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干旱条件下光照强度和水汽压差的变化导致温室种植杨树和田间种植杨树的气孔动态明显不同。

Changes in irradiance and vapour pressure deficit under drought induce distinct stomatal dynamics between glasshouse and field-grown poplars.

作者信息

Durand Maxime, Brendel Oliver, Buré Cyril, Le Thiec Didier

机构信息

INRAE, Université de Lorraine, AgroParisTech, SILVA, F-54280, Champenoux, France.

出版信息

New Phytol. 2020 Jul;227(2):392-406. doi: 10.1111/nph.16525. Epub 2020 Apr 11.

Abstract

Recent research has shown that plant acclimation to diverse patterns of light intensity modifies the dynamics of their stomatal response. Therefore, whether plants are grown in controlled conditions or in the field may impact their stomatal dynamics. We analysed the stomatal dynamics of two Populus euramericana and two Populus nigra genotypes grown in the field under contrasting water availability. By comparing their stomatal dynamics with that of the same genotypes grown in a glasshouse, we were able to test whether differences between these growing conditions interacted with genotypic differences in affecting stomatal dynamics and responses to soil water deficit. We found that, despite higher stomatal density and smaller size, in the field stomatal dynamics were much slower than in the glasshouse. Overall, differences among genotypes and their response to soil water deficit were much less pronounced in the field compared with the glasshouse. These results indicate that stomatal dynamics are regulated by both genotype-specific and environmental factors. Moreover, having slower stomata may be advantageous under some conditions. While stomatal dynamics were linked with whole-plant transpiration per leaf area in both experiments, the contribution of stomatal morphology varies dependent on the environmental conditions.

摘要

最近的研究表明,植物对不同光照强度模式的适应会改变其气孔响应的动态过程。因此,植物是在可控条件下生长还是在田间生长,可能会影响其气孔动态。我们分析了两种欧美杨和两种黑杨基因型在田间不同水分可利用条件下的气孔动态。通过将它们的气孔动态与在温室中生长的相同基因型的气孔动态进行比较,我们能够测试这些生长条件之间的差异是否与基因型差异相互作用,从而影响气孔动态以及对土壤水分亏缺的响应。我们发现,尽管田间气孔密度更高且尺寸更小,但气孔动态比温室中的要慢得多。总体而言,与温室相比,田间基因型之间的差异及其对土壤水分亏缺的响应要小得多。这些结果表明,气孔动态受基因型特异性和环境因素的共同调节。此外,在某些条件下,气孔运动较慢可能具有优势。虽然在两个实验中气孔动态都与单位叶面积的整株蒸腾作用相关,但气孔形态的贡献因环境条件而异。

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