Long-term drought results in a reversible decline in photosynthetic capacity in mango leaves, not just a decrease in stomatal conductance

被引:39
作者
Damour, Gaelle [1 ]
Vandame, Marc [2 ]
Urban, Laurent [3 ]
机构
[1] CIRAD Persyst UR 77, Stn Bassin Plat, BP 180, F-97455 St Pierre, Reunion, France
[2] INRA UMR PIAF, F-63039 Clermont Ferrand 02, France
[3] INRA UR 1103, F-20230 San Giuliano, Corse, France
关键词
hexose-to-sucrose ratio; J(max); Mangifera indica L; photoinhibition; thermal energy dissipation; water stress; GAS-EXCHANGE; WATER-STRESS; LEAF PHOTOSYNTHESIS; ELECTRON-TRANSPORT; CO2; ACCLIMATION; LIMITATIONS; DEFICITS; PLANTS; FIELD;
D O I
10.1093/treephys/tpp011
中图分类号
S7 [林业];
学科分类号
0829 ; 0907 ;
摘要
The negative effects of drought on plant growth, development of natural plant communities and crop productivity are well established, but some of the responses remain poorly characterized, particularly the effect of long-term drought on photosynthetic capacity. We hypothesized that long-term drought results in a decline in leaf photosynthetic capacity, and not just a decrease in diffusive conductance. To test this hypothesis, we studied the effect of drought, slowly developed over 3.5 months, in leaves of eight potted mango (Mangifera indica L.) trees. We found that photosynthesis was not only limited by stomatal Closure, but was also down-regulated Lis a consequence of a strong decrease in photosynthetic capacity assessed by the measurements of maximal net photosynthesis (A(max)) and the light-saturated rate of photosynthetic electron transport (J(max)). The rapid recovery of A(max) and J(max), after only 1 week of rewatering, the maintenance of a stable pool of leaf nitrogen throughout the trial, and the decrease in quantum efficiency of open centers of photosystem II, indicate that the photosynthetic machinery escaped photodamage in the drought-treated trees and was simply down-regulated during drought. The hexose-to-sucrose ratio was higher in leaves from drought-treated trees than in control leaves, suggesting that photosynthetic capacity decreased as a consequence of sink limitation.
引用
收藏
页码:675 / 684
页数:10
相关论文
共 47 条
[1]  
ADAMS WW, 2005, PHOTOPROTECTION PHOT, P49
[2]   The response of photosynthesis and stomatal conductance to rising [CO2]:: mechanisms and environmental interactions [J].
Ainsworth, Elizabeth A. ;
Rogers, Alistair .
PLANT CELL AND ENVIRONMENT, 2007, 30 (03) :258-270
[3]   Ozone depletion and increased UV-B radiation:: is there a real threat to photosynthesis? [J].
Allen, DJ ;
Nogués, S ;
Baker, NR .
JOURNAL OF EXPERIMENTAL BOTANY, 1998, 49 (328) :1775-1788
[4]  
[Anonymous], 2005, R LANG ENV STAT COMP
[5]   Effects of the interaction between drought and shade on water relations, gas exchange and morphological traits in cork oak (Quercus suber L.) seedlings [J].
Aranda, I ;
Castro, L ;
Pardos, M ;
Gil, L ;
Pardos, JA .
FOREST ECOLOGY AND MANAGEMENT, 2005, 210 (1-3) :117-129
[6]  
Boehringer S., 1984, METHODS ENZYMATIC FO
[7]   Dynamics of changing intercellular CO2 concentration (c(i)) during drought and determination of minimum functional c(i) [J].
Brodribb, T .
PLANT PHYSIOLOGY, 1996, 111 (01) :179-185
[8]   The use of low [CO2] to estimate diffusional and non-diffusional limitations of photosynthetic capacity of salt-stressed olive saplings [J].
Centritto, M ;
Loreto, F ;
Chartzoulakis, K .
PLANT CELL AND ENVIRONMENT, 2003, 26 (04) :585-594
[9]   EFFECT OF PHOSPHORUS DEFICIENCY ON SOURCE SINK INTERACTIONS BETWEEN THE FLAG LEAF AND DEVELOPING GRAIN IN BARLEY [J].
CHAPIN, FS ;
WARDLAW, IF .
JOURNAL OF EXPERIMENTAL BOTANY, 1988, 39 (199) :165-177
[10]   How plants cope with water stress in the field.: Photosynthesis and growth [J].
Chaves, MM ;
Pereira, JS ;
Maroco, J ;
Rodrigues, ML ;
Ricardo, CPP ;
Osório, ML ;
Carvalho, I ;
Faria, T ;
Pinheiro, C .
ANNALS OF BOTANY, 2002, 89 :907-916