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首页> 外文期刊>Carbohydrate Polymers: Scientific and Technological Aspects of Industrially Important Polysaccharides >Desiccation tolerance in plants: Structural characterization of the cell wall hemicellulosic polysaccharides in three Selaginella species
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Desiccation tolerance in plants: Structural characterization of the cell wall hemicellulosic polysaccharides in three Selaginella species

机译:植物中的干燥耐受性:三种硒物质中细胞壁半纤维素多糖的结构表征

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摘要

Drought-induced dehydration of vegetative tissues in lycopods affects growth and survival. Different species Selaginella have evolved a series of specialized mechanisms to tolerate desiccation in vegetative tissues in response to water stress. In the present study, we report on the structural characterization of the leaf cell wall of the desiccation-tolerant species S. involvens and two desiccation-sensitive species, namely S. kraussiana and S. moellendorffii. Isolated cell walls from hydrated and desiccated leaves of each species were fractionated and the resulting oligosaccharide fragments were analyzed to determine their structural features. Our results demonstrate that desiccation induces substantial modifications in the cell wall composition and structure. Altogether, these data highlight the fact that structural remodeling of cell wall hemicellulosic polysaccharides including XXXG-rich xyloglucan, arabinoxylan and acetylated galactomannan is an important process in order to mitigate desiccation stress in Selaginella.
机译:植物植物组织植物组织植物组织的脱水影响生长和生存。不同物种SelAginella已经进化了一系列专门机制,以应对水分胁迫在营养组织中耐受干燥。在本研究中,我们报告了干燥耐受物种S的叶片细胞壁的结构表征。涉及和两种干燥敏感物种,即S. Kraussiana和S. Moellendorffii。分离来自水合和干燥叶片的隔离的细胞壁,分析了所得的寡糖片段以确定其结构特征。我们的结果表明,干燥过程会在细胞壁组合物和结构中引起大量修改。总共,这些数据突出了细胞壁半纤维素多糖的结构重塑,包括富含XXXG的木糖葡聚糖,阿拉伯辛甲烷和乙酰化半乳甘露甘露甘露甘露甘露甘露甘露甘露甘露甘露甘露甘醇是一种重要的方法,以便在塞拉涅氏蛋白中减轻干燥应激。

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