通过特定转录因子激活黑曲霉次生代谢的全球调查。

IF 3.8 Q2 MULTIDISCIPLINARY SCIENCES
PNAS nexus Pub Date : 2025-08-08 eCollection Date: 2025-08-01 DOI:10.1093/pnasnexus/pgaf249
Cameron Semper, Thi Thanh My Pham, Shane Ram, Sylvester Palys, Gregory Evdokias, Jean-Paul Ouedraogo, Marie-Claude Moisan, Nicholas Geoffrion, Ian Reid, Marcos Di Falco, Zachary Bailey, Adrian Tsang, Isabelle Benoit-Gelber, Alexei Savchenko
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引用次数: 0

摘要

基因组学分析证实了丝状真菌作为新型次生代谢物的丰富来源的地位;然而,这些化合物的发现受到其在实验室条件下生物合成途径的隐蔽性的阻碍。因此,尽管在过去的几十年里进行了大量的研究,许多次生代谢组在真菌生物中仍未被表征。我们对黑曲霉NRRL3基因组中生物合成基因簇(BGCs)的人工管理显示,86个BGCs中只有13个被确认或可靠地推断出其同源次生代谢物产物。我们还发现了60个与隐藏性bgc相关的转录因子(TFs)。为了进一步表征黑曲霉的次生代谢,我们创建了一个菌株集合,每个菌株都过表达一个bgc相关的TF。我们使用标准化管道分析菌株收集,使用质谱法监测表型变化和化合物生产。选择具有次生代谢激活证据的菌株进行基因表达分析。我们的方法导致了多种潜在的新型次级代谢物的产生,并将一种特定的BGC与黑曲霉中张力醇的产生联系起来。更广泛地说,本研究发现的证据与现有的BGC表达由共定位tf控制的范式相反,为真菌次级代谢的复杂调控网络的新兴图景提供了证据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Global survey of secondary metabolism in <i>Aspergillus niger</i> via activation of specific transcription factors.

Global survey of secondary metabolism in <i>Aspergillus niger</i> via activation of specific transcription factors.

Global survey of secondary metabolism in <i>Aspergillus niger</i> via activation of specific transcription factors.

Global survey of secondary metabolism in Aspergillus niger via activation of specific transcription factors.

Genomics analysis confirmed the status of filamentous fungi as a rich source of novel secondary metabolites; however, the discovery of these compounds is hampered by the cryptic nature of their biosynthetic pathways under laboratory conditions. Consequently, despite substantial research effort over the past decades, much of the secondary metabolome remains uncharacterized in fungal organisms. Our manual curation of biosynthetic gene clusters (BGCs) in the Aspergillus niger NRRL3 genome revealed that only 13 of 86 BGCs have had their cognate secondary metabolite products confirmed or reliably inferred. We also identified 60 transcription factors (TFs) associated with cryptic BGCs. To further characterize A. niger secondary metabolism, we created a collection of strains each overexpressing a single BGC-associated TF. We analyzed the strain collection using a standardized pipeline where we monitored phenotypic changes and compound production using mass spectrometry. Strains showing evidence of secondary metabolism activation were selected for gene expression analysis. Our approach resulted in the production of multiple potentially novel secondary metabolites and linked a specific BGC to tensidol production in A. niger. More broadly, this study found evidence counter to the existing paradigm of BGC expression controlled by colocalized TFs, lending credence to the emerging picture of a complex regulatory network governing fungal secondary metabolism.

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