Jensen C R, Henson I E
Dryland Crops and Soils Research Unit, Laboratory for Rural Research, CSIRO, Private Bag, P.O., 6014, Wembley, W.A., Australia.
Oecologia. 1990 Jan;82(1):114-121. doi: 10.1007/BF00318542.
Lupins (Lupinus angustifolius and L. cosentinii) growing in 321 containers in a glasshouse were exposed to drought by withholding water. Leaf water potential (Ψ), and leaf osmotic potential (Ψ) were measured daily as soil water became depleted. Leaf water relations were further assessed by a pressure-volume technique and by measuring Ψ and relative water content of leaves after rehydration. Analysis by pressure-volume or cryoscopic techniques showed that leaf osmotic potential at saturation (Ψ) decreased from -0.6 MPa in well watered to -0.9 MPa in severely droughted leaves, and leaf water potential at zero turgor (Ψ) decreased from about -0.7 to -1.1 MPa in well watered and droughted plants, respectively. Relative water content at zero turgor (RWC) was high (88%) and tended to be decreased by drought. The ratio of turgid leaf weight to dry weight was not influenced by drought and was high at about 8.0. The bulk elastic modulus (ɛ) was approximately halved by drought when related to leaf turgor potential (Ψ) and probably mediated turgor maintenance during drought. The latter was found to be negatively influenced by rate of drought. Supplying the plants with high levels of K salts did not promote adjustment or turgor maintenance.
种植在温室中321个容器里的羽扇豆(窄叶羽扇豆和科森蒂尼羽扇豆)通过停止浇水而遭受干旱胁迫。随着土壤水分的消耗,每天测量叶片水势(Ψ)和叶片渗透势(Ψ)。通过压力-容积技术以及在复水后测量叶片的Ψ和相对含水量,进一步评估叶片水分关系。通过压力-容积或冰点降低技术分析表明,饱和时的叶片渗透势(Ψ)从充分浇水时的-0.6 MPa降至严重干旱叶片时的-0.9 MPa,零膨压时的叶片水势(Ψ)在充分浇水和干旱的植株中分别从约-0.7 MPa降至-1.1 MPa。零膨压时的相对含水量(RWC)较高(88%),且趋于因干旱而降低。膨压叶片重量与干重的比值不受干旱影响,约为8.0,处于较高水平。当与叶片膨压势(Ψ)相关时,体积弹性模量(ɛ)因干旱大约减半,可能在干旱期间介导膨压维持。发现后者受到干旱速率的负面影响。向植株供应高浓度钾盐并不能促进调节或膨压维持。