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一个 PKS 基因,pks-1,参与了 Chaetomium globosum 中 chaetoglobosin 的生物合成、色素形成和孢子形成。

A PKS gene, pks-1, is involved in chaetoglobosin biosynthesis, pigmentation and sporulation in Chaetomium globosum.

机构信息

State Key Program of Microbiology and Department of Microbiology, College of Life Sciences, Nankai University, Tianjin 300071, China.

出版信息

Sci China Life Sci. 2012 Dec;55(12):1100-8. doi: 10.1007/s11427-012-4409-5. Epub 2012 Dec 12.

Abstract

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.

摘要

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。

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