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Large-scale reduction of the Bacillus subtilis genome: consequences for the transcriptional network resource allocation and metabolism

机译:枯草芽孢杆菌基因组的大规模减少:对转录网络资源分配和代谢的影响

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摘要

Understanding cellular life requires a comprehensive knowledge of the essential cellular functions, the components involved, and their interactions. Minimized genomes are an important tool to gain this knowledge. We have constructed strains of the model bacterium, Bacillus subtilis, whose genomes have been reduced by ∼36%. These strains are fully viable, and their growth rates in complex medium are comparable to those of wild type strains. An in-depth multi-omics analysis of the genome reduced strains revealed how the deletions affect the transcription regulatory network of the cell, translation resource allocation, and metabolism. A comparison of gene counts and resource allocation demonstrates drastic differences in the two parameters, with 50% of the genes using as little as 10% of translation capacity, whereas the 6% essential genes require 57% of the translation resources. Taken together, the results are a valuable resource on gene dispensability in B. subtilis, and they suggest the roads to further genome reduction to approach the final aim of a minimal cell in which all functions are understood.
机译:了解细胞生命需要对细胞的基本功能,涉及的组件及其相互作用有全面的了解。最小化的基因组是获得此知识的重要工具。我们构建了模型细菌枯草芽孢杆菌的菌株,其基因组减少了约36%。这些菌株是完全可行的,并且它们在复杂培养基中的生长速率与野生型菌株相当。对基因组还原菌株的深入多组学分析揭示了缺失如何影响细胞的转录调控网络,翻译资源分配和代谢。基因计数和资源分配的比较表明,这两个参数存在巨大差异,其中50%的基因使用的翻译能力仅为10%,而6%的必需基因需要57%的翻译资源。综上所述,这些结果是枯草芽孢杆菌中基因可分配性的宝贵资源,并且它们暗示了进一步减少基因组的途径,以接近了解所有功能的最小细胞的最终目标。

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