Desiccation stress and tolerance in green algae: consequences for ultrastructure, physiological, and molecular mechanisms

被引:217
|
作者
Holzinger, Andreas [1 ]
Karsten, Ulf [2 ]
机构
[1] Univ Innsbruck, Inst Bot, A-6020 Innsbruck, Austria
[2] Univ Rostock, Inst Biol Sci, D-18055 Rostock, Germany
来源
基金
奥地利科学基金会;
关键词
aeroterrestrial algae; cell wall; dehydration; desiccation tolerance; phylogeny of green algae; osmolyte; soluble carbohydrates; turgor pressure; WATER RELATIONS; ECOPHYSIOLOGICAL PERFORMANCE; ZYGNEMA ZYGNEMATOPHYCEAE; CHLOROPHYLL FLUORESCENCE; PHENOLIC-COMPOUNDS; ANTARCTIC STRAINS; XANTHOPHYLL CYCLE; ORGANIC OSMOLYTES; PRASIOLA-CRISPA; SOIL CRUST;
D O I
10.3389/fpls.2013.00327
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Although most green algae typically occur in aquatic ecosystems, many species also live partly or permanently under aeroterrestrial conditions, where the cells are exposed to the atmosphere and hence regularly experience dehydration. The ability of algal cells to survive in an air-dried state is termed desiccation tolerance. The mechanisms involved in desiccation tolerance of green algae are still poorly understood, and hence the aim of this review is to summarize recent findings on the effects of desiccation and osmotic water loss. Starting from structural changes, physiological, and biochemical consequences of desiccation will be addressed in different green-algal lineages. The available data clearly indicate a range of strategies, which are rather different in streptophycean and non-streptophycean green algae. While members of the Trebouxiophyceae exhibit effective water loss-prevention mechanisms based on the biosynthesis and accumulation of particular organic osmolytes such as polyols, these compounds are so far not reported in representatives of the Streptophyta. In members of the Streptophyta such as Klebsormichum, the most striking observation is the appearance of cross-walls in desiccated samples, which are strongly undulating, suggesting a high degree of mechanical flexibility. This aids in maintaining structural integrity in the dried state and allows the cell to maintain turgor pressure for a prolonged period of time during the dehydration process. Physiological strategies in aeroterrestrial green algae generally include a rapid reduction of photosynthesis during desiccation, but also a rather quick recovery after rewetting, whereas aquatic species are sensitive to drying. The underlying mechanisms such as the affected molecular components of the photosynthetic machinery are poorly understood in green algae. Therefore, modern approaches based on transcriptomics, proteomics, and/or metabolomics are urgently needed to better understand the molecular mechanisms involved in desiccation-stress physiology of these organisms. The very limited existing information is described in the present review.
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页数:18
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