Ultrastructural indications for coexistence of symplastic and apoplastic phloem loading in Commelina benghalensis leaves
- 1 November 1988
- journal article
- Published by Springer Nature in Planta
- Vol. 176 (2) , 159-172
- https://doi.org/10.1007/bf00392441
Abstract
The ultrastructural ontogeny of Commelina benghalensis minor-vein elements was followed. The mature minor vein has a restricted number of elements: a sheath of six to eight mestome cells encloses one xylem vessel, three to five vascular parenchyma cells, a companion cell, a thin-walled protophloem sieve-tube member and a thick-walled metaphloem sieve-tube member. The protophloem sieve-tube member (diameter 4–5 μm; wall thickness 0.12 μm) and the companion cell originated from a common mother cell. The metaphloem sieve-tube member (diameter 3 μm; wall thickness 0.2 μm) developed from the same precursor cell as the phloem parenchyma cells. Counting the plasmodesmatal frequencies demonstrated a symplastic continuum from mesophyll to the minor-vein phloem. The metaphloem sievetube member and the phloem parenchyma cells are the termini of this symplast. The protophloem sieve-tube member and companion cell constitute an insulated symplastic domain. The symplastic route, mesophyll to metaphloem sieve tube, appears to offer a path for symplastic loading; the protophloem sieve tube may be capable of accumulation from the apoplast. A similar two-way system of loading may exist in a number of plant families. Plasmodesmograms (a novel way to depict cell elements, plasmodesmatal frequencies and vein architecture) of some other species also displayed the anatomical requirements for two routes from mesophyll to sieve tube and indicate the potential coexistence of symplastic and apoplastic loading.Keywords
This publication has 43 references indexed in Scilit:
- Preferential Accumulation by Mesophyll Cells at Low and by Veins at High Exogenous Amino Acid and Sugar Concentrations inCommelina benghalensisL. LeavesJournal of Experimental Botany, 1986
- Loading and translocation of assimilate in the fine veins of sunflower leaves.Plant, Cell & Environment, 1985
- Loading of assimilates in wheat leaves. II. The path from chloroplast to veinPlant, Cell & Environment, 1985
- Free-space marker studies on the leaf ofZea mays L.Protoplasma, 1985
- The suberin lamella, a possible barrier to water movement from the veins to the mesophyll ofThemeda triandra forskProtoplasma, 1982
- Occurrence of the suberized lamella in leaves of grasses of different photosynthetic types. I. In parenchymatous bundle sheaths and PCR (?Kranz?) sheathsProtoplasma, 1981
- Development of mestome sheath cells in leaves ofAegilops comosa var.thessalicaProtoplasma, 1979
- Ultrastructure of minor veins inCucurbita pepo leavesProtoplasma, 1975
- Vein Loading: The Role of the Symplast in Intercellular Transport of Carbohydrate between the Mesophyll and Minor Veins of Tobacco LeavesPlant Physiology, 1974
- Vascular transfer cells in Angiosperm leaves A taxonomic and morphological surveyProtoplasma, 1969