Department of Botany and Plant Sciences, University of California, Riverside, California 92521.
Plant Physiol. 1981 Oct;68(4):885-90. doi: 10.1104/pp.68.4.885.
Stomatal characteristics affecting gas exchange were compared in two sweet corn hybrids (var. Bonanza and Monarch Advance) which differ in foliar ozone sensitivity. No significant differences were observed in stomatal frequencies, guard cell lengths, or conductances to water vapor diffusion.When plant water status was compared, leaf-water potentials for the ozone-resistant cultivar, Bonanza, were lower. A comparison of the relationship between soil- and leaf-water potential indicated that the leaf-water potential of Bonanza was more sensitive to declines in soil-water potential. Additionally, a comparison of stomatal conductance to water vapor diffusion as soil moisture declined and following root detachment indicated that stomata of Bonanza were, likewise, more sensitive to increasing water stress. Data suggest that these differences are attributable to a greater shoot-to-root fresh weight ratio and higher resistance to water movement in the water-conducting tissues for Bonanza.Our observations suggest that root and water delivery system characteristics play a major contributory role in the determination of foliar ozone sensitivity in this species.
比较了两种甜玉米杂种(Bonanza 和 Monarch Advance 品系)的气孔特征对气体交换的影响,这两种杂种在叶片对臭氧的敏感性方面存在差异。气孔频率、保卫细胞长度或水蒸气扩散导度均无显著差异。当比较植株水分状况时,抗臭氧品种 Bonanza 的叶片水势较低。比较土壤水势和叶片水势之间的关系表明,Bonanza 的叶片水势对土壤水势下降更为敏感。此外,在土壤水分下降和根系脱离后比较水蒸气扩散的气孔导度表明,Bonanza 的气孔对增加的水分胁迫也更为敏感。数据表明,这些差异归因于 Bonanza 具有更大的茎到根的鲜重比以及在导水组织中对水分运动的更高阻力。我们的观察表明,根和水分输送系统的特征在该物种叶片对臭氧敏感性的确定中起着主要的作用。