Transport Physiology Research Group, University of Utrecht, Lange Nieuwstraat 106, NL-3512, Utrecht, PN, The Netherlands.
Planta. 1991 Dec;183(1):69-76. doi: 10.1007/BF00197569.
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 cellphloem parenchyma cell, and phloem parenchyma cellphloem 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.
我们研究了蓖麻(Ricinus communis L.)和垂柳(Salix alba L.)茎中筛管-伴胞复合体能(se-cc 复合体)的解剖和生理学隔离。在蓖麻中,胞间连丝的频率按以下顺序排列:筛管-伴胞、筛管-韧皮薄壁细胞、伴胞-韧皮薄壁细胞和韧皮薄壁细胞-韧皮薄壁细胞分别为 8∶1∶2∶30。se-cc 复合体和周围韧皮薄壁细胞的膜电位形成鲜明对比:se-cc 复合体的膜电位比韧皮薄壁细胞的膜电位大约负两倍。注射到筛管或伴胞中的 Lucifer Yellow CH 仍保留在 se-cc 复合体中。引入韧皮薄壁细胞的染料仅(大部分较差地)移动到其他韧皮薄壁细胞。胞间连丝频率的分布、差异染料偶联以及膜电位的明显不连续性表明,se-cc 复合体在茎韧皮部中构成共质体域。作为 se-cc 复合体在茎中发挥功能的基本必要条件,我们讨论了共质体的自主性。