Forest Ecology and Forest Management Group Resource Ecology Group, Centre for Ecosystem Studies, Wageningen University (WU), P.O. Box 47, 6700 AA Wageningen, the Netherlands.
Plant Cell Environ. 2011 Jan;34(1):137-48. doi: 10.1111/j.1365-3040.2010.02231.x. Epub 2010 Oct 15.
Cavitation resistance is a critical determinant of drought tolerance in tropical tree species, but little is known of its association with life history strategies, particularly for seasonal dry forests, a system critically driven by variation in water availability. We analysed vulnerability curves for saplings of 13 tropical dry forest tree species differing in life history and leaf phenology. We examined how vulnerability to cavitation (P₅₀) related to dry season leaf water potentials and stem and leaf traits. P₅₀-values ranged from -0.8 to -6.2 MPa, with pioneers on average 38% more vulnerable to cavitation than shade-tolerants. Vulnerability to cavitation was related to structural traits conferring tissue stress vulnerability, being negatively correlated with wood density, and surprisingly maximum vessel length. Vulnerability to cavitation was negatively related to the Huber-value and leaf dry matter content, and positively with leaf size. It was not related to SLA. We found a strong trade-off between cavitation resistance and hydraulic efficiency. Most species in the field were operating at leaf water potentials well above their P₅₀, but pioneers and deciduous species had smaller hydraulic safety margins than shade-tolerants and evergreens. A trade-off between hydraulic safety and efficiency underlies ecological differentiation across these tropical dry forest tree species.
抗空化性是热带树种耐旱性的一个关键决定因素,但人们对其与生活史策略的关系知之甚少,特别是对于季节性干旱森林,这一系统受到水分供应变化的严重驱动。我们分析了 13 种具有不同生活史和叶片物候的热带干旱森林树种幼苗的脆弱性曲线。我们研究了对空化的脆弱性(P₅₀)如何与旱季叶片水势以及茎和叶特征相关。P₅₀ 值范围从-0.8 到-6.2 MPa,与耐荫树种相比,先驱者的平均空化脆弱性高 38%。对空化的脆弱性与赋予组织应力脆弱性的结构特征有关,与木材密度呈负相关,与最大导管长度呈负相关。对空化的脆弱性与 Huber 值和叶片干物质含量呈负相关,与叶片大小呈正相关。它与 SLA 无关。我们发现抗空化性和水力效率之间存在很强的权衡。大多数田间物种的叶片水势远高于其 P₅₀,但先驱者和落叶物种的水力安全裕度比耐荫树种和常绿树种小。在这些热带干旱森林树种中,水力安全和效率之间的权衡是生态分化的基础。