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Acclimation effects of heat waves and elevated [CO2] on gas exchange and chlorophyll fluorescence of northern red oak (Quercus rubra L.) seedlings

Identifieur interne : 000134 ( Main/Exploration ); précédent : 000133; suivant : 000135

Acclimation effects of heat waves and elevated [CO2] on gas exchange and chlorophyll fluorescence of northern red oak (Quercus rubra L.) seedlings

Auteurs : Ingvar Bauweraerts [Belgique] ; Maarten Ameye [Belgique] ; Timothy M. Wertin [États-Unis] ; Mary Anne Mcguire [États-Unis] ; Robert O. Teskey [États-Unis] ; Kathy Steppe [Belgique]

Source :

RBID : Pascal:15-0051259

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Abstract

Heat wave frequency and intensity are predicted to increase. We investigated whether repeated exposure to heat waves would induce acclimation in Quercus rubra seedlings and considered [CO2] as an interacting factor. We measured gas exchange and chlorophyll fluorescence of seedlings grown in 380 (CA) or 700 (CE) μmol CO2 mol-1, and three temperature treatments (ambient, ambient +3 °C, and an ambient +12 °C heat wave every fourth week). Measurements were performed during the third and fourth +12 °C heat waves (July and August 2010) at Whitehall Forest, GA, USA. Additionally, previously unexposed seedlings were subjected to the August heat wave to serve as a control to determine acclimation of seedlings which were previously exposed. Seedlings with a history of heat wave exposure showed lower net photosynthesis (Anet) and stomatal conductance (on average -47 and - 38 %, respectively) than seedlings with no such history, when both were subjected to the same +12 °C heat wave. During both heat waves, Anet significantly declined in the +12 °C treatment compared with the other treatments. Additionally, the Anet decline during the August compared with the July heat wave was stronger in CE than in CA, suggesting that elevated [CO2] might have had a negative effect on acclimation capacity. We conclude that seedlings subjected to consecutive heat waves will moderate stomatal conductance outside the heat wave, to reduce water usage at lower temperatures, increasing survival at the expense of carbon assimilation.


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Le document en format XML

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<title xml:lang="en" level="a">Acclimation effects of heat waves and elevated [CO
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] on gas exchange and chlorophyll fluorescence of northern red oak (Quercus rubra L.) seedlings</title>
<author>
<name sortKey="Bauweraerts, Ingvar" sort="Bauweraerts, Ingvar" uniqKey="Bauweraerts I" first="Ingvar" last="Bauweraerts">Ingvar Bauweraerts</name>
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<sZ>1 aut.</sZ>
<sZ>2 aut.</sZ>
<sZ>6 aut.</sZ>
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<country>Belgique</country>
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<region type="province" nuts="2">Province de Flandre-Orientale</region>
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<orgName type="university">Université de Gand</orgName>
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<name sortKey="Wertin, Timothy M" sort="Wertin, Timothy M" uniqKey="Wertin T" first="Timothy M." last="Wertin">Timothy M. Wertin</name>
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<s1>Laboratory of Plant Ecology, Faculty of Bioscience Engineering, Ghent University, Coupure Links 653</s1>
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<title level="j" type="main">Plant ecology : (Dordrecht)</title>
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<term>Adaptation</term>
<term>Carbon dioxide</term>
<term>Chlorophyll</term>
<term>Climate change</term>
<term>Fluorescence</term>
<term>Gas exchange</term>
<term>Heat</term>
<term>Increase</term>
<term>Photosynthesis</term>
<term>Plant ecology</term>
<term>Plant juvenile growth stage</term>
<term>Quercus rubra</term>
<term>Stomatal conductance</term>
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<term>Adaptation</term>
<term>Chaleur</term>
<term>Augmentation</term>
<term>Echange gazeux</term>
<term>Fluorescence</term>
<term>Stade juvénile plante</term>
<term>Changement climatique</term>
<term>Photosynthèse</term>
<term>Conductance stomatique</term>
<term>Quercus rubra</term>
<term>Dioxyde de carbone</term>
<term>Chlorophylle</term>
<term>Ecologie végétale</term>
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<front>
<div type="abstract" xml:lang="en">Heat wave frequency and intensity are predicted to increase. We investigated whether repeated exposure to heat waves would induce acclimation in Quercus rubra seedlings and considered [CO
<sub>2</sub>
] as an interacting factor. We measured gas exchange and chlorophyll fluorescence of seedlings grown in 380 (C
<sub>A</sub>
) or 700 (C
<sub>E</sub>
) μmol CO
<sub>2</sub>
mol
<sup>-1</sup>
, and three temperature treatments (ambient, ambient +3 °C, and an ambient +12 °C heat wave every fourth week). Measurements were performed during the third and fourth +12 °C heat waves (July and August 2010) at Whitehall Forest, GA, USA. Additionally, previously unexposed seedlings were subjected to the August heat wave to serve as a control to determine acclimation of seedlings which were previously exposed. Seedlings with a history of heat wave exposure showed lower net photosynthesis (A
<sub>net</sub>
) and stomatal conductance (on average -47 and - 38 %, respectively) than seedlings with no such history, when both were subjected to the same +12 °C heat wave. During both heat waves, A
<sub>net</sub>
significantly declined in the +12 °C treatment compared with the other treatments. Additionally, the A
<sub>net</sub>
decline during the August compared with the July heat wave was stronger in C
<sub>E</sub>
than in C
<sub>A</sub>
, suggesting that elevated [CO
<sub>2</sub>
] might have had a negative effect on acclimation capacity. We conclude that seedlings subjected to consecutive heat waves will moderate stomatal conductance outside the heat wave, to reduce water usage at lower temperatures, increasing survival at the expense of carbon assimilation.</div>
</front>
</TEI>
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<name sortKey="Wertin, Timothy M" sort="Wertin, Timothy M" uniqKey="Wertin T" first="Timothy M." last="Wertin">Timothy M. Wertin</name>
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<name sortKey="Mcguire, Mary Anne" sort="Mcguire, Mary Anne" uniqKey="Mcguire M" first="Mary Anne" last="Mcguire">Mary Anne Mcguire</name>
<name sortKey="Teskey, Robert O" sort="Teskey, Robert O" uniqKey="Teskey R" first="Robert O." last="Teskey">Robert O. Teskey</name>
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