Towards reconciliation of structure with function in plasmodesmata - who is the gatekeeper?

被引:36
作者
Botha, CEJ
Cross, RHN [1 ]
机构
[1] Rhodes Univ, Electron Microscopy Unit, ZA-6140 Grahamstown, South Africa
[2] Rhodes Univ, Dept Bot, ZA-6140 Grahamstown, South Africa
关键词
desmotubule; callose deposition; neck constriction; cell-to-cell communication; cell-to-cell transport regulation; plasmodesmata;
D O I
10.1016/S0968-4328(99)00108-0
中图分类号
TH742 [显微镜];
学科分类号
摘要
Whilst the structure of higher plant plasmodesmata was first described by Robards (1963. Desmotubule-a plasmodesmatal substructure. Nature 218, 784), and despite many subsequent intensive investigations, there is still much that remains unclear relating to their ultrastructure and functioning in higher plants. We have examined chemically fixed plant material, and suggest that the conformational changes seen in plasmodesmatal substructure, particularly the deposition of electron-dense extra-plasmodesmal material, is linked to either manipulation of the hormonal balance (as in Avocado fruit), or of osmotic potential in leaf blade material. These changes result in the deposition of beta 1,3-glucan (callose) at the neck region of these plasmodesmata. This electron-dense material is deposited at the neck region of plasmodesmata, and forms a collar-like structure. The formation of a collar is shown to be coupled with loss of lucence within the cytoplasmic sleeve. The formation of a collar at the plasmodesmatal orifice thus results in encapsulation and closure of the plasmodesmatal orifice. Closure of the orifice coincides with a loss of electron-lucence and a lack of resolution of the desmotubule. These ultrastructural changes are potentially significant and could contribute to, result in, or assist in the down-regulation of cell to cell trafficking via plasmodesmata. (C) 2000 Elsevier Science Ltd. All rights reserved.
引用
收藏
页码:713 / 721
页数:9
相关论文
共 31 条
[1]  
[Anonymous], PLASMODESMATA STRUCT
[2]  
BEEBE DU, 1991, PHYSIOL PLANTARUM, V83, P194, DOI 10.1111/j.1399-3054.1991.tb01301.x
[3]   THE ULTRASTRUCTURE AND COMPUTER-ENHANCED DIGITAL IMAGE-ANALYSIS OF PLASMODESMATA AT THE KRANZ MESOPHYLL-BUNDLE SHEATH INTERFACE OF THEMEDA-TRIANDRA VAR IMBERBIS (RETZ) CAMUS,A. IN CONVENTIONALLY-FIXED LEAF BLADES [J].
BOTHA, CEJ ;
HARTLEY, BJ ;
CROSS, RHM .
ANNALS OF BOTANY, 1993, 72 (03) :255-261
[4]  
BOTHA CEJ, 1992, PLANTA, V187, P348, DOI 10.1007/BF00195658
[5]   Comparative ultrastructure of plasmodesmata of Chara and selected bryophytes: Toward an elucidation of the evolutionary origin of plant plasmodesmata [J].
Cook, ME ;
Graham, LE ;
Botha, CEJ ;
Lavin, CA .
AMERICAN JOURNAL OF BOTANY, 1997, 84 (09) :1169-1178
[6]   SUBSTRUCTURE OF FREEZE-SUBSTITUTED PLASMODESMATA [J].
DING, B ;
TURGEON, R ;
PARTHASARATHY, MV .
PROTOPLASMA, 1992, 169 (1-2) :28-41
[7]  
Ehlers K, 1996, PLANTA, V199, P126
[8]   DISTRIBUTION AND STRUCTURE OF PLASMODESMATA IN MESOPHYLL AND BUNDLE-SHEATH CELLS OF ZEA-MAYS-L [J].
EVERT, RF ;
ESCHRICH, W ;
HEYSER, W .
PLANTA, 1977, 136 (01) :77-89
[9]   STUDIES ON THE LEAF OF AMARANTHUS-RETROFLEXUS (AMARANTHACEAE) - ULTRASTRUCTURE, PLASMODESMATAL FREQUENCY, AND SOLUTE CONCENTRATION IN RELATION TO PHLOEM LOADING [J].
FISHER, DG ;
EVERT, RF .
PLANTA, 1982, 155 (05) :377-387
[10]   ENDOPLASMIC-RETICULUM IN THE FORMATION OF THE CELL PLATE AND PLASMODESMATA [J].
HEPLER, PK .
PROTOPLASMA, 1982, 111 (02) :121-133