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Characterization of extracellular polymeric substances in the biofilms of typical bacteria by the sulfur K-edge XANES spectroscopy
Authors:Huirong Lin  Chengsong Ye  Lu Lv  Clark Renjun Zheng  Shenghua Zhang  Lei Zheng  Yidong Zhao and Xin Yu
Institution:Institute of Urban Environment, Chinese Academy of Science, Xiamen 361021, China;Institute of Urban Environment, Chinese Academy of Science, Xiamen 361021, China;Institute of Urban Environment, Chinese Academy of Science, Xiamen 361021, China;Beijing No. 4 High School, Beijing 100034, China;Institute of Urban Environment, Chinese Academy of Science, Xiamen 361021, China;Institute of High Energy Physics, Chinese Academy of Science, Beijing Synchrotron Radiation Facility, Beijing 100049, China;Institute of High Energy Physics, Chinese Academy of Science, Beijing Synchrotron Radiation Facility, Beijing 100049, China;Institute of Urban Environment, Chinese Academy of Science, Xiamen 361021, China
Abstract:A combined approach of physicochemical extraction and sulfur K-edge X-ray absorption near-edge structure (XANES) spectroscopy was applied to characterize the extracellular polymeric substances (EPS) of typical bacterial biofilms in this study. Physicochemical analysis showed variation of the contents of DNA, polysaccharide and protein in different fractions of EPS in different mediums. The sulfur K-edge XANES analysis yielded a variety of spectra. Spectral fitting of the XANES spectra utilizing a large set of model compounds showed that there was more reduced sulfur in both LB-EPS (loosely bound EPS) and TB-EPS (tightly bound EPS) of all the biofilms in LBmediumthan in R2Amedium. More oxidized sulfur was identified in LB-EPS than that in TB-EPS, suggesting different niches and physiological heterogeneity in the biofilms. Our results suggested that the sulfur K-edgeXANES can be a useful tool to analyze the sulfur speciation in EPS of biofilms.
Keywords:Biofilms  Characterization  EPS  Sulfur  XANES
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