Divergences in stem and leaf traits between lianas and coexisting trees in a subtropical montane forest

Author:

Bai Xiao-Long12ORCID,Yang Da1ORCID,Sher Jan1ORCID,Zhang Yun-Bing12ORCID,Zhang Ke-Yan12ORCID,Liu Qi3ORCID,Wen Han-Dong14ORCID,Zhang Jiao-Lin1ORCID,Slot Martijn5ORCID

Affiliation:

1. CAS Key Laboratory of Tropical Forest Ecology, Xishuangbanna Tropical Botanical Garden, Chinese Academy of Sciences , Menglun, Mengla 666303 , China

2. University of Chinese Academy of Sciences , Beijing 100049 , China

3. Forest Ecology and Forest Management Group, Wageningen University and Research Centre , 6700 AA Wageningen , The Netherlands

4. Yuanjiang Savanna Ecosystem Research Station, Xishuangbanna Tropical Botanical Garden, Chinese Academy of Sciences , Yuanjiang 653300 , China

5. Smithsonian Tropical Research Institute , Apartado 0843-03092, Balboa, Ancón , Republic of Panama

Abstract

Abstract Patterns in functional trait variation associated with the ecological strategies of lianas and trees in subtropical montane forests remain poorly understood due to lack of trait comparisons. Here, we filled this gap by investigating trait divergence between lianas and trees with different leaf habits for 13 traits of 33 species (7 deciduous and 4 evergreen liana species, and 10 deciduous and 12 evergreen tree species) in a subtropical montane forest in southwestern China. We found that lianas had significantly larger stem xylem vessel diameter, higher theoretical hydraulic conductivity, specific leaf area, leaf nitrogen, and phosphorus concentrations, but lower leaf dry-matter content and N/P ratio than sympatric trees, indicating that lianas employ an acquisitive ecological strategy, with a more efficient stem hydraulic system and more productive leaves. In contrast to trees, lianas exhibited a larger variation in vessel diameter, with a few wide and many narrow vessels in the xylem, indicating a greater vessel dimorphism. Growth form explained 48.7% of the total trait variation, while leaf habit only explained 3.8% of trait variation, without significant interaction between growth form and leaf habit. In addition, significant stem–leaf trait relationships were only found in trees, but not in lianas, indicating decoupling of stem hydraulic function and leaf traits in subtropical lianas. These results suggest that subtropical montane lianas and trees differ strikingly in stem and leaf functional traits. Further studies are warranted to strengthen our understanding of the mechanisms underlying the strong divergence in ecological strategies between lianas and trees in subtropical forest ecosystems.

Funder

National Natural Science Foundation of China

CAS “Light of West China” program

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Ecology,Ecology, Evolution, Behavior and Systematics

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