Engel Annette Summers, Lichtenberg Henning, Prange Alexander, Hormes Josef
Department of Geology and Geophysics, Louisiana State University, Baton Rouge, LA 70803, USA.
FEMS Microbiol Lett. 2007 Apr;269(1):54-62. doi: 10.1111/j.1574-6968.2006.00600.x. Epub 2007 Jan 15.
Most transformations within the sulfur cycle are controlled by the biosphere, and deciphering the abiotic and biotic nature and turnover of sulfur is critical to understand the geochemical and ecological changes that have occurred throughout the Earth's history. Here, synchrotron radiation-based sulfur K-edge X-ray absorption near-edge structure (XANES) spectroscopy is used to examine sulfur speciation in natural microbial mats from two aphotic (cave) settings. Habitat geochemistry, microbial community compositions, and sulfur isotope systematics were also evaluated. Microorganisms associated with sulfur metabolism dominated the mats, including members of the Epsilonproteobacteria and Gammaproteobacteria. These groups have not been examined previously by sulfur K-edge XANES. All of the mats consisted of elemental sulfur, with greater contributions of cyclo-octasulfur (S8) compared with polymeric sulfur (Smicro). While this could be a biological fingerprint for some bacteria, the signature may also indicate preferential oxidation of Smicro and S8 accumulation. Higher sulfate content correlated to less S8 in the presence of Epsilonproteobacteria. Sulfur isotope compositions confirmed that sulfur content and sulfur speciation may not correlate to microbial metabolic processes in natural samples, thereby complicating the interpretation of modern and ancient sulfur records.
硫循环中的大多数转化过程受生物圈控制,解读硫的非生物和生物性质及周转情况对于理解地球历史上发生的地球化学和生态变化至关重要。在此,基于同步辐射的硫K边X射线吸收近边结构(XANES)光谱被用于研究来自两个无光(洞穴)环境的天然微生物席中的硫形态。同时还评估了栖息地地球化学、微生物群落组成和硫同位素体系。与硫代谢相关的微生物在微生物席中占主导地位,包括埃普西隆变形菌纲和γ变形菌纲的成员。此前尚未通过硫K边XANES对这些类群进行研究。所有微生物席都含有元素硫,与聚合硫(Smicro)相比,环辛硫(S8)的占比更大。虽然这可能是某些细菌的生物学特征,但该特征也可能表明Smicro被优先氧化以及S8积累。在存在埃普西隆变形菌的情况下,较高的硫酸盐含量与较少的S8相关。硫同位素组成证实,天然样品中的硫含量和硫形态可能与微生物代谢过程无关,从而使对现代和古代硫记录的解读变得复杂。