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Accessing the Black Box of Microbial Diversity and Ecophysiology: Recent Advances Through Polyphasic Experiments

机译:进入微生物多样性和生态生理学的黑匣子:通过多相实验的最新进展

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The microbial ecology of a range of anaerobic biological assemblages (granular sludge) from full- and laboratory-scale wastewater treatment bioreactors, and of crop-growing and peat soils, was determined using a variety of 16S rRNA gene-based techniques, including clone library, terminal restriction fragment length polymorphism (TRFLP) and denaturing gradient gel electrophoresis (DGGE) analyses. Fluorescent in situ hybridization (FISH) using 16S rRNA gene-targeted probes was employed to complete a "full-cycle rRNA approach" with selected biomass. Genetic fingerprinting (TRFLP and DGGE) was effectively used to elucidate community structure-crop relationships, and to detect and monitor trends in bioreactor sludge and specific enrichment cultures of peat soil. Greater diversity was resolved within bacterial than within archaeal communities, and unexpected reservoirs of uncultured Crenarchaeota were detected in sludge granules. Advanced radiotracer incubations and micro-beta imaging were employed in conjunction with FISH to elucidate the eco-functionalism of these organisms. Crenarchaeota clusters were identified in close associated with methanogenic Archaea and both were localised with acetate uptake in biofilm structure.
机译:使用多种基于16S rRNA基因的技术(包括克隆文库)确定了来自全规模和实验室规模废水处理生物反应器以及作物生长土壤和泥炭土壤的一系列厌氧生物组合物(颗粒污泥)的微生物生态学,末端限制性片段长度多态性(TRFLP)和变性梯度凝胶电泳(DGGE)分析。使用16S rRNA基因靶向探针进行荧光原位杂交(FISH),以完成具有选定生物量的“全周期rRNA方法”。基因指纹图谱(TRFLP和DGGE)被有效地用于阐明群落结构与作物的关系,并检测和监测生物反应器污泥和泥炭土壤特定富集培养的趋势。在细菌内部比在古细菌群落中解决了更大的多样性,并且在污泥颗粒中发现了未培养的Crenarchaeota的意想不到的储层。先进的放射性示踪剂培养和微β成像与FISH结合使用,阐明了这些生物的生态功能。 Crenarchaeota集群被发现与产甲烷古生菌密切相关,并且都定位在生物膜结构中被乙酸吸收。

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