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首页> 外文期刊>Microbiology >Structural characterization and ecological roles of a novel exopolysaccharide from the deep-sea psychrotolerant bacterium Pseudoalteromonas sp. SM9913
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Structural characterization and ecological roles of a novel exopolysaccharide from the deep-sea psychrotolerant bacterium Pseudoalteromonas sp. SM9913

机译:新型呼吸糖尿杆菌假亚霉素SP的新型外糖的结构表征及生态作用。 SM9913

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Pseudoalteromonas sp. SM9913 is a psychrotolerant bacterium isolated from deep-sea sediment. The structural characterization and ecological roles of the exopolysaccharide (EPS) secreted by this strain were studied in this work. The yield of the EPS increased as the culture temperature decreased in the range 30–10?°C, and it reached 5.25?g?l?1 (dry weight) under optimal growth conditions (15?°C, 52?h). EPS fraction was purified and its structure was identified by the combination of NMR spectra, high-resolution mass spectrometry (HRMS) analysis and methylation analysis. The ratio of the sugar units, the acetyl group and the ethoxyl group was close to 4?:?5?:?1. The major sugar unit of the EPS was 6-linked glucose (61.8?%); other sugar units present included terminal arabinofuranosyl (11.0?%) and glucopyranosyl (11.2?%) residues and a small amount of other sugar derivatives. Its structure was different from EPSs reported for other marine bacteria. Besides the structural elucidation of the EPS, its ecological roles were studied. This EPS could enhance the stability of the cold-adapted protease MCP-01 secreted by the same strain through preventing its autolysis. It could bind many metal ions, including Fe2+, Zn2+, Cu2+, Co2+. It was also a very good flocculating agent and could conglomerate colloidal and suspended particles. These results indicated that the EPS secreted by strain SM9913 might help this strain enrich the proteinaceous particles and the trace metals in the deep-sea environment, stabilize the secreted cold-adapted proteases and avoid its diffusion. This is believed to be the first report on the structure of the EPS secreted by a deep-sea psychrotolerant bacterium and its ecological roles. According to these results and other studies, a schematic diagram of the lifestyle of the deep-sea psychrotolerant strain SM9913 is suggested.
机译:伪alteromonas sp。 SM9913是一种从深海沉积物中分离的心理药物细菌。在这项工作中研究了这种菌株分泌的外偶糖(EPS)的结构表征和生态作用。随着培养温度降低,EPS的产量增加,在30-10℃的范围内,它在最佳生长条件下达到5.25〜G?1(干重)(15Ω·℃,52℃)。纯化EPS级分,通过NMR光谱,高分辨率质谱(HRMS)分析和甲基化分析的组合鉴定其结构。糖单元,乙酰基和乙氧基的比例接近4?:5?:?1。 EPS的主要糖单位是6个连接的葡萄糖(61.8?%);其他糖单位存在包括终端阿拉伯呋喃糖基(11.0〜%)和葡糖糖基(11.2〜β%)残基和少量其他糖衍生物。其结构与其他海洋细菌报告的EPS不同。除了EPS的结构阐明外,还研究了其生态作用。该EP可以通过防止其自分解增强由相同菌株分泌的冷适应蛋白酶MCP-01的稳定性。它可以束缚许多金属离子,包括Fe2 +,Zn2 +,Cu2 +,CO 2 +。它也是一种非常好的絮凝剂,可以将胶体和悬浮颗粒结合。这些结果表明,由菌株SM9913分泌的EP可以帮助这种菌株富集深海环境中的蛋白质颗粒和痕量金属,稳定分泌的冷适应蛋白酶并避免其扩散。这被认为是关于深海心理化细菌和生态作用分泌的EPS结构的第一份报告。根据这些结果和其他研究,提出了深海心脏抑制菌株SM9913的生活方式示意图。

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