Andrianasolo Fety Nambinina, Casadebaig Pierre, Langlade Nicolas, Debaeke Philippe, Maury Pierre
Terres Inovia, Centre INRA de Toulouse, CS 52627, F-31326 Castanet-Tolosan Cedex, France.
INRA, UMR AGIR, CS 52627, F-31326 Castanet-Tolosan Cedex, France.
Funct Plant Biol. 2016 Aug;43(8):797-805. doi: 10.1071/FP15235.
Water deficit influences leaf transpiration rate and photosynthetic activity. The genotype-dependent response of the latter has not been assessed in sunflower (Helianthus annuus L.), particularly during the reproductive period when grain filling and lipogenesis depend greatly on photosynthate availability. To evaluate genotypic responses to water deficit before and after flowering, two greenhouse experiments were performed. Four genotypes-two inbred lines (PSC8, XRQ) and two cultivars (Inedi, Melody)-were subjected to progressive water deficit. Non-linear regression was used to calculate the soil water deficit threshold (FTSWt) at which processes (transpiration and photosynthetic activity) were affected by water deficit. In the vegetative growth stage, photosynthetic activity was affected at a lower mean value of FTSWt (0.39) than transpiration (0.55). However, in the reproductive stage, photosynthetic activity was more sensitive to soil water deficit (FTSWt=0.45). We found a significant (P=0.02) effect of plant growth stage on the difference between photosynthesis and transpiration rate thresholds and, a significant (P=0.03) effect of leaf age on transpiration. Such results will improve phenotyping methods and provide paths for integrating genotypic variability into crop models.
水分亏缺会影响叶片蒸腾速率和光合活性。向日葵(Helianthus annuus L.)中后者的基因型依赖性响应尚未得到评估,特别是在生殖期,此时籽粒灌浆和脂肪生成在很大程度上依赖于光合产物的供应。为了评估开花前后对水分亏缺的基因型响应,进行了两项温室试验。对四个基因型——两个自交系(PSC8、XRQ)和两个品种(Inedi、Melody)——进行了渐进性水分亏缺处理。使用非线性回归来计算土壤水分亏缺阈值(FTSWt),在该阈值下,过程(蒸腾和光合活性)会受到水分亏缺的影响。在营养生长阶段,光合活性受到影响时的FTSWt平均值(0.39)低于蒸腾作用(0.55)。然而,在生殖阶段,光合活性对土壤水分亏缺更为敏感(FTSWt = 0.45)。我们发现植物生长阶段对光合作用和蒸腾速率阈值之间的差异有显著(P = 0.02)影响,并且叶龄对蒸腾作用有显著(P = 0.03)影响。这些结果将改进表型分析方法,并为将基因型变异性整合到作物模型中提供途径。