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气孔通过与植物水力学相协调来调节小麦对蒸汽压差的蒸腾响应。

Stomata coordinate with plant hydraulics to regulate transpiration response to vapour pressure deficit in wheat.

机构信息

The UWA Institute of Agriculture, The University of Western Australia, Perth, WA 6001, Australia; and Department of Export Agriculture, Faculty of Animal Science and Export Agriculture, Uva Wellassa University, Badulla 90000, Sri Lanka; and Corresponding author. Email:

The UWA Institute of Agriculture, The University of Western Australia, Perth, WA 6001, Australia.

出版信息

Funct Plant Biol. 2021 Aug;48(9):839-850. doi: 10.1071/FP20392.

Abstract

Genotypic variation in transpiration (Tr) response to vapour pressure deficit (VPD) has been studied in many crop species. There is debate over whether shoots or roots drive these responses. We investigated how stomata coordinate with plant hydraulics to mediate Tr response to VPD and influence leaf water status in wheat (Triticum aestivum L.). We measured Tr and stomatal conductance (gs) responses to VPD in well-watered, water-stressed and de-rooted shoots of eight wheat genotypes. Tr response to VPD was related to stomatal sensitivity to VPD and proportional to gs at low VPD, except in the water-stressed treatment, which induced strong stomatal closure at all VPD levels. Moreover, gs response to VPD was driven by adaxial stomata. A simple linear Tr response to VPD was associated with unresponsive gs to VPD. In contrast, segmented linear Tr to VPD response was mostly a function of gs with the breakpoint depending on the capacity to meet transpirational demand and set by the shoots. However, the magnitude of Tr response to VPD was influenced by roots, soil water content and stomatal sensitivity to VPD. These findings, along with a theoretical model suggest that stomata coordinate with plant hydraulics to regulate Tr response to VPD in wheat.

摘要

蒸腾(Tr)对水汽压亏缺(VPD)响应的基因型变异已在许多作物物种中进行了研究。关于是叶片还是根系驱动这些响应存在争议。我们研究了气孔如何与植物水力学协调,以调节小麦(Triticum aestivum L.)对 VPD 的 Tr 响应,并影响叶片水分状况。我们测量了 8 个小麦基因型在充分供水、水分胁迫和去根叶片中的 Tr 和气孔导度(gs)对 VPD 的响应。除水分胁迫处理外,Tr 对 VPD 的响应与气孔对 VPD 的敏感性有关,并且与低 VPD 下的 gs 成正比,水分胁迫处理在所有 VPD 水平下诱导强烈的气孔关闭。此外,gs 对 VPD 的响应受叶片上气孔的驱动。与 gs 对 VPD 无响应相关的是简单线性 Tr 对 VPD 的响应。相比之下,分段线性 Tr 对 VPD 的响应主要是 gs 的函数,其断点取决于满足蒸腾需求的能力,并由叶片设定。然而,Tr 对 VPD 的响应幅度受根系、土壤水分含量和气孔对 VPD 的敏感性的影响。这些发现,以及一个理论模型表明,气孔与植物水力学协调,以调节小麦对 VPD 的 Tr 响应。

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