College of Life and Environmental Sciences, University of Exeter, Exeter, EX4 4QE, UK.
Department of Ecology and Environmental Science, Umeå University, 90736, Umeå, Sweden.
New Phytol. 2022 Sep;235(6):2183-2198. doi: 10.1111/nph.18280. Epub 2022 Jun 26.
Fine-scale topographic-edaphic gradients are common in tropical forests and drive species spatial turnover and marked changes in forest structure and function. We evaluate how hydraulic traits of tropical tree species relate to vertical and horizontal spatial niche specialization along such a gradient. Along a topographic-edaphic gradient with uniform climate in Borneo, we measured six key hydraulic traits in 156 individuals of differing heights in 13 species of Dipterocarpaceae. We investigated how hydraulic traits relate to habitat, tree height and their interaction on this gradient. Embolism resistance increased in trees on sandy soils but did not vary with tree height. By contrast, water transport capacity increased on sandier soils and with increasing tree height. Habitat and height only interact for hydraulic efficiency, with slope for height changing from positive to negative from the clay-rich to the sandier soil. Habitat type influenced trait-trait relationships for all traits except wood density. Our data reveal that variation in the hydraulic traits of dipterocarps is driven by a combination of topographic-edaphic conditions, tree height and taxonomic identity. Our work indicates that hydraulic traits play a significant role in shaping forest structure across topographic-edaphic and vertical gradients and may contribute to niche specialization among dipterocarp species.
在热带森林中,精细的地形-土壤梯度很常见,它驱动着物种的空间周转率和森林结构与功能的显著变化。我们评估了热带树种的水力特征如何与沿此梯度的垂直和水平空间生态位特化相关。在婆罗洲一个具有均匀气候的地形-土壤梯度上,我们在 13 种龙脑香科的 156 株不同高度的个体中测量了六个关键的水力特征。我们研究了水力特征如何与该梯度上的生境、树高及其相互作用有关。栓塞抗性在沙质土壤上的树木中增加,但不随树高而变化。相比之下,在沙质土壤上和树高增加时,水分运输能力增加。生境和高度仅对水力效率产生相互作用,而高度的斜率则从粘土丰富的土壤到沙质土壤从正变为负。除了木材密度外,生境类型还影响所有性状的性状-性状关系。我们的数据表明,龙脑香科树种水力特征的变化是由地形-土壤条件、树高和分类身份的组合驱动的。我们的工作表明,水力特征在塑造沿地形-土壤和垂直梯度的森林结构方面发挥着重要作用,并可能有助于龙脑香科物种的生态位特化。