Salt tolerance and avoidance mechanisms at germination of annual pasture legumes: importance for adaptation to saline environments

被引:0
|
作者
P. G. H. Nichols
A. I. Malik
M. Stockdale
T. D. Colmer
机构
[1] Department of Agriculture and Food Western Australia,School of Plant Biology, Faculty of Natural and Agricultural Sciences
[2] The University of Western Australia,Future Farm Industries Cooperative Research Centre
[3] The University of Western Australia,Graduate School of Agricultural and Life Sciences
[4] The University of Tokyo,undefined
[5] Department of Agriculture and Food Western Australia,undefined
来源
Plant and Soil | 2009年 / 315卷
关键词
Salt tolerance; Pasture legumes; Hard seeds; Germination; Imbibition; Seed ion concentrations; Recovery from salt stress;
D O I
暂无
中图分类号
学科分类号
摘要
Mechanisms for tolerance and avoidance of salinity at germination were examined in five self-regenerating annual pasture legumes of Mediterranean origin (Medicago polymorpha, Melilotus siculus, Trifolium subterraneum, T. michelianum and T. tomentosum). The maximum NaCl concentrations, for which no reduction in germination percentage occurred, were 300 mM for M. siculus, 240 mM for M. polymorpha and 120 mM for T. michelianum, T. subterraneum and T. tomentosum. Following 21 days exposure to 300 mM NaCl, imbibed seeds of T. subterraneum showed reduced germinability upon transfer to non-saline solution, whereas those of the four other species recovered full germinability. Following exposure to 600 mM NaCl, however, only T. michelianum and Melilotus siculus had some degree of recovery, with 38% and 31% germinability, respectively. Na+ in imbibed seed tissues of all species increased markedly with increasing NaCl concentration, while K+ decreased in all but Melilotus siculus. Seed coat impermeability (‘hard seeds’) acted as protection against the toxic effects of salinity. Melilotus siculus, Medicago polymorpha and T. tomentosum showed a delay in hard-seed breakdown (‘seed softening’) over the summer–autumn period, compared to T. subterraneum and T. michelianum, which acts to defer germination until soil surface salinity levels are likely to be lower. These three species also had higher levels of residual hard seeds. The results from this study support field observations that Melilotus siculus and Medicago polymorpha are the best adapted annual pasture legumes for highly saline soils in southern Australia, T. tomentosum and T. michelianum have some adaptation to moderately and mildly saline soils, respectively, whereas T. subterraneum has no adaptive traits for even mildly saline environments. A model for annual legume germination on saline land in southern Australia is also presented.
引用
收藏
页码:241 / 255
页数:14
相关论文
共 43 条
  • [1] Salt tolerance and avoidance mechanisms at germination of annual pasture legumes: importance for adaptation to saline environments
    Nichols, P. G. H.
    Malik, A. I.
    Stockdale, M.
    Colmer, T. D.
    PLANT AND SOIL, 2009, 315 (1-2) : 241 - 255
  • [2] SALT TOLERANCE OF SOME TROPICAL PASTURE LEGUMES WITH POTENTIAL ADAPTATION TO CRACKING CLAY SOILS
    KEATING, BA
    STRICKLAND, RW
    FISHER, MJ
    AUSTRALIAN JOURNAL OF EXPERIMENTAL AGRICULTURE, 1986, 26 (02): : 181 - 186
  • [3] Halophyte and glycophyte salt tolerance at germination and the establishment of halophyte shrubs in saline environments
    C.V. Malcolm
    V.A. Lindley
    J.W. O'Leary
    H.V. Runciman
    E.G. Barrett-Lennard
    Plant and Soil, 2003, 253 : 171 - 185
  • [4] Halophyte and glycophyte salt tolerance at germination and the establishment of halophyte shrubs in saline environments
    Malcolm, CV
    Lindley, VA
    O'Leary, JW
    Runciman, HV
    Barrett-Lennard, EG
    PLANT AND SOIL, 2003, 253 (01) : 171 - 185
  • [5] Production and persistence of annual pasture legumes at five saline sites in southern Australia
    Nichols, P. G. H.
    Craig, A. D.
    Rogers, M. E.
    Albertsen, T. O.
    Miller, S. M.
    McClements, D. R.
    Hughes, S. J.
    D'Antuono, M. F.
    Dear, B. S.
    AUSTRALIAN JOURNAL OF EXPERIMENTAL AGRICULTURE, 2008, 48 (04) : 518 - 535
  • [6] Mechanisms and Adaptation Strategies of Tolerance to Phosphorus Deficiency in Legumes
    Lazali, Mohamed
    Drevon, Jean Jacques
    COMMUNICATIONS IN SOIL SCIENCE AND PLANT ANALYSIS, 2021, 52 (13) : 1469 - 1483
  • [7] Effects, tolerance mechanisms and management of salt stress in grain legumes
    Farooq, Muhammad
    Gogoi, Nirmali
    Hussain, Mubshar
    Barthakur, Sharmistha
    Paul, Sreyashi
    Bharadwaj, Nandita
    Migdadi, Hussein M.
    Alghamdi, Salem S.
    Siddique, Kadambot H. M.
    PLANT PHYSIOLOGY AND BIOCHEMISTRY, 2017, 118 : 199 - 217
  • [8] Perennial-like adaptation mechanisms of annual legumes to limited irrigation
    Kostopoulou, P.
    Vrahnakis, M. S.
    Merou, T.
    Lazaridou, M.
    JOURNAL OF ENVIRONMENTAL BIOLOGY, 2010, 31 (03): : 311 - 314
  • [9] Salinity tolerance and avoidance mechanisms at germination among messina (Melilotus siculus) accessions
    Jeffery, Robert P.
    Ryan, Megan H.
    Ayers, Natasha L.
    Nichols, Phillip G. H.
    CROP & PASTURE SCIENCE, 2021, 72 (8-9): : 641 - 651
  • [10] Salt stress tolerance mechanisms and potential applications of legumes for sustainable reclamation of salt-degraded soils
    Abiala, Moses Akindele
    Abdelrahman, Mostafa
    Burritt, David J.
    Lam-Son Phan Tran
    LAND DEGRADATION & DEVELOPMENT, 2018, 29 (10) : 3812 - 3822