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Differentiation in stem and leaf traits among sympatric lianas scandent shrubs and trees in a subalpine cold temperate forest

机译:亚高山寒温带森林中同域藤本植物、稀少灌木和乔木之间茎叶性状的分化

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摘要

The scandent shrub plant form is a variant of liana that has upright and self-supporting stems when young but later becomes a climber. We aimed to explore the associations of stem and leaf traits among sympatric lianas, scandent shrubs and trees, and the effects of growth form and leaf habit on variation in stem or leaf traits. We measured 16 functional traits related to stem xylem anatomy, leaf morphology and nutrient stoichiometry in eight liana, eight scandent shrub and 21 tree species co-occurring in a subalpine cold temperate forest at an elevation of 2600–3200 m in Southwest China. Overall, lianas, scandent shrubs and trees were ordered along a fast–slow continuum of stem and leaf functional traits, with some traits overlapping. We found a consistent pattern of lianas > scandent shrubs > trees for hydraulically weighted vessel diameter, maximum vessel diameter and theoretical hydraulic conductivity. Vessel density and sapwood density showed a pattern of lianas = scandent shrubs < trees, and lianas < scandent shrubs = trees, respectively. Lianas had significantly higher specific leaf area and lower carbon concentration than co-occurring trees, with scandent shrubs showing intermediate values that overlapped with lianas and trees. The differentiation among lianas, scandent shrubs and trees was mainly explained by variation in stem traits. Additionally, deciduous lianas were positioned at the fast end of the trait spectrum, and evergreen trees at the slow end of the spectrum. Our results showed for the first time clear differentiation in stem and leaf traits among sympatric liana, scandent shrub and tree species in a subalpine cold temperate forest. This work will contribute to understanding the mechanisms responsible for variation in ecological strategies of different growth forms of woody plants.
机译:scandent 灌木植物形式是藤本植物的一种变体,年轻时具有直立和自支撑的茎,但后来成为攀缘植物。本研究旨在探讨同域藤本植物、稀疏灌木和乔木之间茎叶性状的关联,以及生长形式和叶片习性对茎或叶性状变化的影响。我们测量了在中国西南海拔 2600–3200 m 的亚高山寒温带森林中共存的 8 种藤本植物、8 种枯生灌木和 21 种树种中与茎木质部解剖学、叶片形态和养分化学计量相关的 16 种功能性状。总体而言,藤本植物、少灌木和乔木沿着茎和叶功能性状的快-慢连续体排序,其中一些性状重叠。我们发现藤本植物>小灌木>乔木在水力加权容器直径、最大容器直径和理论导水率方面具有一致的模式。容器密度和边材密度分别呈现藤本植物 = 枯草灌木 < 乔木和藤本植物 < 枯草灌木 = 乔木的模式。与共生乔木相比,藤本植物的比叶面积明显更高,碳浓度更低,稀疏灌木显示出与藤本植物和乔木重叠的中间值。藤本植物、少灌木和乔木之间的分化主要由茎性状的变异来解释。此外,落叶藤本植物位于性状谱的快端,而常绿乔木位于性状谱的慢端。我们的结果首次显示了亚高山寒温带森林中同域藤本植物、少栖灌木和乔木物种之间茎叶性状的明显分化。这项工作将有助于理解导致不同生长形式的木本植物生态策略变化的机制。

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