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Selectively inducing the synthesis of a key structural exopolysaccharide in aerobic granules by enriching for Candidatus 'competibacter phosphatis'

机译:通过富集假丝酵母“磷脂竞争杆菌”,选择性诱导需氧颗粒中关键结构胞外多糖的合成

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A gel-forming exopolysaccharide was previously shown to play an important structural role in aerobic granules treating nutrient-rich industrial wastewater. To identify whether this exopolysaccharide performs a similar role in other granular biomass and if conditions favouring its production can be more precisely elucidated, extracellular polymeric substances (EPS) were extracted from granules grown under four different operating conditions. ~1H nuclear magnetic resonance (NMR) spectroscopy of their EPS indicated that the gel-forming exopolysaccharide was expressed in two granular sludges both enriched in Candidatus "Competibacter phosphatis". In contrast, it was not expressed in granules performing denitrification with methanol as a carbon source and nitrate as the electron acceptor or granules enriched in Candidatus "Accumulibacter phosphatis" performing enhanced biological phosphorus removal from synthetic wastewater. In one of the first two sludges, the exopolysaccharide contained in the seeding granular sludge continued to be a major component of the granule EPS while Competibacter was being enriched. In the second sludge, a floccular sludge not containing the gel-forming exopolysaccharide initially was also enriched for Competibacter. In this sludge, an increase in particle size was detected coinciding with a yield increase of EPS. NMR spectroscopy confirmed its yield increase to be attributable to the production of this structural gel-forming exopolysaccharide. The results show that (1) the particular gel-forming exopolysaccharide previously identified is not necessarily a key structural exopolysaccharide for all granule types, and (2) synthesis of this exopolysaccharide is induced under conditions favouring the selective enrichment of Competibacter. This indicates that Competibacter may be involved in its production.
机译:先前已显示形成凝胶的胞外多糖在好氧颗粒处理富含营养的工业废水中起重要的结构作用。为了鉴定这种胞外多糖是否在其他颗粒状生物质中发挥相似的作用,以及是否可以更精确地阐明有利于其生产的条件,从在四种不同操作条件下生长的颗粒中提取了细胞外聚合物(EPS)。其EPS的〜1H核磁共振(NMR)光谱表明,形成凝胶的胞外多糖在两种均富含“念珠菌磷脂酶”的颗粒状污泥中表达。相反,在用甲醇作为碳源,用硝酸盐作为电子受体进行反硝化的颗粒,或富含“假丝酵母菌”的颗粒增强了从合成废水中生物除磷的颗粒中,则没有表达。在前两种污泥中的一种中,接种粒状污泥中所含的胞外多糖在富集竞争杆菌的情况下仍然是颗粒EPS的主要成分。在第二种污泥中,最初不包含形成凝胶的胞外多糖的絮状污泥也富集了竞争杆菌。在这种污泥中,检测到粒径的增加与EPS产量的增加相吻合。 NMR光谱证实其收率增加归因于这种形成结构凝胶的胞外多糖的产生。结果表明(1)先前确定的特定的凝胶形成性外多糖不一定对所有颗粒类型都是关键的结构外多糖,并且(2)该外多糖的合成是在有利于竞争杆菌选择性富集的条件下诱导的。这表明竞争杆菌可能参与其生产。

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