B117-08
Plant traits controlling tropical tree growth change in response to a drier climate

Wednesday, 16 December 2020: 05:58
Virtual
Lucy Rowland1, Rafael S. Oliveira2, Paulo Bittencourt2, Andre Giles2, Ingrid Coughlin3, Patricia Costa2, Tomas Ferreira Domingues4, Leandro Ferreira5, Steel Vasconcelos6, J Junior7, Alex Oliveira8, Antonio Carlos Lola da Costa8, Patrick Meir9 and Maurizio Mencuccini10, (1)University of Exeter, College of Life and Environmental Sciences, Exeter, EX4, United Kingdom, (2)UNICAMP State University of Campinas, Campinas, Brazil, (3)University of Sao Paulo, Sao Paulo, United States, (4)University of Sao Paulo, Ribeirão Preto, Brazil, (5)Museu Paraense Emilio Goeldi, Belem, Brazil, (6)EMBRAPA Brazilian Agricultural Research Corportation, Campinas, Brazil, (7)Federal University of Para, Pará, Brazil, (8)UFPA Federal University of Para, Pará, Brazil, (9)University of Edinburgh, Edinburgh, United Kingdom, (10)CREAF, Cerdanyola del Vallès, Spain
Abstract:
Plant traits are increasingly being used to improve prediction of plant function, including plant demography. However, the capability of plant traits to predict demographic rates remains uncertain, particularly in the context of trees experiencing a changing climate. Here we present data combining 17 plant traits associated with plant structure, metabolism and hydraulic status with measurements of long-term mean, maximum and relative growth rates for 176 trees from the world’s longest running tropical forest drought experiment. We demonstrate that plant traits can predict mean annual tree growth rates with moderate explanatory power. However, only combinations of traits associated more directly with plant functional processes, rather than more commonly employed traits like wood density or leaf mass per area, yield the power to predict growth. Critically we observe a shift from growth being controlled by traits related to carbon cycling (assimilation and respiration) in well-watered trees, to traits relating to plant hydraulic stress in drought-stressed trees. We also demonstrate that even with a very comprehensive set of plant traits and growth data on large numbers of tropical trees, considerable uncertainty remains in directly interpreting the mechanisms through which traits influence performance in tropical forests.