Área de Bioquímica y Biología Molecular, Departamento de Biología Molecular, Facultad de Veterinaria, Universidad de León, León, Spain; Instituto de Biología Molecular, Genómica y Proteómica (INBIOMIC), Universidad de León, León, Spain.
Área de Bioquímica y Biología Molecular, Departamento de Biotecnología y Ciencia de los Alimentos, Facultad de Ciencias, Universidad de Burgos, Burgos, Spain.
Adv Appl Microbiol. 2024;127:143-221. doi: 10.1016/bs.aambs.2024.02.006. Epub 2024 Apr 16.
Almost one century after the Sir Alexander Fleming's fortuitous discovery of penicillin and the identification of the fungal producer as Penicillium notatum, later Penicillium chrysogenum (currently reidentified as Penicillium rubens), the molecular mechanisms behind the massive production of penicillin titers by industrial strains could be considered almost fully characterized. However, this filamentous fungus is not only circumscribed to penicillin, and instead, it seems to be full of surprises, thereby producing important metabolites and providing expanded biotechnological applications. This review, in addition to summarizing the classical role of P. chrysogenum as penicillin producer, highlights its ability to generate an array of additional bioactive secondary metabolites and enzymes, together with the use of this microorganism in relevant biotechnological processes, such as bioremediation, biocontrol, production of bioactive nanoparticles and compounds with pharmaceutical interest, revalorization of agricultural and food-derived wastes or the enhancement of food industrial processes and the agricultural production.
在亚历山大·弗莱明爵士偶然发现青霉素并确定真菌生产者为青霉属 notatum(后更名为产黄青霉,现重新鉴定为红青霉)将近一个世纪之后,工业菌株大规模生产青霉素效价的分子机制几乎可以说是已经完全阐明。然而,这种丝状真菌不仅限于生产青霉素,相反,它似乎充满了惊喜,从而产生了重要的代谢产物,并提供了扩展的生物技术应用。除了总结产黄青霉作为青霉素生产者的经典作用外,本文还强调了它产生一系列其他生物活性次级代谢物和酶的能力,以及该微生物在相关生物技术过程中的应用,如生物修复、生物防治、生产具有生物活性的纳米粒子和具有药物应用价值的化合物、农业和食品衍生废物的再利用,以及增强食品工业过程和农业生产。