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A cytochemical and immunocytochemical analysis of the wall labyrinth apparatus in leaf transfer cells in Elodea canadensis

ROBERTO LIGRONE - Nama Orang; Kevin C. Vaughn - Nama Orang; Nicoletta Rascio - Nama Orang;

Background and Aims Transfer cells are plant cells specialized in apoplast/symplast transport and characterized by a distinctive wall labyrinth apparatus. The molecular architecture and biochemistry of the labyrinth apparatus are poorly known. The leaf lamina in the aquatic angiosperm Elodea canadensis consists of only two cell layers, with the abaxial cells developing as transfer cells. The present study investigated biochemical properties of wall ingrowths and associated plasmalemma in these cells.
Methods Leaves of Elodea were examined by light and electron microscopy and ATPase activity was localized
cytochemically. Immunogold electron microscopy was employed to localize carbohydrate epitopes associated
with major cell wall polysaccharides and glycoproteins.
Key Results The plasmalemma associated with the wall labyrinth is strongly enriched in light-dependent
ATPase activity. The wall ingrowths and an underlying wall layer share an LM11 epitope probably associated
with glucuronoarabinoxylan and a CCRC-M7 epitope typically associated with rhamnogalacturonan I. No labelling was observed with LM10, an antibody that recognizes low-substituted and unsubstituted xylan, a polysaccharide consistently associated with secondary cell walls. The JIM5 and JIM7 epitopes, associated with homogalacturonan with different degrees of methylation, appear to be absent in the wall labyrinth but present in the rest of cell walls.
Conclusions The wall labyrinth apparatus of leaf transfer cells in Elodea is a specialized structure with distinctive biochemical properties. The high level of light-dependent ATPase activity in the plasmalemma lining the wall labyrinth is consistent with a formerly suggested role of leaf transfer cells in enhancing inorganic carbon inflow. The wall labyrinth is a part of the primary cell wall. The discovery that the wall ingrowths in Elodea have an antibody-binding pattern divergent, in part, from that of the rest of cell wall suggests that their carbohydrate composition is modulated in relation to transfer cell functioning.
Key words: Aquatic plants, ATPase activity, cell walls, Elodea, immunogold labelling, transfer cells.


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Informasi Detail
Judul Seri
Annals of Botany
No. Panggil
-
Penerbit
: Oxford University Press on behalf of the Annals of Botany Company., 2011
Deskripsi Fisik
Annals of Botany 107: 717–722, 2011
Bahasa
English
ISBN/ISSN
-
Klasifikasi
-
Tipe Isi
-
Tipe Media
-
Tipe Pembawa
-
Edisi
-
Subjek
PERTANIAN.
Info Detail Spesifik
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Pernyataan Tanggungjawab
yuli/agus
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Lampiran Berkas
  • A cytochemical and immunocytochemical analysis of the wall labyrinth apparatus in leaf transfer cells in Elodea canadensis
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