Submergence-induced leaf acclimation in terrestrial species varying in flooding tolerance

被引:61
作者
Mommer, Liesje
Wolters-Arts, Mieke
Andersen, Charlotte
Visser, Eric J. W.
Pedersen, Ole
机构
[1] Radboud Univ Nijmegen, Dept Expt Plant Ecol, Inst Water & Wetland Res, NL-6525 ED Nijmegen, Netherlands
[2] Radboud Univ Nijmegen, Dept Expt Bot, Inst Water & Wetland Res, NL-6525 ED Nijmegen, Netherlands
[3] Freshwater Biol Lab, DK-3400 Hillerod, Denmark
关键词
aeration; flooding tolerance; leaf anatomy; leaf traits; multi species study; oxygen microelectrodes; submergence;
D O I
10.1111/j.1469-8137.2007.02166.x
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Earlier work on the submergence-tolerant species Rumex palustris revealed that leaf anatomical and morphological changes induced by submergence enhance underwater gas exchange considerably. Here, the hypothesis is tested that these plastic responses are typical properties of submergence-tolerant species. Submergence-induced plasticity in leaf mass area (LMA) and leaf, cell wall and cuticle thickness was investigated in nine plant species differing considerably in tolerance to complete submergence. The functionality of the responses for underwater gas exchange was evaluated by recording oxygen partial pressures inside the petioles when plants were submerged. Acclimation to submergence resulted in a decrease in all leaf parameters, including cuticle thickness, in all species irrespective of flooding tolerance. Consequently, internal oxygen partial pressures (pO(2)) increased significantly in all species until values were close to air saturation. Only in nonacclimated leaves in darkness did intolerant species have a significantly lower pO(2) than tolerant species. These results suggest that submergence-induced leaf plasticity, albeit a prerequisite for underwater survival, does not discriminate tolerant from intolerant species. It is hypothesized that these plastic leaf responses may be induced in all species by several signals present during submergence; for example, low LMA may be a response to low photosynthate concentrations and a thin cuticle may be a response to high relative humidity.
引用
收藏
页码:337 / 345
页数:9
相关论文
共 41 条
[1]  
ARMSTRONG W, 1979, ADV BOT RES, P226
[2]   Leaf optical responses to light and soil nutrient availability in temperate deciduous trees [J].
Baltzer, JL ;
Thomas, SC .
AMERICAN JOURNAL OF BOTANY, 2005, 92 (02) :214-223
[3]  
BLOM CWP, 1993, INTERACTING STRESSES, P243
[4]   Morphological adaptations and photosynthetic rates of amphibious Veronica anagallis-aquatica L. (Scrophulariaceae) under different flow regimes [J].
Boeger, MRT ;
Poulson, ME .
AQUATIC BOTANY, 2003, 75 (02) :123-135
[5]   PLASTICITY IN THE PHOTOSYNTHETIC CARBON METABOLISM OF SUBMERSED AQUATIC MACROPHYTES [J].
BOWES, G ;
SALVUCCI, ME .
AQUATIC BOTANY, 1989, 34 (1-3) :233-266
[6]  
BRADSHAW A. D., 1965, ADVANCE GENET, V13, P115, DOI 10.1016/S0065-2660(08)60048-6
[7]   Leaf developmental plasticity of Ranunculus flabellaris in response to terrestrial and submerged environments [J].
Bruni, NC ;
Young, JP ;
Dengler, NG .
CANADIAN JOURNAL OF BOTANY-REVUE CANADIENNE DE BOTANIQUE, 1996, 74 (06) :823-837
[8]   Long-distance transport of gases in plants: a perspective on internal aeration and radial oxygen loss from roots [J].
Colmer, TD .
PLANT CELL AND ENVIRONMENT, 2003, 26 (01) :17-36
[9]   THE RELATIONSHIP BETWEEN CO2 TRANSFER CONDUCTANCE AND LEAF ANATOMY IN TRANSGENIC TOBACCO WITH A REDUCED CONTENT OF RUBISCO [J].
EVANS, JR ;
VONCAEMMERER, S ;
SETCHELL, BA ;
HUDSON, GS .
AUSTRALIAN JOURNAL OF PLANT PHYSIOLOGY, 1994, 21 (04) :475-495
[10]   Species specificity of resistance to oxygen diffusion in thin cuticular membranes from amphibious plants [J].
Frost-Christensen, H ;
Jogensen, LB ;
Floto, F .
PLANT CELL AND ENVIRONMENT, 2003, 26 (04) :561-569