Root Caps and Rhizosphere

被引:119
作者
Martha C. Hawes [1 ]
Glyn Bengough [2 ]
Gladys Cassab [3 ]
Georgina Ponce [3 ]
机构
[1] University of Arizona,Department of Plant Pathology
[2] Tucson,undefined
[3] Arizona 85721,undefined
[4] Scottish Crop Research Institute,undefined
[5] Dundee,undefined
[6] UNAM/iBT,undefined
[7] Cuernavaca,undefined
关键词
Root caps; Rhizosphere; Plant growth;
D O I
10.1007/s00344-002-0035-y
中图分类号
学科分类号
摘要
In this paper we discuss recent work on the physiological, molecular, and mechanical mechanisms that underlie the capacity of root caps to modulate the properties of the rhizosphere and thereby foster plant growth and development. The root cap initially defines the rhizosphere by its direction of growth, which in turn occurs in response to gradients in soil conditions and gravity. The ability of the root cap to modulate its environment is largely a result of the release of exudates and border cells, and so provides a potential method to engineer the rhizosphere. Factors affecting the release of border cells from the outer surface of the root cap, and function of these cells and their exudates in the rhizosphere, are considered in detail. Release of border cells into the rhizosphere depends on soil matric potential and mechanical impedance, in addition to a host of other environmental conditions. There is good evidence of unidentified feedback signals between border cells and the root cap meristem, and some potential mechanisms are discussed. Root border cells play a significant mechanical role in decreasing frictional resistance to root penetration, and a conceptual model for this function is discussed. Root and border cell exudates influence specific interactions between plant hosts and soil organisms, including pathogenic fungi. The area of exudates and border cell function in soil is an exciting and developing one that awaits the production of appropriate mutant and transgenic lines for further study in the soil environment.
引用
收藏
页码:352 / 367
页数:15
相关论文
共 199 条
[1]  
Aiken RM(1996)Root system regulation of whole plant growth. Annu Rev Phytopathol 34 325-346
[2]  
Smucker AJM(1996)Specialized zones of development in roots: view from the cellular level. Plant Physiol 112 3-4
[3]  
Baluška F(1996)Root cap mucilage and extracellular calcium as modulators of cellular growth in postmitotic growth zones of the maize root apex. Bot Acta 109 25-34
[4]  
Volkmann D(1996)Microtubular cytoskeleton and root morphogenesis. Plant Soil 187 23-36
[5]  
Barlow PW(2003)The root cap: cell dynamics, cell differentiation and cap function. J Plant Growth Regulation 21 261-286
[6]  
Baluška F(1999)Exocytosis and endocytosis. Plant Cell 11 643-659
[7]  
Volkmann D(1997)A biophysical analysis of root growth under mechanical stress. Plant Soil 189 155-164
[8]  
Hauskrecht M(1999)Tribology of the root cap in maize and peas. New Phytol 142 421-425
[9]  
Barlow PW(1997)Sloughing of root cap cells decreases the frictional resistance to maize root growth. J Exper Bot 48 885-893
[10]  
Barlow PW(1990)Mechanical impedance to root-growth—a review of experimental techniques and root growth responses. J Soil Sci 41 341-358