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气孔可塑性维持辐射松针叶的水势稳态。

Stomatal Plasticity Maintains Water Potential Homeostasis in Pinus radiata Needles.

作者信息

Sharma Kritika, Bourbia Ibrahim, Freeman Jules, Jones Rebecca, Brodribb Timothy

机构信息

Biological Sciences, School of Natural Sciences, University of Tasmania, Hobart, Tasmania, Australia.

出版信息

Plant Cell Environ. 2025 May;48(5):3225-3235. doi: 10.1111/pce.15338. Epub 2024 Dec 24.

Abstract

Vapour pressure deficit (VPD) is a primary determinant of stomatal behaviour and water balance in plants. With increasing global temperature, the accompanying rise in VPD is likely to have a significant impact on the performance of plant species in the future. However, the plasticity of stomatal response to VPD remains largely unexplored. This study examines the plasticity of whole plant stomatal conductance (g) response to VPD in Pinus radiata plants grown under two temperatures and a water-deficient treatment over a period of 3 months. The soil-stem water potential gradient (ΔΨ), g and soil-stem hydraulic conductance (K) were evaluated. The different treatment groups showed significant differences in maximum g relating to differences in K however, g dynamic response to VPD was very similar in all treatments such that ΔΨ was conserved once VPD increased above an average threshold of 0.64 kPa. The ability to robustly quantify water potential regulation in Pinus presents opportunities to explore variation in this globally important tree genus as well as providing a new approach to characterize the regulation of gas exchange in response to VPD.

摘要

蒸汽压亏缺(VPD)是植物气孔行为和水分平衡的主要决定因素。随着全球气温升高,随之而来的VPD升高可能会对未来植物物种的表现产生重大影响。然而,气孔对VPD反应的可塑性在很大程度上仍未得到探索。本研究考察了在两种温度和缺水处理条件下生长3个月的辐射松植株的全株气孔导度(g)对VPD反应的可塑性。评估了土壤-茎干水势梯度(ΔΨ)、g和土壤-茎干水力导度(K)。不同处理组在最大g方面因K的差异而表现出显著差异,然而,所有处理中g对VPD的动态反应非常相似,以至于一旦VPD升高超过0.64 kPa的平均阈值,ΔΨ就会保持不变。对辐射松中稳健量化水势调节的能力为探索这个全球重要树种属的变异提供了机会,同时也为表征气体交换对VPD反应的调节提供了一种新方法。

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