Plant Cell & Environment · 2020 · 54 citations · 84 references
This study aimed to understand the response of photosynthesis and growth to e-CO<sub>2</sub> conditions (800 vs. 400 μmol mol<sup>-1</sup> ) of rice genotypes differing in source-sink relationships. A proxy trait called local C source-sink ratio was defined as the ratio of flag leaf area to the number of spikelets on the corresponding panicle, and five genotypes differing in this ratio were grown in a controlled greenhouse. Differential CO<sub>2</sub> resources were applied either during the 2 weeks following heading (EXP1) or during the whole growth cycle (EXP2). Under e-CO<sub>2</sub> , low source-sink ratio cultivars (LSS) had greater gains in photosynthesis, and they accumulated less nonstructural carbohydrate in the flag leaf than high source-sink ratio cultivars (HSS). In EXP2, grain yield and biomass gain was also greater in LSS probably caused by their strong sink. Photosynthetic capacity response to e-CO<sub>2</sub> was negatively correlated across genotypes with local C source-sink ratio, a trait highly conserved across environments. HSS were sink-limited under e-CO<sub>2</sub> , probably associated with low triose phosphate utilization (TPU) capacity. We suggest that the local C source-sink ratio is a potential target for selecting more CO<sub>2</sub> -responsive cultivars, pending validation for a broader genotypic spectrum and for field conditions.
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Uncertainty in simulating wheat yields under climate change
Senthold Asseng, Frank Ewert, Cynthia Rosenzweig et al. · Nature Climate Change · 2013 · 1.3K citations · Full text
Source-to-sink transport of sugar and regulation by environmental factors
Rémi Lemoine, Sylvain La Camera, Rossitza Atanassova et al. · Frontiers in Plant Science · 2013 · 1.2K citations · Full text
Engineering, Botany, Plant Pathology +17