Lüttge Ulrich, Ball Erika
Fachbereich Biologie, Institut für Botanik der Technischen Hochschule Darmstadt, Schnittspahnstr. 3-5, D-6100, Darmstadt, Federal Republic of Germany.
Oecologia. 1977 Jan;31(1):85-94. doi: 10.1007/BF00348712.
In the CAM plant Kalanchoë daigremontiana, kept in an environmental rhythm of 12 h L: 12 h D in a growth chamber at 60% relative humidity and well watered in the root medium, decreasing water potentials and osmotic potentials of the leaves are correlated with malate accumulation in the dark. In the light increasing water and osmotic potentials (ψ and ψ ) are associated with decreasing malate levels. Transpiratory HO loss is high in dark and low in light.In continuous light, the CAM rhythm rapidly disappears in the form of a highly damped endogenous oscillation. Malate levels, and water and osmotic potentials of the leaves remain correlated as described above. However, transpiration is very high as malate levels decrease and water and osmotic potentials increase.It can concluded, that water relation parameters like total water potential (ψ ) and osmotic potential (ψ ) change in close correlation with changes of malic acid levels. As an important osmotically active solute in CAM plants, malic acid appears to affect water relations independently of and in addition to transpiration. The question remains open, whether turgor (ψ ) is involved in CAM regulation in intact plants in a similar way as it determines malate fluxes in leaf slices.
在景天酸代谢(CAM)植物落地生根中,将其置于生长箱内,保持12小时光照:12小时黑暗的环境节律,相对湿度为60%,根部培养基充分浇水,叶片水势和渗透势的降低与黑暗中苹果酸的积累相关。在光照下,水势和渗透势(ψ和ψ)的增加与苹果酸水平的降低相关。黑暗中蒸腾性水分损失高,光照下低。在连续光照下,景天酸代谢节律以高度衰减的内源振荡形式迅速消失。叶片的苹果酸水平、水势和渗透势如上述仍保持相关。然而,随着苹果酸水平降低以及水势和渗透势增加,蒸腾作用非常高。可以得出结论,像总水势(ψ)和渗透势(ψ)这样的水分关系参数与苹果酸水平的变化密切相关。作为景天酸代谢植物中一种重要的渗透活性溶质,苹果酸似乎独立于蒸腾作用并在其之外影响水分关系。完整植株中膨压(ψ)是否以与它决定叶片切片中苹果酸通量类似的方式参与景天酸代谢调节,这个问题仍然悬而未决。