International audienceLeaf carbon isotope discrimination (CID ) has been suggested as an indirect tool for breeding for water‐use efficiency (WUE ) in various crops. This work focused on assessing phenotypic correlations between WUE and leaf CID and analysing genotypic variability in four sunflower genotypes grown in a greenhouse in pots with five different stable levels of soil water content (SWC ). We measured WUE at whole plant and leaf (intrinsic) level. At whole plant level, WUE was derived from the ratio of total dry aerial biomass (BM ) to cumulative water transpired (CWT ). At leaf level, intrinsic WUE was calculated as the ratio of light‐saturated CO 2 assimilation to stomatal conductance (A /gs) in younger expanded leaves. Signifi...
Carbon isotope discrimination (Δ‰) is negatively correlated with water use efficiency (WUE) in sever...
Carbon isotope discrimination (Δ‰) is negatively correlated with water use efficiency (WUE) in sever...
Water use efficiency (WUE), measured as the ratio of plant biomass to water consumption, is an essen...
International audienceLeaf carbon isotope discrimination (CID ) has been suggested as an indirect to...
To evaluate genotypic variability in carbon isotope discrimination or CID and water use efficiency o...
International audienceHigh water use efficiency (WUE) can be achieved by coordination of biomass acc...
International audienceHigh water use efficiency (WUE) can be achieved by coordination of biomass acc...
High water use efficiency (WUE) can be achieved by coordination of biomass accumulation and water co...
High water use efficiency (WUE) can be achieved by coordination of biomass accumulation and water co...
<div><p>High water use efficiency (WUE) can be achieved by coordination of biomass accumulation and ...
High water use efficiency (WUE) can be achieved by coordination of biomass accumulation and water co...
To evaluate genotypic variability in carbon isotope discrimination or CID and water use efficiency o...
To evaluate genotypic variability in carbon isotope discrimination or CID and water use efficiency o...
Plants accumulate isotopes of carbon at different rates because of discrimination against C-13 relat...
Plants incorporate isotopes of carbon into their tissue at different rates because of discrimination...
Carbon isotope discrimination (Δ‰) is negatively correlated with water use efficiency (WUE) in sever...
Carbon isotope discrimination (Δ‰) is negatively correlated with water use efficiency (WUE) in sever...
Water use efficiency (WUE), measured as the ratio of plant biomass to water consumption, is an essen...
International audienceLeaf carbon isotope discrimination (CID ) has been suggested as an indirect to...
To evaluate genotypic variability in carbon isotope discrimination or CID and water use efficiency o...
International audienceHigh water use efficiency (WUE) can be achieved by coordination of biomass acc...
International audienceHigh water use efficiency (WUE) can be achieved by coordination of biomass acc...
High water use efficiency (WUE) can be achieved by coordination of biomass accumulation and water co...
High water use efficiency (WUE) can be achieved by coordination of biomass accumulation and water co...
<div><p>High water use efficiency (WUE) can be achieved by coordination of biomass accumulation and ...
High water use efficiency (WUE) can be achieved by coordination of biomass accumulation and water co...
To evaluate genotypic variability in carbon isotope discrimination or CID and water use efficiency o...
To evaluate genotypic variability in carbon isotope discrimination or CID and water use efficiency o...
Plants accumulate isotopes of carbon at different rates because of discrimination against C-13 relat...
Plants incorporate isotopes of carbon into their tissue at different rates because of discrimination...
Carbon isotope discrimination (Δ‰) is negatively correlated with water use efficiency (WUE) in sever...
Carbon isotope discrimination (Δ‰) is negatively correlated with water use efficiency (WUE) in sever...
Water use efficiency (WUE), measured as the ratio of plant biomass to water consumption, is an essen...