State Key Program of Microbiology and Department of Microbiology, College of Life Sciences, Nankai University, Tianjin 300071, China.
Sci China Life Sci. 2012 Dec;55(12):1100-8. doi: 10.1007/s11427-012-4409-5. Epub 2012 Dec 12.
Chaetomium globosum is one of the most common fungi in nature. It is best known for producing chaetoglobosins; however, the molecular basis of chaetoglobosin biosynthesis is poorly understood in this fungus. In this study, we utilized RNA interference (RNAi) to characterize a polyketide synthase gene, pks-1, in C. globosum that is involved in the production of chaetoglobosin A. When pks-1 was knocked down by RNAi, the production of chaetoglobosin A dramatically decreased. Knock-down mutants also displayed a pigment-deficient phenotype. These results suggest that the two polyketides, melanin and chaetoglobosin, are likely to share common biosynthetic steps. Most importantly, we found that pks-1 also plays a critical role in sporulation. The silenced mutants of pks-1 lost the ability to produce spores. We propose that polyketides may modulate cellular development via an unidentified action. We also suggest that C. globosum pks-1 is unique because of its triple role in melanin formation, chaetoglobosin biosynthesis and sporulation. This work may shed light on chaetoglobosin biosynthesis and indicates a relationship between secondary metabolism and fungal morphogenesis.
球毛壳菌是自然界中最常见的真菌之一。它以产生 chaetoglobosins 而闻名;然而,这种真菌中 chaetoglobosin 生物合成的分子基础还了解甚少。在这项研究中,我们利用 RNA 干扰 (RNAi) 来表征参与 chaetoglobosin A 产生的多酮合酶基因 pks-1 在 C. globosum 中的作用。当 pks-1 被 RNAi 敲低时,chaetoglobosin A 的产量显著下降。敲低突变体也表现出色素缺陷表型。这些结果表明,两种聚酮类化合物,黑色素和 chaetoglobosin,可能具有共同的生物合成步骤。最重要的是,我们发现 pks-1 也在孢子形成中起着关键作用。pks-1 的沉默突变体丧失了产生孢子的能力。我们提出,聚酮类化合物可能通过未知的作用来调节细胞发育。我们还表明,由于其在黑色素形成、chaetoglobosin 生物合成和孢子形成中的三重作用,C. globosum pks-1 是独特的。这项工作可能有助于揭示 chaetoglobosin 生物合成,并表明次生代谢物与真菌形态发生之间存在关系。