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Genome sequencing and analysis of the filamentous fungus Penicillium chrysogenum

机译:丝状真菌产黄青霉的基因组测序与分析

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摘要

Industrial penicillin production with the filamentous fungus Penicillium chrysogenum is based on an unprecedented effort in microbial strain improvement. To gain more insight into penicillin synthesis, we sequenced the 32.19 Mb genome of P. chrysogenum Wisconsin54-1255 and identified numerous genes responsible for key steps in penicillin production. DNA microarrays were used to compare the transcriptomes of the sequenced strain and a penicillinG high-producing strain, grown in the presence and absence of the side-chain precursor phenylacetic acid. Transcription of genes involved in biosynthesis of valine, cysteine and alpha-aminoadipic acid -precursors for penicillin biosynthesis-as well as of genes encoding microbody proteins, was increased in the high-producing strain. Some gene products were shown to be directly controlling beta-lactam output. Many key cellular transport processes involving penicillins and intermediates remain to be characterized at the molecular level. Genes predicted to encode transporters were strongly overrepresented among the genes transcriptionally upregulated under conditions that stimulate penicillinG production, illustrating potential for future genomics-driven metabolic engineering.
机译:用丝状真菌产黄青霉生产青霉素是基于对微生物菌株改良的前所未有的努力。为了更深入地了解青霉素的合成,我们对了维氏菌威斯康星州54-1255的P. chrysogenum Wisconsin54-1255的32.19 Mb基因组进行了测序,并鉴定了许多导致青霉素生产关键步骤的基因。使用DNA微阵列比较测序菌株和在有和没有侧链前体苯乙酸存在下生长的青霉素G高产菌株的转录组。在高产菌株中,涉及缬氨酸,半胱氨酸和α-氨基己二酸生物合成的基因(青霉素生物合成的前体)以及编码微体蛋白的基因的转录增加了。一些基因产物显示出直接控制β-内酰胺输出。许多涉及青霉素和中间体的关键细胞转运过程仍有待在分子水平上表征。预测编码转运蛋白的基因在刺激青霉素G产生的条件下在转录上调的基因中明显过量表达,说明了未来由基因组学驱动的代谢工程的潜力。

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