Rapid and tissue-specific accumulation of solutes in the growth zone of barley leaves in response to salinity

被引:34
作者
Fricke, W [1 ]
机构
[1] Univ Paisley, Div Biol Sci, Paisley PA1 2BE, Renfrew, Scotland
基金
英国生物技术与生命科学研究理事会;
关键词
cell expansion; Hordeum; leaf growth; salt stress; solute transport; water relations;
D O I
10.1007/s00425-004-1263-0
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
The aim of the present study was to test whether rapid accumulation of solutes in response to salinity in leaf tissues of barley (Hordeum vulgare L.) contributes to recovery and maintenance of residual elongation growth. Addition of 100 mM NaCl to the root medium caused an immediate reduction close to zero in elongation velocity of the growing leaf 3. After 20-30 min, elongation velocity recovered suddenly, to 40-50% of the pre-stress level. Bulk osmolality increased first, after 60 min, significantly in the proximal half of the elongation zone. Over the following 3 days, osmolality increases became significant in the distal half of the elongation zone, the adjacent, enclosed non-elongation zone and finally in the emerged portion of the blade. The developmental gradient and time course in osmolality increase along the growing leaf was reflected in the pattern of solute (Cl, Na and K) accumulation in bulk tissue and epidermal cells. The partitioning of newly accumulated solutes between epidermis and bulk tissue changed with time. Even though solute accumulation does not contribute to the sudden and partial growth recovery 20-30 min after exposure to salt, it does facilitate residual growth from 1 h onwards. This is due to a high sink strength for solutes of the proximal part of the growth zone and its ability to accumulate solutes rapidly and at high rates.
引用
收藏
页码:515 / 525
页数:11
相关论文
共 36 条
[1]   IMMEDIATE AND SUBSEQUENT GROWTH RESPONSES OF MAIZE LEAVES TO CHANGES IN WATER STATUS [J].
ACEVEDO, E ;
HSIAO, TC ;
HENDERSON, DW .
PLANT PHYSIOLOGY, 1971, 48 (05) :631-+
[2]  
[Anonymous], [No title captured]
[3]  
ARIF H, 1993, RATIONAL USE HIGH SA, V2, P45
[4]   The biochemical control of leaf expansion during drought [J].
Bacon, MA .
PLANT GROWTH REGULATION, 1999, 29 (1-2) :101-112
[5]   KINETICS OF MAIZE LEAF ELONGATION .1. INCREASED YIELD THRESHOLD LIMITS SHORT-TERM, STEADY-STATE ELONGATION RATES AFTER EXPOSURE TO SALINITY [J].
CRAMER, GR ;
BOWMAN, DC .
JOURNAL OF EXPERIMENTAL BOTANY, 1991, 42 (244) :1417-1426
[6]   Potassium activities in cell compartments of salt-grown barley leaves [J].
Cuin, TA ;
Miller, AJ ;
Laurie, SA ;
Leigh, RA .
JOURNAL OF EXPERIMENTAL BOTANY, 2003, 54 (383) :657-661
[7]   DYNAMIC ASPECTS AND ENHANCEMENT OF LEAF ELONGATION IN RICE [J].
CUTLER, JM ;
STEPONKUS, PL ;
WACH, MJ ;
SHAHAN, KW .
PLANT PHYSIOLOGY, 1980, 66 (01) :147-152
[8]   ION CONCENTRATION AND CARBOHYDRATE STATUS OF THE ELONGATING LEAF TISSUE OF HORDEUM-VULGARE GROWING AT HIGH EXTERNAL NACL .1. RELATIONSHIP BETWEEN SOLUTE CONCENTRATION AND GROWTH [J].
DELANE, R ;
GREENWAY, H ;
MUNNS, R ;
GIBBS, J .
JOURNAL OF EXPERIMENTAL BOTANY, 1982, 33 (135) :557-573
[9]   CHARACTERIZATION OF THE EPIDERMIS FROM BARLEY PRIMARY LEAVES .1. ISOLATION OF EPIDERMAL PROTOPLASTS [J].
DIETZ, KJ ;
SCHRAMM, M ;
BETZ, M ;
BUSCH, H ;
DURR, C ;
MARTINOIA, E .
PLANTA, 1992, 187 (04) :425-430
[10]   RAPID RESPONSE OF THE YIELD THRESHOLD AND TURGOR REGULATION DURING ADJUSTMENT OF ROOT-GROWTH TO WATER-STRESS IN ZEA-MAYS [J].
FRENSCH, J ;
HSIAO, TC .
PLANT PHYSIOLOGY, 1995, 108 (01) :303-312