INRA, Université de Lorraine, AgroParisTech, SILVA, F-54280, Champenoux, France.
New Phytol. 2019 Jun;222(4):1789-1802. doi: 10.1111/nph.15710. Epub 2019 Feb 28.
Recent findings were able to show significant variability of stomatal dynamics between species, but not much is known about factors influencing stomatal dynamics and its consequences on biomass production, transpiration and water-use efficiency (WUE). We assessed the dynamics of stomatal conductance (g ) to a change of irradiance or vapour-pressure deficit (VPD) in two Populus euramericana and two Populus nigra genotypes grown under control and drought conditions. Our objectives were to determine the diversity of stomatal dynamics among poplar genotypes, and if soil water deficit can alter it. Physiological and morphological factors were investigated to find their potential links with stomatal morphology, WUE and its components at the whole-plant level. We found significant genotypic variability of g dynamics to both irradiance and VPD. Genotypes with faster stomatal dynamics were correlated with higher stomatal density and smaller stomata, and the implications of these correlations are discussed. Drought slowed g dynamics, depending on genotype and especially during stomatal closing. This finding is contrary to previous research on more drought-tolerant species. Independently of the treatment, faster stomatal dynamics were negatively correlated with daily whole-plant transpiration, presenting new evidence of a previously hypothesized contribution of stomatal dynamics to whole-plant water use.
最近的研究结果表明,物种间的气孔动态存在显著的可变性,但对于影响气孔动态及其对生物量生产、蒸腾和水分利用效率(WUE)的因素知之甚少。我们评估了在对照和干旱条件下生长的两个美洲黑杨和两个黑杨基因型对光照或蒸气压亏缺(VPD)变化的气孔导度(g)动态。我们的目的是确定杨树基因型之间气孔动态的多样性,以及土壤水分亏缺是否可以改变它。研究了生理和形态因素,以寻找它们与气孔形态、WUE 及其在整个植物水平上的组成部分之间的潜在联系。我们发现 g 动态对光照和 VPD 的基因型变异性显著。气孔动态较快的基因型与较高的气孔密度和较小的气孔相关,这些相关性的含义将在讨论中进行探讨。干旱减缓了 g 动态,具体取决于基因型,尤其是在气孔关闭期间。这一发现与对更耐旱物种的先前研究相反。无论处理与否,较快的气孔动态与每日整个植物蒸腾量呈负相关,为先前假设的气孔动态对整个植物耗水量的贡献提供了新的证据。