Tolerance of extreme salinity in two stem-succulent halophytes (Tecticornia species)

被引:41
作者
English, Jeremy P. [1 ,2 ]
Colmer, Timothy D. [1 ]
机构
[1] Univ Western Australia, Sch Plant Biol M084, Crawley, WA 6009, Australia
[2] Rio Tinto, Perth, WA 6000, Australia
基金
澳大利亚研究理事会;
关键词
glycinebetaine; photosynthesis; Salicornioideae; salt lake; salt tolerance; samphire; shoot ion concentrations; SALICORNIA-BIGELOVII TORR; SALT TOLERANCE; PHOTOSYNTHETIC PATHWAYS; LIQUID-CHROMATOGRAPHY; SEEDLING GROWTH; WATER-CONTENT; ION CONTENT; ATRIPLEX; GERMINATION; HALOSARCIA;
D O I
10.1071/FP12304
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Communities of Tecticornia on the margins of ephemeral salt lakes in Australia often exhibit species zonation, such as at Hannan Lake (Western Australia) where Tecticornia indica subsp. bidens (Nees) K. A. Sheph. and Paul G. Wilson occupies the less saline dune habitat on lake margins and Tecticornia pergranulata (J.M. Black) K. A. Sheph. and Paul G. Wilson subsp. pergranulata occupies both the dunes and the more saline and moist lake playa. Here we tested the hypothesis that these two species differ in tolerance to extreme salinity. Plants were grown in drained sand cultures with treatments of 10-2000mMNaCl for 85 days. Both species were highly salt tolerant, maintaining growth at treatments of up to 2000mM NaCl, although the death of two replicates of T. indica at 2000mMNaCl suggests this salinity is close to the species tolerance limit. Both Tecticornia species maintained a favourable gradient in tissue water potential via osmotic adjustment as external salinity increased, also with reduced tissue water content at very high external salinity. Regulated accumulation of Na+ and Cl-, maintenance of net K+ to Na+ selectivity, high tissue concentrations of glycinebetaine and presumed cellular solute compartmentation, would have contributed to salt tolerance. The growth rate of T. pergranulata was 11-29% higher than T. indica suggesting, in addition to these moderate differences in salinity tolerance, other factors are likely to contribute to species zonation at salt lakes. The higher water use efficiency of the C-4 T. indica compared with the C-3 T. pergranulata may provide an advantage in the drier dune habitat on salt lake margins. An additional experiment confirmed the hypothesis that survival of T. pergranulata seedlings is enhanced by the duration of reduced salinity after germination, as would occur following significant rainfall, as older seedlings maintained higher growth rates during subsequent increases in salinity.
引用
收藏
页码:897 / 912
页数:16
相关论文
共 63 条
[1]   Photosynthetic pathways in Chenopodiaceae from Africa, Asia and Europe with their ecological, phytogeographical and taxonomical importance [J].
Akhani, H ;
Trimborn, P ;
Ziegler, H .
PLANT SYSTEMATICS AND EVOLUTION, 1997, 206 (1-4) :187-221
[2]  
[Anonymous], 1991, Design and analysis: A researcher's handbook
[3]  
[Anonymous], 1998, FloraBase-the Western Australian Flora
[4]   INFLUENCE OF ALKALINE-EARTHS ON OXALATE CONTENT OF SALICORNIA-EUROPAEA L [J].
AUSTENFELD, FA ;
LEDER, U .
ZEITSCHRIFT FUR PFLANZENPHYSIOLOGIE, 1978, 88 (05) :403-412
[5]   GROWTH AND PHYSIOLOGY OF SALICORNIA BIGELOVII TORR AT SUBOPTIMAL SALINITY [J].
AYALA, F ;
OLEARY, JW .
INTERNATIONAL JOURNAL OF PLANT SCIENCES, 1995, 156 (02) :197-205
[6]  
BLACK R. F., 1960, AUSTRALIAN JOUR BIOL SCI, V13, P249
[7]   THE CHLORENCHYMA OF SOME MEMBERS OF THE SALICORNIEAE (CHENOPODIACEAE) [J].
CAROLIN, RC ;
JACOBS, SWL ;
VESK, M .
AUSTRALIAN JOURNAL OF BOTANY, 1982, 30 (04) :387-392
[8]   Tolerance of combined submergence and salinity in the halophytic stem-succulent Tecticornia pergranulata [J].
Colmer, T. D. ;
Vos, H. ;
Pedersen, O. .
ANNALS OF BOTANY, 2009, 103 (02) :303-312
[9]  
Cramer GR, 2002, SALINITY: ENVIRONMENT - PLANTS - MOLECULES, P205
[10]  
Datson B, 2002, SAMPHIRES W AUSTR