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Raman spectroscopic and laser scanning confocal microscopic analysis of sulfur in living sulfur-precipitating marine bacteria

机译:拉曼光谱和激光扫描共聚焦显微镜分析活沉淀硫的海洋细菌中的硫

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摘要

Laser Raman microprobe spectroscopy and laser scanning confocal microscopy were used to determine the presence and speciation of sulfur in sulfur-oxidizing, marine bacteria from Monterey Bay, CA. The bacteria studied include: large, filamentous Thioploca and Beggiatoa, endosymbionts in the vesicomyid clam Calyptogena kilmeri, and a filamentous bacterium of undetermined species. All of these bacteria were shown spectroscopically to store elemental sulfur in submicrometer to several micrometer diameter vesicles. More detailed Raman spectroscopic study of the vesicles in Thioploca and Beggiatoa provided further chemical and structural characterization of the elemental sulfur. The sulfur is bonded in the common, stable S. ring configuration and is of an extremely fine-grained microcrystalline form. No additional (organo) sulfur compounds were detected spectroscopically in the vesicles under the low laser powers required to preserve the molecular structure of the sulfur. The present spectroscopic and optical data stand in contrast to reports and inferences of liquid-like elemental sulfur or homogeneous, complex sulfur compounds in other sulfur-oxidizing bacteria. The findings of this study are compatible with a model of sulfur vesicles as dominated by microcrystalline solid elemental sulfur, perhaps embedded in a matrix and/or confining membrane of organic material. The high reactivity and solubility observed in these vesicles is attributed to the extremely fine grain size of the solid elemental sulfur. (C) 2001 Elsevier Science B.V. All rights reserved. [References: 36]
机译:使用激光拉曼显微探针光谱法和激光扫描共聚焦显微镜确定加利福尼亚州蒙特雷湾的硫氧化海洋细菌中硫的存在和形态。所研究的细菌包括:大型丝状硫霉菌和Beggiatoa,囊泡蛤仔Calyptogena kilmeri中的共生菌和未定种的丝状细菌。光谱显示所有这些细菌在亚微米至数微米直径的囊泡中储存元素硫。硫柳和贝吉托亚中囊泡的更详细的拉曼光谱研究提供了元素硫的进一步化学和结构表征。硫以常见的,稳定的S.环构型键合,并且具有极细的微晶形式。在保持硫的分子结构所需的低激光功率下,在囊泡中未在光谱上检测到其他(有机)硫化合物。本光谱学和光学数据与其他硫氧化细菌中液体状元素硫或均质,复杂的硫化合物的报道和推论相反。这项研究的发现与以微晶固体元素硫为主的硫囊泡模型兼容,该模型可能嵌入有机材料的基质和/或封闭膜中。在这些囊泡中观察到的高反应性和溶解性归因于固体元素硫的极细晶粒尺寸。 (C)2001 Elsevier Science B.V.保留所有权利。 [参考:36]

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