期刊
PLANT SCIENCE
卷 251, 期 -, 页码 119-127出版社
ELSEVIER IRELAND LTD
DOI: 10.1016/j.plantsci.2016.03.012
关键词
Water-use efficiency; Mesophyll conductance; Carbon isotope discrimination; Drought; Nitrogen availability; Triticum aestivum
资金
- Grains Research and Development Corporation [US00056]
Increased mesophyll conductance (gm) has been suggested as a target for selection for high productivity and high water-use efficiency in crop plants, and genotypic variability in gin has been reported in several important crop species. However, effective selection requires an understanding of how gm varies with growth conditions, to ensure that the ranking of genotypes is consistent across environments. We assessed the genotypic variability in gm and other leaf gas exchange traits, as well as growth and biomass allocation for six wheat genotypes under different water and nitrogen availabilities. The wheat genotypes differed in their response of gm to growth conditions, resulting in genotypic differences in the mesophyll limitation to photosynthesis and a significant increase in the mesophyll limitation to photosynthesis under drought. In this experiment, leaf intrinsic water-use efficiency was more closely related to stomatal conductance than to mesophyll conductance, and stomatal limitation to photosynthesis increased more in some genotypes than in others in response to drought. Screening for g(m), should be carried out under a range of growth conditions. (C) 2016 Elsevier Ireland Ltd. All rights reserved.
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