Ultrastructure of Aeluropus littoralis leaf salt glands under NaCl stress

被引:1
|
作者
Zouhaier Barhoumi
Wahbi Djebali
Chedly Abdelly
Wided Chaïbi
Abderrazak Smaoui
机构
[1] Centre de Biotechnologie de la Technopole de Borj-Cedria,Laboratoire d’Adaptation des Plantes aux Stress Abiotiques
[2] Faculté des Sciences de Tunis,Unité de Recherche de Biologie et Physiologie Cellulaires Végétales
来源
Protoplasma | 2008年 / 233卷
关键词
Intricate membrane system; Salt gland; Salt effect; Ultrastructure;
D O I
暂无
中图分类号
学科分类号
摘要
The effects of salt uptake on the morphology and ultrastructure of leaf salt glands were investigated in Aeluropus littoralis plants grown for two months in the presence of 400 mM NaCl. The salt gland is composed of two linked cells, as observed in some other studied Poaceae species. The cap cell, which protrudes from the leaf surface, is smaller than the basal cell, which is embedded in the leaf mesophyll tissues and bears the former. The cuticle over the cap cell is frequently separated from the cell wall to form a cavity where salts accumulate prior to excretion. The basal cell cytoplasm contains an extensive intricate or partitioning membrane system that is probably involved in the excretion process, which is absent from the cap cell. The intricate membrane system seems to be elongated and heavily loaded with salt. The presence of 400 mM NaCl induced the disappearance of the collecting chamber over the glands and an increase in the number of vacuoles and their size in both gland cells. In the basal cell, salt greatly increased both the density and size of the intricate membrane system. The electron density of both gland cells observed under salt treatment reflects a high activity. All these changes probably constitute special adaptations for dealing with salt accumulation in the leaves. Despite the high salt concentration used, no serious damage occurred in A. littoralis salt gland ultrastructure, which consolidates the assumption that they are naturally designated for this purpose.
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页码:195 / 202
页数:7
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