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通过温度梯度凝胶电泳(TGGE)和荧光原位杂交(FISH)探究嗜热混合生物浸出培养物中的古菌多样性。

Probing the archaeal diversity of a mixed thermophilic bioleaching culture by TGGE and FISH.

作者信息

Mikkelsen Deirdre, Kappler Ulrike, McEwan Alastair G, Sly Lindsay I

机构信息

Centre for Bacterial Diversity and Identification, School of Chemistry & Molecular Biosciences, The University of Queensland, Brisbane, Qld 4072, Australia.

出版信息

Syst Appl Microbiol. 2009 Oct;32(7):501-13. doi: 10.1016/j.syapm.2009.06.001. Epub 2009 Jun 21.

Abstract

The archaeal community present in a sample of Mixed Thermophilic Culture-B (MTC-B) from a laboratory-scale thermophilic bioleaching reactor was investigated by temperature gradient gel electrophoresis (TGGE) and fluorescence in situ hybridisation (FISH). Both techniques were specifically adapted for use on native state bioleaching samples, with a view to establishing convenient means for monitoring culture composition. Using the TGGE protocol developed, the relative species composition of the thermophilic bioleaching sample was analysed, and included four phylotypes belonging to the Sulfolobales, which were related to Stygiolobus azoricus, Metallosphaera sp. J1, Acidianus infernus and Sulfurisphaera ohwakuensis. However, the St. azoricus-like phylotype was difficult to resolve and some micro-heterogeneity was observed within this phylotype. Specific FISH probes were designed to qualitatively assess the presence of the phylotypes in MTC-B. The sample was dominated by Sf. ohwakuensis-like Archaea. In addition, the St. azoricus-like, Metallosphaera species-like and Acidianus species-like cells appeared in similar low abundance in the community. Most strikingly, FISH identified Sulfolobus shibatae-like cells present in low numbers in the sample even though these were not detected by PCR-dependent TGGE. These results highlight the importance of using more than one molecular technique when investigating the archaeal diversity of complex bioleaching reactor samples.

摘要

通过温度梯度凝胶电泳(TGGE)和荧光原位杂交(FISH)技术,对来自实验室规模嗜热生物浸出反应器的混合嗜热培养物B(MTC - B)样品中的古菌群落进行了研究。这两种技术都经过专门调整,适用于原生状态的生物浸出样品,旨在建立监测培养物组成的便捷方法。利用所开发的TGGE方案,分析了嗜热生物浸出样品的相对物种组成,其中包括属于硫化叶菌目的四个系统型,它们与阿苏尔嗜热硫化叶菌、金属球菌属J1、地狱嗜酸菌和大分硫磺球菌相关。然而,类似阿苏尔嗜热硫化叶菌的系统型难以分辨,并且在该系统型内观察到了一些微观异质性。设计了特异性FISH探针来定性评估MTC - B中系统型细菌的存在。该样品以类似大分硫磺球菌的古菌为主。此外,类似阿苏尔嗜热硫化叶菌、类似金属球菌属物种和类似嗜酸菌属物种的细胞在群落中以相似的低丰度出现。最引人注目的是,FISH鉴定出样品中存在少量类似柴田硫化叶菌的细胞,尽管基于PCR的TGGE未检测到这些细胞。这些结果凸显了在研究复杂生物浸出反应器样品的古菌多样性时使用多种分子技术的重要性。

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