SYMPLASTIC ISOLATION OF THE SIEVE ELEMENT-COMPANION CELL COMPLEX IN THE PHLOEM OF RICINUS-COMMUNIS AND SALIX-ALBA STEMS

被引:36
作者
VANBEL, AJE
KEMPERS, R
机构
[1] Transport Physiology Research Group, University of Utrecht, Utrecht, NL-3512, PN
关键词
IONTOPHORESIS; PHLOEM TRANSLOCATION; RICINUS; SALIX; SIEVE ELEMENT-COMPANION CELL COMPLEX; SYMPLASTIC ISOLATION;
D O I
10.1007/BF00197569
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
The anatomical and physiological isolation of the sieve element-companion cell complex (se-cc complex) was investigated in stems of Ricinus communis L. and Salix alba L. In Ricinus, the plasmodesmatal frequencies were in the proportions 8:1:2:30, in the order given, at the interfaces between sieve tube-companion cell, sieve tube-phloem parenchyma cell, companion cell-phloem parenchyma cell, and phloem parenchyma cell-phloem parenchyma cell. The membrane potentials of the se-cc complex and the surrounding phloem-parenchyma cells sharply contrasted: the membrane potential of the se-cc complex was about twice as negative as that of the phloem parenchyma. Lucifer Yellow CH injected into the sieve element or into the companion cell remained within the se-cc complex. Dye introduced into phloem parenchyma only moved (mostly poorly) to other phloem-parenchyma cells. The distribution of the plasmodesmatal frequencies, the differential dye-coupling and the sharp discontinuities in membrane potentials indicate that the se-cc complexes constitute symplast domains in the stem phloem. Symplastic autonomy is discussed as a basic necessity for the functioning of the se-cc complex in the stem.
引用
收藏
页码:69 / 76
页数:8
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