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Non-destructive sampling of rock-dwelling microbial communities using sterile adhesive tape ud

机译:使用无菌胶带对岩石微生物群落进行无损取样

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摘要

Building stone provides a habitat for an array of microorganisms, many of which have been demonstrated to have a deleterious effect on the appearance and/or structural integrity of stone masonry. It is essential to understand the composition and structure of stone-dwelling (lithobiontic) microbial communities if successful stone conservation strategies are to be applied, particularly in the face of global environmental change. Ideally, the techniques used to sample such assemblages should be non-destructive due to the sensitive conservation status of many stone buildings. This paper quantitatively assesses the performance of sterile adhesive tape as a non-destructive sampling technique and compares the results of tape sampling with an alternative, destructive, sampling method. We used DNA fingerprinting (TRFLP) to characterise the algal, fungal and bacterial communities living on a stone slab. Our results demonstrate that tape sampling may be used to collect viable quantities of microbial DNA from environmental samples. This technique is ideally suited to the sampling of microbial biofilms, particularly when these communities are dominated by green algae. It provides a good approximation of total community diversity (i.e. the aggregate diversity of epilithic and endolithic communities). Tape sampling is straightforward, rapid and cost effective. When combined with molecular analytical techniques, this sampling method has the potential to make a major contribution to efforts to understand the structure of lithobiontic microbial communities and our ability to predict the response of such communities to future environmental change.
机译:建筑石材为一系列微生物提供了栖息地,其中许多微生物已被证明对石材的外观和/或结构完整性具有有害影响。如果要应用成功的石材保护策略,尤其是面对全球环境变化,必须了解居住在石头上的(锂离子)微生物群落的组成和结构。理想情况下,由于许多石材建筑的保护状况敏感,因此用于采样此类组合物的技术应该是非破坏性的。本文定量评估了无菌胶带作为一种非破坏性采样技术的性能,并将磁带采样结果与另一种破坏性采样方法进行了比较。我们使用DNA指纹(TRFLP)来表征生活在石板上的藻类,真菌和细菌群落。我们的结果表明,胶带采样可用于从环境样品中收集可行数量的微生物DNA。这项技术非常适合微生物膜的采样,尤其是当这些群落以绿藻为主时。它提供了总体群落多样性的很好的近似值(即上石器和内石器群落的总体多样性)。磁带采样简单,快速且具有成本效益。当与分子分析技术结合使用时,这种采样方法有可能对理解结石微生物群落的结构以及我们预测此类群落对未来环境变化的反应做出重大贡献。

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