Spicer Rachel, Gartner Barbara L
Biological Laboratories 3119, Organismic and Evolutionary Biology, Harvard University, Cambridge, MA 02138 USA.
Richardson Hall 118, Department of Wood Science and Engineering, Oregon State University, Corvallis, OR 97331, USA.
New Phytol. 2002 Jun;154(3):633-640. doi: 10.1046/j.1469-8137.2002.00421.x.
• Compression wood has been shown to reduce stem permeability, but it is not known to what extent it affects leaf-level processes. Here, we report whole-plant hydraulic properties of Douglas-fir (Pseudotsuga menziesii) seedlings induced to form varying amounts of compression wood. • Seedlings were grown under three bending treatments to assess the impact of compression wood on hydraulic properties, including stomatal conductance (g ), above-ground shoot conductance (K ), and both specific and leaf area-specific conductivity (k and k , respectively). • K was significantly lower (50% reduction) in severely bent seedlings than in controls. Similarly, both k and k of the main axis were significantly reduced (by 52% and 46%, respectively) in severely bent seedlings relative to controls. Seedlings in the moderate bending treatments had k and k that were intermediate between controls and severe bending. • Despite clear differences in above-ground shoot hydraulic properties, severely bent seedlings maintained the same water potentials as controls and had similar diurnal patterns of g . This suggests that when the entire soil-plant-atmosphere continuum is considered, even a severe reduction in stem k caused by compression wood has little impact on leaf-level processes.
• 已证明受压木会降低茎的渗透性,但尚不清楚其对叶片水平过程的影响程度。在此,我们报告了诱导形成不同量受压木的花旗松(Pseudotsuga menziesii)幼苗的整株水力特性。
• 对幼苗进行了三种弯曲处理,以评估受压木对水力特性的影响,包括气孔导度(g)、地上部茎干导度(K)以及比导率和叶面积比导率(分别为k和k)。
• 严重弯曲的幼苗的K显著低于对照(降低了50%)。同样,相对于对照,严重弯曲的幼苗主轴的k和k均显著降低(分别降低了52%和46%)。中度弯曲处理的幼苗的k和k介于对照和严重弯曲之间。
• 尽管地上部茎干水力特性存在明显差异,但严重弯曲的幼苗保持与对照相同的水势,且g的日变化模式相似。这表明,当考虑整个土壤-植物-大气连续体时,即使受压木导致茎干k严重降低,对叶片水平过程的影响也很小。