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Transcriptional Map of Respiratory Versatility in the Hyperthermophilic Crenarchaeon Pyrobaculum aerophilum

机译:嗜热嗜热性嗜热菌嗜热热菌的呼吸全能转录图。

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摘要

Hyperthermophilic crenarchaea in the genus Pyrobaculum are notable for respiratory versatility, but relatively little is known about the genetics or regulation of crenarchaeal respiratory pathways. We measured global gene expression in Pyrobaculum aerophilum cultured with oxygen, nitrate, arsenate and ferric iron as terminal electron acceptors to identify transcriptional patterns that differentiate these pathways. We also compared genome sequences for four closely related species with diverse respiratory characteristics (Pyrobaculum arsenaticum, Pyrobaculum calidifontis, Pyrobaculum islandicum, and Thermoproteus neutrophilus) to identify genes associated with different respiratory capabilities. Specific patterns of gene expression in P. aerophilum were associated with aerobic respiration, nitrate respiration, arsenate respiration, and anoxia. Functional predictions based on these patterns include separate cytochrome oxidases for aerobic growth and oxygen scavenging, a nitric oxide-responsive transcriptional regulator, a multicopper oxidase involved in denitrification, and an archaeal arsenate respiratory reductase. We were unable to identify specific genes for iron respiration, but P. aerophilum exhibited repressive transcriptional responses to iron remarkably similar to those controlled by the ferric uptake regulator in bacteria. Together, these analyses present a genome-scale view of crenarchaeal respiratory flexibility and support a large number of functional and regulatory predictions for further investigation. The complete gene expression data set can be viewed in genomic context with the Archaeal Genome Browser at archaea.ucsc.edu.
机译:棒状热菌属中的高温嗜热性克氏菌以呼吸机能性而著称,但对克雷氏菌呼吸途径的遗传学或调控知之甚少。我们测量了用氧,硝酸盐,砷酸盐和三价铁作为末端电子受体培养的嗜热菌中的全球基因表达,以鉴定区分这些途径的转录模式。我们还比较了具有不同呼吸特征的四个密切相关物种的基因组序列(Pyrobaculum arsenaticum,Pyrobaculum calidifontis,Pyrobaculum islandicum和Thermoproteus neutrophilus),以鉴定与不同呼吸能力相关的基因。嗜氧假单胞菌基因表达的特定模式与有氧呼吸,硝酸盐呼吸,砷酸盐呼吸和缺氧有关。基于这些模式的功能预测包括用于有氧生长和除氧的单独细胞色素氧化酶,一氧化氮响应转录调节剂,参与反硝化作用的多铜氧化酶和古生砷酸盐呼吸还原酶。我们无法确定铁呼吸的特定基因,但铜绿假单胞菌对铁表现出抑制性转录反应,与细菌中铁摄取调节剂控制的转录反应非常相似。总之,这些分析提供了颅底呼吸灵活性的基因组尺度视图,并支持大量功能和调节预测,以供进一步研究。完整的基因表达数据集可以通过archaea.ucsc.edu上的Archaeal Genome Browser在基因组环境中查看。

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