Department of Crop Sciences, University of Illinois at Urbana-Champaign, Urbana, IL, USA.
Institute for Genomic Biology, University of Illinois at Urbana-Champaign, Urbana, IL, USA.
J Exp Bot. 2021 Jun 22;72(13):5024-5037. doi: 10.1093/jxb/erab166.
Mechanistic modeling indicates that stomatal conductance could be reduced to improve water use efficiency (WUE) in C4 crops. Genetic variation in stomatal density and canopy temperature was evaluated in the model C4 genus, Setaria. Recombinant inbred lines (RILs) derived from a Setaria italica×Setaria viridis cross were grown with ample or limiting water supply under field conditions in Illinois. An optical profilometer was used to rapidly assess stomatal patterning, and canopy temperature was measured using infrared imaging. Stomatal density and canopy temperature were positively correlated but both were negatively correlated with total above-ground biomass. These trait relationships suggest a likely interaction between stomatal density and the other drivers of water use such as stomatal size and aperture. Multiple quantitative trait loci (QTL) were identified for stomatal density and canopy temperature, including co-located QTL on chromosomes 5 and 9. The direction of the additive effect of these QTL on chromosome 5 and 9 was in accordance with the positive phenotypic relationship between these two traits. This, along with prior experiments, suggests a common genetic architecture between stomatal patterning and WUE in controlled environments with canopy transpiration and productivity in the field, while highlighting the potential of Setaria as a model to understand the physiology and genetics of WUE in C4 species.
机械模型表明,降低气孔导度可以提高 C4 作物的水分利用效率(WUE)。在模型 C4 属狗尾草中评估了气孔密度和冠层温度的遗传变异。从 Setaria italica×Setaria viridis 杂交中衍生的重组自交系(RIL)在伊利诺伊州的田间条件下,充足或限量供水下生长。使用光学轮廓仪快速评估气孔模式,使用红外成像测量冠层温度。气孔密度和冠层温度呈正相关,但均与地上总生物量呈负相关。这些性状关系表明,气孔密度与其他水分利用驱动因素(如气孔大小和孔径)之间可能存在相互作用。鉴定到多个气孔密度和冠层温度的数量性状位点(QTL),包括 5 号和 9 号染色体上的共定位 QTL。这些 QTL 在 5 号和 9 号染色体上的加性效应方向与这两个性状之间的正表型关系一致。这一点以及之前的实验表明,在受控环境中,气孔模式与 WUE 之间存在共同的遗传结构,与田间的冠层蒸腾和生产力有关,同时突出了 Setaria 作为理解 C4 物种 WUE 生理学和遗传学的模型的潜力。