West Adam G, Nel Jacques A, Bond William J, Midgley Jeremy J
Department of Biological Sciences, University of Cape Town, Rondebosch, 7700, South Africa.
New Phytol. 2016 Aug;211(3):828-38. doi: 10.1111/nph.13979. Epub 2016 May 6.
Recent work suggests that hydraulic mechanisms, rather than cambium necrosis, may account for rapid post-fire tree mortality. We experimentally tested for xylem cavitation, as a result of exposure to high-vapour-deficit (D) heat plumes, and permanent xylem deformation, as a result of thermal softening of lignin, in two tree species differing in fire tolerance. We measured percentage loss of conductance (PLC) in distal branches that had been exposed to high-D heat plumes or immersed in hot water baths (high temperature, but not D). Results were compared with predictions from a parameterized hydraulic model. Physical damage to the xylem was examined microscopically. Both species suffered c. 80% PLC when exposed to a 100°C plume. However, at 70°C, the fire-sensitive Kiggelaria africana suffered lower PLC (49%) than the fire-resistant Eucalytpus cladocalyx (80%). Model simulations suggested that differences in PLC between species were a result of greater hydraulic segmentation in E. cladocalyx. Kiggelaria africana suffered considerable PLC (59%), as a result of heat-induced xylem deformation, in the water bath treatments, but E. cladocalyx did not. We suggest that a suite of 'pyrohydraulic' traits, including hydraulic segmentation and heat sensitivity of the xylem, may help to explain why some tree species experience rapid post-fire mortality after low-intensity fires and others do not.
近期研究表明,导致树木在火灾后迅速死亡的原因可能是水力机制,而非形成层坏死。我们通过实验测试了两种耐火性不同的树种,因暴露于高水汽压差(D)的热羽流而导致的木质部空穴化,以及因木质素热软化而导致的木质部永久性变形。我们测量了暴露于高D热羽流或浸泡在热水浴(高温,但无D)中的远端树枝的导水率损失百分比(PLC)。将结果与参数化水力模型的预测结果进行了比较。通过显微镜检查木质部的物理损伤情况。两种树种在暴露于100°C羽流时,导水率损失均约为80%。然而,在70°C时,对火灾敏感的非洲陀螺果的导水率损失(49%)低于耐火的包萼桉(80%)。模型模拟表明,物种间导水率损失的差异是由于包萼桉具有更大的水力分隔。在水浴处理中,由于热诱导的木质部变形,非洲陀螺果的导水率损失相当大(59%),但包萼桉没有。我们认为,一系列“火 - 水力”特征,包括水力分隔和木质部的热敏感性,可能有助于解释为什么一些树种在低强度火灾后会迅速死亡,而另一些则不会。