Xiao Yan, Song Yu, Wu Fu-Chuan, Zhang Shu-Bin, Zhang Jiao-Lin
CAS Key Laboratory of Tropical Forest Ecology, Xishuangbanna Tropical Botanical Garden, Chinese Academy of Sciences, Mengla, Yunnan 666303, China.
University of Chinese Academy of Sciences, Beijing 100049, China.
AoB Plants. 2021 Apr 8;13(3):plab016. doi: 10.1093/aobpla/plab016. eCollection 2021 Jun.
Liana abundance and biomass are increasing in neotropical and Asian tropical seasonal forests over the past decades. Stem mechanical properties and hydraulic traits influence the growth and survival of plants, yet the differences in stem mechanical and hydraulic performance between congeneric lianas and trees remain poorly understood. Here, we measured 11 stem mechanical and hydraulic traits for 10 liana species and 10 tree species from grown in a tropical common garden. Our results showed that lianas possessed lower stem mechanical strength as indicated by both modulus of elasticity and modulus of rupture, and higher stem potential hydraulic conductivity than congeneric trees. Such divergence was mainly attributed to the differentiation in liana and tree life forms. Whether the phylogenetic effect was considered or not, mechanical strength was positively correlated with wood density, vessel conduit wall reinforcement and sapwood content across species. Results of principle component analysis showed that traits related to mechanical safety and hydraulic efficiency were loaded in the opposite direction, suggesting a trade-off between biomechanics and hydraulics. Our results provide evidence for obvious differentiation in mechanical demand and hydraulic efficiency between congeneric lianas and trees.
在过去几十年里,新热带地区和亚洲热带季节性森林中的藤本植物丰度和生物量一直在增加。茎干的机械性能和水力特性会影响植物的生长和存活,然而,同属藤本植物和树木之间茎干机械性能和水力性能的差异仍知之甚少。在此,我们测量了种植在热带共同花园中的10种藤本植物和10种树木的11种茎干机械和水力特性。我们的结果表明,藤本植物的弹性模量和断裂模量均表明其茎干机械强度较低,而茎干潜在水力传导率高于同属树木。这种差异主要归因于藤本植物和树木生活型的分化。无论是否考虑系统发育效应,跨物种的机械强度与木材密度、导管壁增强和边材含量均呈正相关。主成分分析结果表明,与机械安全性和水力效率相关的性状呈相反方向加载,表明生物力学和水力学之间存在权衡。我们的结果为同属藤本植物和树木在机械需求和水力效率方面存在明显差异提供了证据。