Department of Genetics, Faculty of Biology, University of Seville, Seville, Spain.
PLoS One. 2012;7(1):e28849. doi: 10.1371/journal.pone.0028849. Epub 2012 Jan 26.
The ascomycete fungus Fusarium fujikuroi (Gibberella fujikuroi MP-C) produces secondary metabolites of biotechnological interest, such as gibberellins, bikaverin, and carotenoids. Production of these metabolites is regulated by nitrogen availability and, in a specific manner, by other environmental signals, such as light in the case of the carotenoid pathway. A complex regulatory network controlling these processes is recently emerging from the alterations of metabolite production found through the mutation of different regulatory genes. Here we show the effect of the targeted mutation of the acyA gene of F. fujikuroi, coding for adenylyl cyclase. Mutants lacking the catalytic domain of the AcyA protein showed different phenotypic alterations, including reduced growth, enhanced production of unidentified red pigments, reduced production of gibberellins and partially derepressed carotenoid biosynthesis in the dark. The phenotype differs in some aspects from that of similar mutants of the close relatives F. proliferatum and F. verticillioides: contrary to what was observed in these species, ΔacyA mutants of F. fujikuroi showed enhanced sensitivity to oxidative stress (H(2)O(2)), but no change in heavy metal resistance or in the ability to colonize tomato tissue, indicating a high versatility in the regulatory roles played by cAMP in this fungal group.
镰孢菌属真菌藤仓赤霉(Gibberella fujikuroi MP-C)会产生具有生物技术应用价值的次生代谢物,如赤霉素、麦角固醇和类胡萝卜素。这些代谢物的生成受到氮源可用性的调控,并且以特定的方式受到其他环境信号的调控,例如在类胡萝卜素生物合成途径中,就受到光的调控。通过改变不同的调控基因来发现代谢物生成的改变,由此构建出一个复杂的调控网络来控制这些过程。本研究展示了靶向敲除藤仓赤霉菌 acyA 基因(编码腺苷酸环化酶)的效果。缺乏 AcyA 蛋白催化结构域的突变体表现出不同的表型改变,包括生长缓慢、产生的不明红色色素增多、赤霉素产量降低以及黑暗中类胡萝卜素生物合成部分去阻遏。该表型在某些方面与亲缘关系密切的粉红镰刀菌和串珠镰刀菌的类似突变体不同:与在这些物种中观察到的情况相反,藤仓赤霉菌的 ΔacyA 突变体对氧化应激(H₂O₂)的敏感性增强,但对重金属的抗性或侵染番茄组织的能力没有变化,这表明 cAMP 在这个真菌群中的调控作用具有很高的多功能性。