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动态土壤水力阻力调节气孔。

Dynamic soil hydraulic resistance regulates stomata.

机构信息

Department of Botany and Plant Pathology, Purdue University, West Lafayette, IN, 47907, USA.

Irrigation and Crop Ecophysiology Group, Instituto de Recursos Naturales y Agrobiología de Sevilla (IRNAS, CSIC), Ave Reina Mercedes 10, 41012, Seville, Spain.

出版信息

New Phytol. 2024 Oct;244(1):147-158. doi: 10.1111/nph.20020. Epub 2024 Aug 2.

Abstract

The onset of stomatal closure reduces transpiration during drought. In seed plants, drought causes declines in plant water status which increases leaf endogenous abscisic acid (ABA) levels required for stomatal closure. There are multiple possible points of increased belowground resistance in the soil-plant atmospheric continuum that could decrease leaf water potential enough to trigger ABA production and the subsequent decreases in transpiration. We investigate the dynamic patterns of leaf ABA levels, plant hydraulic conductance and the point of failure in the soil-plant conductance in the highly embolism-resistant species Callitris tuberculata using continuous dendrometer measurements of leaf water potential during drought. We show that decreases in transpiration and ABA biosynthesis begin before any permanent decreases in predawn water potential, collapse in soil-plant hydraulic pathway and xylem embolism spread. We find that a dynamic but recoverable increases in hydraulic resistance in the soil in close proximity to the roots is the most likely driver of declines in midday leaf water potential needed for ABA biosynthesis and the onset of decreases in transpiration.

摘要

气孔关闭会减少干旱期间的蒸腾作用。在种子植物中,干旱会导致植物水分状况下降,从而增加关闭气孔所需的内源脱落酸 (ABA) 水平。在土壤-植物大气连续体中,有多个可能的地下阻力增加点,这些点可能会降低叶片水势,足以触发 ABA 的产生,从而导致蒸腾作用的随后下降。我们使用连续的树木测微计测量干旱期间叶片水势,研究了高度抗栓塞的物种 Callitris tuberculata 中叶片 ABA 水平、植物水力传导率和土壤-植物传导率失效点的动态模式。我们表明,蒸腾作用和 ABA 生物合成的减少先于任何永久性的黎明前水势下降、土壤-植物水力途径崩溃和木质部栓塞扩散发生。我们发现,靠近根系的土壤中水力阻力的动态但可恢复的增加是导致需要 ABA 生物合成和蒸腾作用减少的中午叶片水势下降的最可能驱动力。

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