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Updated: Feb 7, 2026

Relating Stomatal Conductance to Leaf Functional Traits
Published on: October 12, 2015
Possible link between photosynthesis and leaf modulus of elasticity among vascular plants: a new player in leaf
Miquel Nadal1, Jaume Flexas1, Javier Gulías1
1Research Group on Plant Biology under Mediterranean Conditions Departament de Biologia, Universitat de les Illes Balears, INAGEA, Carretera de Valldemossa Km 7.5, 07122, Palma de Mallorca, Illes Balears, Spain.
Abstract:
A compromise between carbon assimilation and structure investment at the leaf level is broadly accepted, yet the relationship between net assimilation per area (An ) and leaf mass per area has been elusive. We propose bulk modulus of elasticity (ε) as a suitable parameter to reflect both leaf structure and function, and an inverse relationship between ε and An and mesophyll conductance (gm ) is postulated. Using data for An , gm and ε from previous studies and new measurements on a set of 20 species covering all major growth forms, a negative relationship between An or gm and ε was observed. High ε was also related to low leaf capacitance and higher diffusive limitations to photosynthesis. In conclusion, ε emerges as a key trait linked with photosynthetic capacity across vascular plants, and its relationship with gm suggests the existence of a common mechanistic basis, probably involving a key role of cell walls.
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