Department of Agronomy, University of Missouri, 55211, Columbia, MO, USA.
Planta. 1989 Nov;179(4):466-74. doi: 10.1007/BF00397586.
Conditions of soil drying and plant growth that lead to non-hydraulic inhibition of leaf elongation and stomatal conductance in maize (Zea mays L.) were investigated using plants grown with their root systems divided between two containers. The soil in one container was allowed to dry while the other container was kept well-watered. Soil drying resulted in a maximum 35% inhibition of leaf elongation rate which occurred during the light hours, with no measurable decline in leaf water potential (ψw). Leaf area was 15% less than in control plants after 18 d of soil drying. The inhibition of elongation was observed only when the soil ψw declined to below that of the leaves and, thus, the drying soil no longer contributed to transpiration. However, midday root ψw in the dry container (-0.29 MPa) remained much higher than that of the surrounding soil (-1.0 MPa) after 15 d of drying, indicating that the roots in drying soil were rehydrated in the dark.To prove that the inhibition of leaf elongation was not caused by undetectable changes in leaf water status as a result of loss of half the watergathering capacity, one-half of the root system of control plants was excised. This treatment had no effect on leaf elongation or stomatal conductance. The inhibition of leaf elongation was also not explained by reductions in nutrient supply.Soil drying had no effect on stomatal conductance despite variations in the rate or extent of soild drying, light, humidity or nutrition. The results indicate that non-hydraulic inhibition of leaf elongation may act to conserve water as the soil dries before the occurrence of shoot water deficits.
研究了导致玉米(Zea mays L.)叶片伸长和气孔导度非水力抑制的土壤干燥和植物生长条件,方法是将根系分为两部分种植在两个容器中。一个容器中的土壤允许干燥,而另一个容器保持充分浇水。土壤干燥导致叶片伸长率最大抑制 35%,叶片水势(ψw)没有可测量的下降。与对照植株相比,在土壤干燥 18 天后,叶片面积减少了 15%。只有当土壤 ψw 下降到低于叶片 ψw 时,才会观察到伸长的抑制,因此,干燥的土壤不再有助于蒸腾。然而,在干燥 15 天后,干燥容器中中午的根 ψw(-0.29 MPa)仍远高于周围土壤(-1.0 MPa),表明干燥土壤中的根在黑暗中重新水化。为了证明叶片伸长的抑制不是由于失去一半的集水能力而导致叶片水分状况无法检测到的变化引起的,切除了对照植株一半的根系。这种处理对叶片伸长或气孔导度没有影响。叶片伸长的抑制也不能用养分供应的减少来解释。尽管土壤干燥的速度或程度、光照、湿度或营养存在差异,但土壤干燥对气孔导度没有影响。结果表明,在土壤变干导致出现 shoot water 亏缺之前,非水力抑制叶片伸长可能有助于节水。