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Harnessing microfluidic streak plate technique to investigate the gut microbiome of Reticulitermes chinensis

机译:利用微流控条纹板技术研究中国网纹菌的肠道微生物组

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摘要

The termite gut microbiome is a model system to investigate microbial interactions and their associations with host. For decades, extensive research with molecular tools and conventional cultivation method has been carried out to define the microbial diversity in termite gut. Yet, many bacterial groups of the termite gut microbiome have not been successfully cultivated in laboratory. In this study, we adapted the recently developed microfluidic streak plate (MSP) technique for cultivation of termite gut microbial communities at both aerobic and anaerobic conditions. We found that 99 operational taxonomic units (OTUs) were cultivable by MSP approach and 18 OTUs were documented first time for termite gut microbiota. Further analysis of the bacterial diversities derived by culture‐dependent MSP approach and culture‐independent 16S rRNA gene typing revealed that both methods have bias in recovery of gut microbiota. In total 396 strains were isolated with MSP technique, and potential new taxa at species and/or genus levels were obtained that were phylogenetically related to Burkholderia, Micrococcus, and Dysgonomonas. Results from this study indicate that MSP technique is applicable for cultivating previously unknown and new microbial groups of termite gut microbiota.
机译:白蚁肠道微生物组是研究微生物相互作用及其与宿主的关联的模型系统。数十年来,利用分子工具和常规耕种方法进行了广泛的研究,以确定白蚁肠道中的微生物多样性。然而,白蚁肠道微生物组的许多细菌种类尚未在实验室中成功培养。在这项研究中,我们将最近开发的微流控条纹板(MSP)技术用于在有氧和厌氧条件下培养白蚁肠道微生物群落。我们发现可以通过MSP方法培养99个可操作的生物分类单位(OTU),并且首次有18个OTU被记录为白蚁肠道菌群。对依赖于培养物的MSP方法和不依赖培养物的16S rRNA基因分型产生的细菌多样性的进一步分析表明,这两种方法在肠道菌群的恢复中均存在偏差。 MSP技术共分离出396株,并获得了与伯克霍尔德菌,微球菌和dysgonomonas系统发育相关的物种和/或属水平的潜在新分类群。这项研究的结果表明,MSP技术适用于培养白蚁肠道菌群的未知微生物和新微生物。

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