Arid
DOI10.1016/j.envexpbot.2011.02.013
Water use efficiency, transpiration and net CO2 exchange of four alfalfa genotypes submitted to progressive drought and subsequent recovery
Erice, Gorka1,2; Louahlia, Said3; Jose Irigoyen, Juan1; Sanchez-Diaz, Manuel1; Thami Alami, I.; Avice, Jean-Christophe2
通讯作者Erice, Gorka
来源期刊ENVIRONMENTAL AND EXPERIMENTAL BOTANY
ISSN0098-8472
出版年2011
卷号72期号:2页码:123-130
英文摘要

The predicted worldwide increase in arid areas and water stress episodes will strongly affect crop production. Plants have developed a wide diversity of physiological mechanisms for drought tolerance. A decline in photosynthesis and thus yield production is a common response to drought, as are increases in the water use efficiency of photosynthesis (WUEph) and productivity (WUEp). The aim of our study was to determine the physiological effects (especially WUEph and WUEp) of progressive drought and subsequent recovery in three cultivars adapted to a Mediterranean climate [Tafilalet (TA), Tierra de Campos (TC), and Moapa (MO)], and another representative from an oceanic climate (Europe (EU)). The accuracy of the relationships between WUEph or WUEp and carbon isotope discrimination (Delta C-13) in shoots was also investigated as a function of water stress intensity. Mild drought (7 days of water withholding) decreased the net CO2 exchange (A), leaf conductance to water (g) and transpiration in EU leading to an increased WUEph. Delta C-13 was correlated with WUEp but not with WUEph, probably due to a late decrease in g. After moderate drought (14 days), A and g decreased in all cultivars, increasing WUEph. In this period WUEp also increased. Both WUE parameters were correlated with Delta C-13, which may indicate that the g value at the end of moderate water stress was representative of the growing period. After 21 days, TA was the most productive cultivar but under severe drought conditions there was no difference in DM accumulation among cultivars. After the recovery period, leaf area was increased but not total DM, showing that leaves were the most responsive organs to rewatering. Severe water stress did not decrease WUEph or WUEp, and Delta C-13 did not increase after recovery. This absence of a response to severe drought may indicate significant effects on the photosynthetic apparatus after 21 days of withholding water. As for mild drought, WUEp but not WUEph, was correlated with Delta C-13, supporting the view that WUEp is a more integrative parameter than WUEph. (C) 2011 Elsevier B.V. All rights reserved.


英文关键词Alfalfa Drought Net CO2 exchange Leaf conductance to water Water use efficiency Carbon isotope discrimination Lucerne
类型Article
语种英语
国家Spain ; France ; Morocco
收录类别SCI-E
WOS记录号WOS:000292431500003
WOS关键词CARBON-ISOTOPE DISCRIMINATION ; NODULATED ALFALFA ; LEAF EXPANSION ; GAS-EXCHANGE ; ELEVATED CO2 ; STRESS ; PLANT ; RESPONSES ; TEMPERATURE ; YIELD
WOS类目Plant Sciences ; Environmental Sciences
WOS研究方向Plant Sciences ; Environmental Sciences & Ecology
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/167913
作者单位1.Univ Navarra, Dept Biol Vegetal, Secc Biol Vegetal, Unidad Asociada,CSIC,EEAD,ICVV,Fac Ciencias & Far, Navarra, Spain;
2.Univ Caen, Inst Biol Fondamentale & Appl, Nutr NCS, UMR INRA UCBN 950, F-14032 Caen, France;
3.USMBA, Fac Poly Disciplinaire Taza, Lab Environm Patrimoine & Dev Durable, Fes, Morocco
推荐引用方式
GB/T 7714
Erice, Gorka,Louahlia, Said,Jose Irigoyen, Juan,et al. Water use efficiency, transpiration and net CO2 exchange of four alfalfa genotypes submitted to progressive drought and subsequent recovery[J],2011,72(2):123-130.
APA Erice, Gorka,Louahlia, Said,Jose Irigoyen, Juan,Sanchez-Diaz, Manuel,Thami Alami, I.,&Avice, Jean-Christophe.(2011).Water use efficiency, transpiration and net CO2 exchange of four alfalfa genotypes submitted to progressive drought and subsequent recovery.ENVIRONMENTAL AND EXPERIMENTAL BOTANY,72(2),123-130.
MLA Erice, Gorka,et al."Water use efficiency, transpiration and net CO2 exchange of four alfalfa genotypes submitted to progressive drought and subsequent recovery".ENVIRONMENTAL AND EXPERIMENTAL BOTANY 72.2(2011):123-130.
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