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交替生理条件下铜绿假单胞菌的转录组指纹图谱。

Transcriptomic fingerprinting of Pseudomonas putida under alternative physiological regimes.

机构信息

Systems Biology Program, Centro Nacional de Biotecnología CSIC, Cantoblanco-Madrid, 28049, Spain.

出版信息

Environ Microbiol Rep. 2013 Dec;5(6):883-91. doi: 10.1111/1758-2229.12090. Epub 2013 Sep 5.

Abstract

Pseudomonas putida KT2440 is a metabolically versatile soil bacterium useful both as a model biodegradative organism and as a host of catalytic activities of biotechnological interest. In this report, we present the high-resolution transcriptome of P. putida cultured on different carbon sources as revealed by deep sequencing of the corresponding RNA pools. Examination of the data from growth on substrates that are processed through distinct pathways (glucose, fructose, succinate and glycerol) revealed that ≥ 20% of the P. putida genome is differentially expressed depending on the ensuing physiological regime. Changes affected not only metabolic genes but also a suite of global regulators, e.g. the rpoS sigma subunit of RNA polymerase, various cold-shock proteins and the three HU histone-like proteins. Specifically, the genes encoding HU subunit variants hupA, hupB and hupN drastically altered their expression levels (and thus their ability to form heterodimeric combinations) under the diverse growth conditions. Furthermore, we found that two small RNAs, crcZ and crcY, known to inhibit the Crc protein that mediates catabolite repression in P. putida, were both down-regulated by glucose. The raw transcriptomic data generated in this work is made available to the community through the Gene Expression Omnibus database.

摘要

恶臭假单胞菌 KT2440 是一种代谢功能多样的土壤细菌,不仅可用作生物降解模型生物,还可用作具有生物技术应用价值的催化活性的宿主。在本报告中,我们通过对相应 RNA 池进行深度测序,展示了恶臭假单胞菌在不同碳源上培养时的高分辨率转录组。对通过不同途径(葡萄糖、果糖、琥珀酸盐和甘油)处理的底物进行生长的数据分析表明,≥20%的恶臭假单胞菌基因组的表达随后续生理状态而变化。变化不仅影响代谢基因,还影响了一系列全局调控因子,例如 RNA 聚合酶的 rpoS σ亚基、各种冷休克蛋白和三种 HU 组蛋白样蛋白。具体而言,编码 HU 亚基变体 hupA、hupB 和 hupN 的基因在不同的生长条件下其表达水平(以及形成异二聚体组合的能力)发生了剧烈变化。此外,我们发现两个已知抑制介导恶臭假单胞菌碳分解代谢物阻遏的 Crc 蛋白的小 RNA(crcZ 和 crcY)均受葡萄糖下调。本工作中生成的原始转录组学数据已通过基因表达综合数据库向社区提供。

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