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PMID: 26149972 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Experimental drought and heat can delay phenological development and reduce foliar and shoot growth in semiarid trees.

Global change biology ·Vol. 21 ·No. 11 ·2015-11-00 ·Pages 4210-20

Adams HD, Collins AD, Briggs SP, Vennetier M, Dickman LT, Sevanto SA, Garcia-Forner N, Powers HH, McDowell NG

Abstract

Higher temperatures associated with climate change are anticipated to trigger an earlier start to the growing season, which could increase the terrestrial C sink strength. Greater variability in the amount and timing of precipitation is also expected with higher temperatures, bringing increased drought stress to many ecosystems. We experimentally assessed the effects of higher temperature and drought on the foliar phenology and shoot growth of mature trees of two semiarid conifer species. We exposed field-grown trees to a ~45% reduction in precipitation with a rain-out structure ('drought'), a ~4.8 °C temperature increase with open-top chambers ('heat'), and a combination of both simultaneously ('drought + heat'). Over the 2013 growing season, drought, heat, and drought + heat treatments reduced shoot and needle growth in piñon pine (Pinus edulis) by ≥39%, while juniper (Juniperus monosperma) had low growth and little response to these treatments. Needle emergence on primary axis branches of piñon pine was delayed in heat, drought, and drought + heat treatments by 19-57 days, while secondary axis branches were less likely to produce needles in the heat treatment, and produced no needles at all in the drought + heat treatment. Growth of shoots and needles, and the timing of needle emergence correlated inversely with xylem water tension and positively with nonstructural carbohydrate concentrations. Our findings demonstrate the potential for delayed phenological development and reduced growth with higher temperatures and drought in tree species that are vulnerable to drought and reveal potential mechanistic links to physiological stress responses. Climate change projections of an earlier and longer growing season with higher temperatures, and consequent increases in terrestrial C sink strength, may be incorrect for regions where plants will face increased drought stress with climate change.

Keywords
Juniper Juniperus monosperma Pinus edulis climate change nonstructural carbohydrate phenology piñon pine water potential
MeSH Terms
Climate Change Droughts Hot Temperature Juniperus/growth & development,physiology New Mexico Pinus/growth & development,physiology Stress, Physiological Trees/growth & development,physiology
Authors & Affiliations
9 authors, click to expand affiliations / ORCID
Adams Henry D
Earth and Environmental Sciences, Los Alamos National Laboratory, PO Box 1663, Los Alamos, NM, 87545, USA.
Collins Adam D
Earth and Environmental Sciences, Los Alamos National Laboratory, PO Box 1663, Los Alamos, NM, 87545, USA.
Briggs Samuel P
Earth and Environmental Sciences, Los Alamos National Laboratory, PO Box 1663, Los Alamos, NM, 87545, USA.
Vennetier Michel
Irstea, UR Ecosystèmes Méditerranéens et Risques, Le Tholonet Aix-en-Provence, F-13182, France.
Dickman L Turin
Earth and Environmental Sciences, Los Alamos National Laboratory, PO Box 1663, Los Alamos, NM, 87545, USA.
Sevanto Sanna A
Earth and Environmental Sciences, Los Alamos National Laboratory, PO Box 1663, Los Alamos, NM, 87545, USA.
Garcia-Forner Núria
Centre de Recerca Ecològica i Aplicacions Forestals (CREAF), and Universitat Autònoma de Barcelona, Cerdanyola del Vallès, 08193, Spain.
Powers Heath H
Earth and Environmental Sciences, Los Alamos National Laboratory, PO Box 1663, Los Alamos, NM, 87545, USA.
McDowell Nate G
Earth and Environmental Sciences, Los Alamos National Laboratory, PO Box 1663, Los Alamos, NM, 87545, USA.
Article Info
Journal
Global change biology
Abbr.
Glob Chang Biol
ISSN
1365-2486
Published
2015-11-00
Epub
2015-00-22
Pages
4210-20
Language
English
Region
England
NLM ID
9888746
Subset
IM
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