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High-Throughput Identification and Screening of Novel Methylobacterium Species Using Whole-Cell MALDI-TOF/MS Analysis

机译:使用全细胞MALDI-TOF / MS分析进行高通量鉴定和筛选新型甲基杆菌

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摘要

Methylobacterium species are ubiquitous α-proteobacteria that reside in the phyllosphere and are fed by methanol that is emitted from plants. In this study, we applied whole-cell matrix-assisted laser desorption/ionization time-of-flight mass spectrometry analysis (WC-MS) to evaluate the diversity of Methylobacterium species collected from a variety of plants. The WC-MS spectrum was reproducible through two weeks of cultivation on different media. WC-MS spectrum peaks of M. extorquens strain AM1 cells were attributed to ribosomal proteins, but those were not were also found. We developed a simple method for rapid identification based on spectra similarity. Using all available type strains of Methylobacterium species, the method provided a certain threshold similarity value for species-level discrimination, although the genus contains some type strains that could not be easily discriminated solely by 16S rRNA gene sequence similarity. Next, we evaluated the WC-MS data of approximately 200 methylotrophs isolated from various plants with MALDI Biotyper software (Bruker Daltonics). Isolates representing each cluster were further identified by 16S rRNA gene sequencing. In most cases, the identification by WC-MS matched that by sequencing, and isolates with unique spectra represented possible novel species. The strains belonging to M. extorquens, M. adhaesivum, M. marchantiae, M. komagatae, M. brachiatum, M. radiotolerans, and novel lineages close to M. adhaesivum, many of which were isolated from bryophytes, were found to be the most frequent phyllospheric colonizers. The WC-MS technique provides emerging high-throughputness in the identification of known/novel species of bacteria, enabling the selection of novel species in a library and identification without 16S rRNA gene sequencing.
机译:甲基杆菌属物种是存在于叶球中的普遍存在的α-变形杆菌,由植物排放的甲醇喂养。在这项研究中,我们应用了全细胞基质辅助激光解吸/电离飞行时间质谱分析(WC-MS)来评估从多种植物中收集到的甲基杆菌物种的多样性。通过在不同培养基上培养两周可以再现WC-MS光谱。 M. extorquens菌株AM1细胞的WC-MS谱峰归因于核糖体蛋白,但未发现。我们开发了一种基于光谱相似度的快速识别方法。尽管该属中包含某些类型的菌株,这些菌株不能仅通过16S rRNA基因序列相似性轻易区分,但使用所有可用的甲基杆菌属类型菌株,该方法为物种水平判别提供了一定的阈值相似性值。接下来,我们使用MALDI Biotyper软件(布鲁克·道尔顿公司)评估了从各种植物中分离出来的大约200种甲基营养菌的WC-MS数据。通过16S rRNA基因测序进一步鉴定代表每个簇的分离株。在大多数情况下,通过WC-MS进行的鉴定与通过测序进行的鉴定相匹配,并且具有独特光谱的分离物代表可能存在的新物种。发现属于强壮芽孢杆菌,adhaesivum,M。marchantiae,komagatae,M。brachiatum,M.raditolerans的菌株,以及接近Adhaesivum的新谱系,其中许多是从苔藓植物中分离出来的。最常见的叶圈定植者。 WC-MS技术在鉴定细菌的已知/新颖物种方面提供了新兴的高通量,从而无需16S rRNA基因测序即可在文库中选择新物种并进行鉴定。

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