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Tree Physiol ; 39(1): 135-142, 2019 01 01.
Article in English | MEDLINE | ID: mdl-30272223

ABSTRACT

The leaf area to sapwood area ratios of trees (Al:AS) can shift to maintain homeostatic gas exchange per unit leaf area in response to climate variability. We tested the hypothesis that trees alter their Al:AS ratios in response to long-term warming and reduced precipitation in order to maintain leaf-specific gas exchange rates under more stressful conditions. Whole-tree Al:AS was measured on mature piñon pine (Pinus edulis Engelm.) and one-seed juniper (Juniperus monosperma (Engelm.) Sarg.) trees after 5 years (2012-16) of chronic exposure to increased temperature (+4.8 °C), precipitation reduction (-45%), or both simultaneously. No difference was found in Al:As among treatments for either species. Associated with this lack of shift in Al:As were large changes in pre-dawn leaf water potential and stomatal conductance, consistent with theoretical expectations of interactions between leaf and whole-tree hydraulic supply. Our results suggest that a lack of whole-tree acclimation in Al:As results in the reductions in plant gas exchange and water status associated with long-term warming and reduced precipitation in semi-arid woodlands.


Subject(s)
Acclimatization , Global Warming , Juniperus/physiology , Pinus/physiology , Plant Leaves/physiology , Trees/physiology , Droughts , Juniperus/anatomy & histology , Pinus/anatomy & histology , Plant Leaves/anatomy & histology , Trees/anatomy & histology , Water
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