Departamento de Química Orgánica, Facultad de Ciencias, Universidad de Cádiz, 11510 Puerto Real, Cádiz, Spain.
Instituto de Investigación en Biomoléculas (INBIO), Universidad de Cádiz, 11510 Puerto Real, Cádiz, Spain.
Int J Mol Sci. 2024 May 8;25(10):5125. doi: 10.3390/ijms25105125.
The genome sequencing of supplies a general overview of the map of genes involved in secondary metabolite synthesis. genomic data reveals that this phytopathogenic fungus has seven sesquiterpene cyclase () genes that encode proteins involved in the farnesyl diphosphate cyclization. Three sesquiterpene cyclases (BcStc1, BcStc5 and BcStc7) are characterized, related to the biosynthesis of botrydial, abscisic acid and (+)-4-epi-eremophilenol, respectively. However, the role of the other four sesquiterpene cyclases (BcStc2, BcStc3, BcStc4 and BcStc6) remains unknown. BcStc3 is a well-conserved protein with homologues in many fungal species, and here, we undertake its functional characterization in the lifecycle of the fungus. A null mutant Δ and an overexpressed- transformant (Ov) are generated, and both strains show the deregulation of those other sesquiterpene cyclase-encoding genes (, and ). These results suggest a co-regulation of the expression of the sesquiterpene cyclase gene family in . The phenotypic characterization of both transformants reveals that BcStc3 is involved in oxidative stress tolerance, the production of reactive oxygen species and virulence. The metabolomic analysis allows the isolation of characteristic polyketides and eremophilenols from the secondary metabolism of , although no sesquiterpenes different from those already described are identified.
对 基因组测序提供了一个涉及次生代谢物合成的基因图谱的总体概述。该真菌的基因组数据表明,它有七个倍半萜环化酶()基因,这些基因编码参与法呢基二磷酸环化的蛋白质。其中三个倍半萜环化酶(BcStc1、BcStc5 和 BcStc7)被表征,分别与 botrydial、脱落酸和(+)-4-epi-eremophilenol 的生物合成有关。然而,其他四个倍半萜环化酶(BcStc2、BcStc3、BcStc4 和 BcStc6)的作用仍不清楚。BcStc3 是一种保守的蛋白质,在许多真菌物种中都有同源物,在这里,我们对其在真菌生命周期中的功能进行了表征。生成了一个缺失突变体Δ和一个过表达-转化体(Ov),这两种菌株都显示出其他倍半萜环化酶编码基因(、和)的表达失调。这些结果表明,在中,这些倍半萜环化酶基因家族的表达受到共同调控。这两种转化体的表型特征表明,BcStc3 参与氧化应激耐受、活性氧的产生和毒力。代谢组学分析允许从次生代谢产物中分离出特征性的聚酮类化合物和 eremophilenols,尽管没有鉴定出与已描述的不同的倍半萜类化合物。