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首页> 外文期刊>World Journal of Microbiology & Biotechnology >Unique WSPA protein from terrestrial macroscopic cyanobacteria can confer resistance to osmotic stress in transgenic plants
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Unique WSPA protein from terrestrial macroscopic cyanobacteria can confer resistance to osmotic stress in transgenic plants

机译:来自陆地宏观蓝细菌的独特WSPA蛋白可以赋予转基因植物对渗透胁迫的抗性

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摘要

The terrestrial macroscopic cyanobacterium Nostoc commune exhibits remarkable resistance to desiccation stress. This species synthesizes abundant acidic water stress protein (WSPA) in cells upon desiccation and secretes it into the extracellular polysaccharide sheath upon rehydration. However, our knowledge about its cellular role in stress resistance is still rather limited. In this paper, we first revealed that WSPA also occurred in two other macroscopic cyanobacteria Nostoc flagelliforme and Nostoc sphaeroides, but it is more abundant in N. commune. The N. commune wspa1 gene was then heterologously expressed in Arabidopsis thaliana. Phenotypic observation found that WSPA1 conferred increased tolerance to osmotic stress in transgenic plants. The physiological indexes such as relative electrolyte leakage, malondialdehyde, proline accumulation and the maximal quantum efficiency of Photosystem II, were also improved in transgenic plants upon osmotic stress, compared to wild types. In addition, GFP fluorescence analysis of eGFP::wspa1 transgenic plant showed that WSPA1 was localized in the cytoplasm. Therefore, the role of WSPA revealed by this study mainly represented its intracellular function. In general, our research suggested that WSPA may act as a stress protein and involve cellular osmotic stress resistance
机译:陆地宏观蓝藻Nostoc社对干燥压力表现出显着的抵抗力。该物种在干燥后会在细胞中合成丰富的酸性水分胁迫蛋白(WSPA),并在补液后将其分泌到细胞外多糖鞘中。但是,我们对其在抗逆性中的细胞作用的认识仍然很有限。在本文中,我们首先揭示了WSPA还发生在另外两个宏观蓝细菌鞭毛成虫和球形变种Nostoc sphaeroides中,但是它在N. com.une中更为丰富。然后,在拟南芥中异源表达N.commune wspa1基因。表型观察发现,WSPA1赋予转基因植物对渗透胁迫的耐受性增强。与野生型相比,在渗透胁迫下转基因植物中的生理指标,例如相对电解质渗漏,丙二醛,脯氨酸积累和最大光子系统II的量子效率也得到了改善。此外,对eGFP :: wspa1转基因植物的GFP荧光分析表明,WSPA1位于细胞质中。因此,这项研究揭示的WSPA的作用主要代表其细胞内功能。总的来说,我们的研究表明WSPA可能充当应激蛋白并涉及细胞渗透应激抗性

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