Daley Michael J, Phillips Nathan G, Pettijohn Justin C, Hadley Julian
Science and Mathematics Department, Lasell College, Newton, MA 02466, USA.
Tree Physiol. 2008 Sep;28(9):1341-8. doi: 10.1093/treephys/28.9.1341.
Eastern hemlock (Tsuga canadensis (L). Carr.) is a late-successional species found across the northeastern United States of America that is currently threatened by the exotic pest, hemlock woolly adelgid (Adelges tsugae Annand). Because whole-tree physiological characteristics may scale to influence ecosystem processes, we considered whole-tree hydraulic controls in eastern hemlock and the replacement species black birch (Betula lenta L.). Through a series of misting perturbations, whole-tree resistances (R), capacitances (C) and time constants (tau) were determined from time series sap flux data in eastern hemlock and black birch. Black birch trees responded more rapidly to environmental perturbations than eastern hemlock. Utilizing the step function after applied treatments, whole-tree tau ranged between 9.4 and 24.8 min in eastern hemlock trees compared with 5.9 to 10.5 min in black birch. Species was not a significant predictor of R or C when controlling for tree size. In both species, R decreased with sapwood area and C increased. Our tau results indicate that the loss and replacement of eastern hemlock by black birch will decrease the lag between transpiration and absorption of water from the soil and potentially alter the diurnal pattern of carbon and water uptake.
东部铁杉(Tsuga canadensis (L). Carr.)是一种在美国东北部广泛分布的演替后期物种,目前正受到外来害虫铁杉球蚜(Adelges tsugae Annand)的威胁。由于整株树的生理特征可能会扩展以影响生态系统过程,我们研究了东部铁杉以及替代物种黑桦(Betula lenta L.)的整株树水力控制。通过一系列喷雾扰动,根据东部铁杉和黑桦的时间序列液流通量数据确定了整株树的阻力(R)、电容(C)和时间常数(tau)。黑桦树对环境扰动的响应比东部铁杉更快。在施加处理后利用阶跃函数,东部铁杉树的整株树tau在9.4至24.8分钟之间,而黑桦树的tau在5.9至10.5分钟之间。在控制树木大小的情况下,物种不是R或C的显著预测因子。在这两个物种中,R随边材面积减小而C增大。我们的tau结果表明,黑桦取代东部铁杉将减少蒸腾作用与从土壤中吸收水分之间的滞后时间,并可能改变碳和水分吸收的日模式。