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ARTIST: High-Resolution Genome-Wide Assessment of Fitness Using Transposon-Insertion Sequencing

机译:艺术家:使用转座子插入测序技术进行全基因组的高分辨率全能评估

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摘要

Transposon-insertion sequencing (TIS) is a powerful approach for deciphering genetic requirements for bacterial growth in different conditions, as it enables simultaneous genome-wide analysis of the fitness of thousands of mutants. However, current methods for comparative analysis of TIS data do not adjust for stochastic experimental variation between datasets and are limited to interrogation of annotated genomic elements. Here, we present ARTIST, an accessible TIS analysis pipeline for identifying essential regions that are required for growth under optimal conditions as well as conditionally essential loci that participate in survival only under specific conditions. ARTIST uses simulation-based normalization to model and compensate for experimental noise, and thereby enhances the statistical power in conditional TIS analyses. ARTIST also employs a novel adaptation of the hidden Markov model to generate statistically robust, high-resolution, annotation-independent maps of fitness-linked loci across the entire genome. Using ARTIST, we sensitively and comprehensively define Mycobacterium tuberculosis and Vibrio cholerae loci required for host infection while limiting inclusion of false positive loci. ARTIST is applicable to a broad range of organisms and will facilitate TIS-based dissection of pathways required for microbial growth and survival under a multitude of conditions.
机译:转座子插入测序(TIS)是一种强大的方法,可用于解释不同条件下细菌生长的遗传要求,因为它能够同时对数千种突变体的适应性进行全基因组分析。但是,目前用于TIS数据比较分析的方法无法适应数据集之间的随机实验差异,并且仅限于对带注释的基因组元素的询问。在这里,我们介绍ARTIST,这是一种可访问的TIS分析管道,用于识别在最佳条件下生长所需的必需区域以及仅在特定条件下才参与生存的有条件必需基因座。 ARTIST使用基于仿真的归一化来建模和补偿实验噪声,从而增强了条件TIS分析的统计能力。 ARTIST还采用了隐式马尔可夫模型的新颖改编,以生成在整个基因组中统计相关的基因座的统计稳健,高分辨率,不依赖注释的图。使用ARTIST,我们可以灵敏而全面地定义宿主感染所需的结核分枝杆菌和霍乱弧菌基因座,同时限制假阳性基因座的包含。 ARTIST适用于广泛的生物体,将有助于在多种条件下基于TIS的微生物生长和生存所需的途径进行解剖。

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