Guehl J M, Aussenac G
Station de Sylviculture et de Production, Institut National de la Recherche Agronomique, Champenoux, 54280 Seichamps, France.
Plant Physiol. 1987 Feb;83(2):316-22. doi: 10.1104/pp.83.2.316.
The responses of steady state CO(2) assimilation rate (A), transpiration rate (E), and stomatal conductance (g(s)) to changes in leaf-to-air vapor pressure difference (DeltaW) were examined on different dates in shoots from Abies alba trees growing outside. In Ecouves, a provenance representative of wet oceanic conditions in Northern France, both A and g(s) decreased when DeltaW was increased from 4.6 to 14.5 Pa KPa(-1). In Nebias, which represented the dry end of the natural range of A. alba in southern France, A and g(s) decreased only after reaching peak levels at 9.0 and 7.0 Pa KPa(-1), respectively. The representation of the data in assimilation rate (A) versus intercellular CO(2) partial pressure (C(i)) graphs allowed us to determine how stomata and mesophyll photosynthesis interacted when DeltaW was increased. Changes in A were primarily due to alterations in mesophyll photosynthesis. At high DeltaW, and especially in Ecouves when soil water deficit prevailed, A declined, while C(i) remained approximately constant, which may be interpreted as an adjustment of g(s) to changes in mesophyll photosynthesis. Such a stomatal control of gas exchange appeared as an alternative to the classical feedforward interpretation of E versus DeltaW responses with a peak rate of E. The gas exchange response to DeltaW was also characterized by considerable deviations from the optimization theory of IR Cowan and GD Farquhar (1977 Symp Soc Exp Biol 31: 471-505).
在不同日期,对室外生长的欧洲冷杉树嫩枝的稳态二氧化碳同化率(A)、蒸腾速率(E)和气孔导度(g(s))对叶-气蒸汽压差(ΔW)变化的响应进行了研究。在法国北部代表湿润海洋性条件的一个种源地埃库夫,当ΔW从4.6增加到14.5帕·千帕⁻¹时,A和g(s)均下降。在代表法国南部欧洲冷杉自然分布范围干旱一端的内比亚,A和g(s)仅在分别达到9.0和7.0帕·千帕⁻¹的峰值水平后才下降。在同化率(A)对细胞间二氧化碳分压(C(i))的图表中呈现数据,使我们能够确定当ΔW增加时气孔和叶肉光合作用是如何相互作用的。A的变化主要归因于叶肉光合作用的改变。在高ΔW时,尤其是在土壤水分亏缺普遍存在的埃库夫,A下降,而C(i)大致保持不变,这可解释为g(s)对叶肉光合作用变化的一种调节。这种对气体交换的气孔控制似乎是对具有E峰值速率的E对ΔW响应的经典前馈解释的一种替代。对ΔW的气体交换响应还表现出与IR·考恩和GD·法夸尔(1977年实验生物学学会专题讨论会31:471 - 505)的优化理论有相当大的偏差。