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Custom Matrix-Assisted Laser Desorption Ionization–Time of Flight Mass Spectrometric Database for Identification of Environmental Isolates of the Genus Burkholderia and Related Genera

机译:自定义矩阵辅助激光解吸电离 - 飞行质谱数据库,用于鉴定伯克德列利亚属的环境分离物和相关属的环境分离物

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Success of discovery programs for microbial natural products is dependent on quick and concise discrimination between isolates from diverse environments. However, laboratory isolation and identification of priority genera using current 16S rRNA PCR-based methods are both challenging and time-consuming. An emerging strategy for rapid isolate discrimination is protein fingerprinting via matrix-assisted laser desorption ionization (MALDI) mass spectrometry. Using our in-house environmental isolate repository, we have created a main spectral (MSP) library for the Bruker Biotyper MALDI mass spectrometer that contains 95 entries, including Burkholderia, Caballeronia , Paraburkholderia , and other environmentally related genera. The library creation required the acquisition of over 2,250 mass spectra, which were manually reviewed for quality control and consolidated into a single reference library using a commercial software platform. We tested the effectiveness of the reference library by analyzing 49 environmental isolate strains using two different sample preparation methods. Overall, this approach correctly identified all strains to the genus level provided that suitable reference spectra were present in the MSP library. In this study, we present a fast, accurate method for taxonomic assignment of environmentally derived bacteria from the order Burkholderiales , providing a valuable alternative to traditional PCR-based methods. The MSP library described in the manuscript is available for use.IMPORTANCE The Gram-negative proteobacterial order Burkholderiales has emerged as a promising source of novel natural products in recent years. This order includes the genus Burkholderia and the newly defined genera Caballeronia and Paraburkholderia . However, development of this resource has been hampered by difficulties with rapid and selective isolation of Burkholderiales strains from the environment. Environmental metagenome sequencing has revealed that the potential for natural products is not evenly distributed throughout the microbial world. Thus, large but targeted microbial isolate libraries are needed to effectively explore the chemical potential of natural products. To study these organisms efficiently, methods to quickly identify isolates to the genus level are required. Matrix-assisted laser desorption ionization–time of flight mass spectrometry (MALDI-TOF MS) is already used in clinical settings to reliably identify unknown bacterial pathogens. We have adapted similar methodology using the MALDI Biotyper instrument to rapidly identify environmental isolates of Burkholderia , Caballeronia , and Paraburkholderia for downstream natural product discovery.
机译:微生物天然产品的发现程序的成功取决于来自不同环境的分离株之间的快速和简洁的歧视。然而,使用电流16s RRNA PCR的方法实验室分离和优先识别基于基于的方法是挑战性和耗时的。快速隔离鉴别的新出现策略是通过基质辅助激光解吸电离(MALDI)质谱法的蛋白质指纹识别。使用我们的内部环境隔离存储库,我们为Bruker Biotyper Maldi质谱仪创建了一个主要的光谱(MSP)库,其中包含95个条目,包括Burkholderia,Caballeronia,Paraburkholderia和其他环保相关的属。图书馆创建需要采集超过2,250个质量谱,这是手动审查质量控制并使用商业软件平台巩固到单个参考文库中。我们通过使用两种不同的样品制备方法分析49个环境分离菌株来测试参考文库的有效性。总体而言,该方法将所有菌株正确鉴定到属级别的所有菌株,条件是在MSP库中存在合适的参考光谱。在这项研究中,我们向订单Burkhoders提供了一种快速,准确的方法,用于来自订单Burkhoders的环境衍生细菌的分类分配,为传统的PCR的方法提供有价值的替代品。稿件中描述的MSP库可供使用。以近年来,革兰阴性植物秩序伯克德列利斯被出现为近年来新型天然产品的有前途的来源。该命令包括Burkowneria Genus和新定义的属Caballeronia和Paraburkowneria。然而,这种资源的发展受到困难和选择性地孤立于环境的伯克德列卡斯菌株的困难。环境偏见测序透露,天然产品的潜力均匀地分布在整个微生物世界中。因此,需要大但靶向微生物分离物文库,以有效地探索天然产物的化学潜力。为了有效地研究这些生物,需要快速识别与属级别的分离物的方法。基质辅助激光解吸电离 - 飞行质谱(MALDI-TOF MS)已经用于临床环境中以可靠地识别未知的细菌病原体。我们使用MALDI Biotyper仪器改编了类似的方法,以便快速识别Burkholderia,Caballeronia和Paraburkowneria的环境分离物,用于下游天然产品发现。

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