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Silicifying Biofilm Exopolymers on a Hot-Spring Microstromatolite: Templating Nanometer-Thick Laminae

机译:在温泉微叠层硅石上使生物膜外聚合物硅化:对纳米厚的薄片进行模板化

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Exopolymeric substances (EPS) are an integral component of microbial biofilms; however, few studies have addressed their silicification and preservation in hot-spring deposits. Through comparative analyses with the use of a range of microscopy techniques, we identified abundant EPS significant to the textural development of spicular, microstromatolitic, siliceous sinter at Champagne Pool, Waiotapu, New Zealand. Examination of biofilms coating sinter surfaces by confocal laser scanning microscopy (CLSM), environmental scanning electron microscopy (ESEM), cryo-scanning electron microscopy (cryo-SEM), and transmission electron microscopy (TEM) revealed contraction of the gelatinous EPS matrix into films (approximately 10 ran thick) or fibrillar structures, which is common in conventional SEM analyses and analogous to products of naturally occurring desiccation. Silicification of fibrillar EPS contributed to the formation of filamentous sinter. Matrix surfaces or dehydrated films templated sinter laminae (nanometers to microns thick) that, in places, preserved fenestral voids beneath. Laminae of similar thickness are, in general, common to spicular geyserites. This is the first report to demonstrate EPS templation of siliceous stromatolite laminae. Considering the ubiquity of biofilms on surfaces in hot-spring environments, EPS silicification studies are likely to be important to a better understanding of the origins of laminae in other modern and ancient stromatolitic sinters, and EPS potentially may serve as biosignatures in extraterrestrial rocks.
机译:外聚物质(EPS)是微生物生物膜的组成部分。然而,很少有研究针对它们在温泉矿床中的硅化和保存问题。通过使用一系列显微镜技术进行的比较分析,我们在新西兰怀奥塔普的香槟池中发现了丰富的EPS,这些EPS对针状,微基质,硅质烧结矿的组织发展具有重要意义。通过共聚焦激光扫描显微镜(CLSM),环境扫描电子显微镜(ESEM),低温扫描电子显微镜(cryo-SEM)和透射电子显微镜(TEM)对烧结矿表面的生物膜进行检查,发现凝胶状EPS基质收缩成膜。 (大约10纳米厚)或原纤维结构,这在常规SEM分析中很常见,并且类似于自然干燥的产物。丝状EPS的硅化促进了丝状烧结物的形成。基质表面或脱水膜以烧结薄片(纳米至微米厚)为模板,这些薄片在适当位置保留了下方的股骨空隙。通常,类似厚度的薄片通常是针状间歇沸石所共有的。这是第一份证明硅质叠层石薄片EPS模板的报告。考虑到温泉环境中生物膜的普遍存在,EPS硅化研究可能对于更好地了解其他现代和古代叠层烧结矿中薄片的起源很重要,EPS可能在地外岩石中充当生物特征。

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