OF THE RICE PLANT , 1976 .
[20] B. Haines,et al. Growth and Resource Allocation Responses of Spartina alterniflora Loisel. to Three Levels of NH4-N, Fe, and NaCl in Solution Culture , 1976, Botanical Gazette.
[21] J. L. Gallagher,et al. Underground Biomass Dynamics and Substrate Selective Properties of Atlantic Coastal Salt Marsh Plants. , 1977 .
[22] J. R. Giurgevich,et al. SEASONAL PATTERNS OF CO2 AND WATER VAPOR EXCHANGE OF JUNCUS ROEMERIANUS SCHEELE IN A GEORGIA SALT MARSH , 1978 .
[23] H. Griffiths,et al. Plant responses to water stress. , 2002, Annals of botany.
[24] B. Strain,et al. Effects of salinity and illumination on photosynthesis and water balance of Spartina alterniflora Loisel , 2004, Oecologia.
[25] J. Porter,et al. Chloroplast Response to Low Leaf Water Potentials , 2022 .