Stomatal control by chemical signalling and the exploitation of this mechanism to increase water use efficiency in agriculture

被引:364
作者
Davies, WJ [1 ]
Wilkinson, S
Loveys, B
机构
[1] Univ Lancaster, Lancaster Environm Ctr, Lancaster LA1 4YQ, England
[2] CSIRO Plant Ind, Hort Res Unit, Glen Osmond, SA 5064, Australia
关键词
chemical signalling; partial root zone drying; water use efficiency; pH; leaf temperature; stomatal guard cell; absisic acid (ABA);
D O I
10.1046/j.0028-646X.2001.00345.x
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Stomatal behaviour of plants in drying soil can be regulated by (long distance) chemical signals that provide the shoot with some measure of water availability. Although much emphasis has been placed on the plant hormone abscisic acid (ABA) as a central component of the signalling process, soil drying will modify the delivery to the shoot of a range of potential chemical signals. Here we consider the role that changes in the xylem sap pH might play in determining the access that ABA has to sites of action on the guard cells. We also show how redistribution of inorganic ions between different compartments in the leaf (localized chemical signalling) can provide sensitive control of stomata and water loss in response to potentially damaging changes in leaf temperature. Partial root zone drying is an irrigation technique that has been developed to allow exploitation of the plant's long distance signalling system. When the system is optimized, stomatal behaviour, shoot water status and leaf growth can be regulated such that water use efficiency (fruit yield/water used) can be significantly increased. We show how an understanding of the drought stress physiology of the whole plant can lead to substantial saving of irrigation water in agriculture. (C) New Phytologist (2002) 153: 449-460.
引用
收藏
页码:449 / 460
页数:12
相关论文
共 79 条
[1]   INVERTASE ACTIVITY AND ABSCISIC-ACID IN RELATION TO CARBOHYDRATE STATUS IN DEVELOPING SOYBEAN REPRODUCTIVE STRUCTURES [J].
ACKERSON, RC .
CROP SCIENCE, 1985, 25 (04) :615-618
[2]   ABA-deficient (aba1) and ABA-insensitive (abi1-1, abi2-1) mutants of Arabidopsis have a wild-type stomatal response to humidity [J].
Assmann, SM ;
Snyder, JA ;
Lee, YRJ .
PLANT CELL AND ENVIRONMENT, 2000, 23 (04) :387-395
[3]   The multisensory guard cell. Stomatal responses to blue light and abscisic acid [J].
Assmann, SM ;
Shimazaki, K .
PLANT PHYSIOLOGY, 1999, 119 (03) :809-815
[4]  
BACON MA, 1998, PLANT PHYSIOL, V118, P1057
[5]   CROP WATER DEFICITS [J].
BEGG, JE ;
TURNER, NC .
ADVANCES IN AGRONOMY, 1976, 28 :161-217
[6]   ROOT TO SHOOT COMMUNICATION IN MAIZE PLANTS OF THE EFFECTS OF SOIL DRYING [J].
BLACKMAN, PG ;
DAVIES, WJ .
JOURNAL OF EXPERIMENTAL BOTANY, 1985, 36 (162) :39-48
[7]   Control of stomatal conductance by leaf water potential in Hymenoclea salsola (T&G), a desert subshrub [J].
Comstock, J ;
Mencuccini, M .
PLANT CELL AND ENVIRONMENT, 1998, 21 (10) :1029-1038
[8]  
Coombe B. G., 2000, Australian Journal of Grape and Wine Research, V6, P131, DOI 10.1111/j.1755-0238.2000.tb00171.x
[9]   THE CONTROL OF LEAF CONDUCTANCE OF WHITE LUPIN BY XYLEM ABA CONCENTRATION DECREASES WITH THE SEVERITY OF WATER DEFICITS [J].
CORREIA, MJ ;
PEREIRA, JS .
JOURNAL OF EXPERIMENTAL BOTANY, 1995, 46 (282) :101-110
[10]   Stress-dependent redistribution of abscisic acid (ABA) in Hordeum vulgare L leaves: The role of epidermal ABA metabolism, tonoplastic transport and the cuticle [J].
Daeter, W ;
Hartung, W .
PLANT CELL AND ENVIRONMENT, 1995, 18 (12) :1367-1376