Abstract
Three maize genotypes were grown in con¬trolled environment chambers with ambient (38 Pa) or elevated (70 Pa) carbon dioxide and water stress treatments were initiated 17 days after sowing. Shoot dry weight of the drought tolerant hybrid in both CO2 treatments was 44 to 73% less than that of the intermediate and sen¬sitive hybrids when seedlings were well watered. Decreased shoot and root dry weights of the tolerant maize hybrid due to drought were about one-half that of the other two hybrids. Genotypic differences were observed in decreases of soil water content, leaf water potential, net photosynthesis and stomatal con¬ductance in response to drought. Eleven of 19 amino acids measured in this study increased, methionine was unchanged and alanine and aspartate decreased in response to drought in the ambient CO2 treatment. Increased amino acid levels under elevated CO2 were observed at the end of the experiment. Significant genotyp¬ic differences were detected for amino acid responses to drought. Effects of drought on all three genotypes were mitigated by CO2 enrich¬ment. Decreased shoot growth likely improved the stress tolerance of a highly drought resist¬ant maize hybrid by reducing moisture loss, improving soil moisture content and increasing leaf water potential.
Author supplied keywords
Cite
CITATION STYLE
Yang, J., Sicher, R. C., Kim, M. S., & Reddy, V. R. (2014). Carbon dioxide enrichment restrains the impact of drought on three maize hybrids differing in water stress tolerance in water stressed environments. International Journal of Plant Biology, 5(1), 38–44. https://doi.org/10.4081/pb.2014.5535
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.