Effect of a magnetic field on the production of Monascus pigments and citrinin via regulation of intracellular and extracellular iron content

Yang Yang , Qian Liao , Jialan Zhang , Yingbao Liu , Li Li , Suo Chen , Mengxiang Gao
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Abstract

This study aims to elucidate the influences of magnetic fields (MFs) on the production of Monascus pigments (MPs) and citrinin by modulating both the intracellular and extracellular iron content in Monascus purpureus. The organism was treated with varying concentrations of L-allylglycine (L-AG), along with MFs of different intensities for 2 days during the early fermentation phase, as well as combinations of 1 mM L-AG and the MFs. The primary indicators assessed were the biomass, MPs production, citrinin production, and intracellular and extracellular iron content. The results indicate that exposure to MFs of varying intensities had no significant effect on the biomass of M. purpureus, while it significantly inhibited citrinin production. Conversely, exposure to a 1.6-mT MF significantly enhanced MPs production, while exposure to a 1.2- or 1.6-mT MF promoted the extracellular excretion of intracellular iron. Further, concentrations of 3 and 5 mM of L-AG significantly inhibited the growth of M. purpureus, whereas different concentrations of L-AG significantly inhibited MPs and citrinin production. Moreover, following treatment with both L-AG and MFs, all combinations exhibited a significant increase in MPs and citrinin production compared to L-AG treatment alone. In contrast, citrinin production in the group treated by L-AG with either a 1.2-mT or a 1.6-mT MF was significantly lower than that in the control group. Furthermore, intracellular iron content in the group treated by L-AG and a 1.6-mT or a 2.0-mT MF was reduced compared to that in the L-AG treatment group, with no significant difference from the control group. These findings suggest that appropriate exposure to MFs can decrease intracellular iron content and mitigate reductions in MPs and citrinin production induced by L-AG. Therefore, the regulation of MPs and citrinin synthesis induced by MFs in M. purpureus may be related to the intracellular iron content.
磁场通过调节细胞内和细胞外铁含量对红曲红色素和柑桔素生产的影响
本研究旨在阐明磁场(mf)通过调节红曲霉胞内和胞外铁含量对红曲霉色素(MPs)和柑桔素(citrinin)产生的影响。在发酵早期,用不同浓度的l -烯丙基甘氨酸(L-AG)和不同强度的MFs处理2天,以及1 mM L-AG和MFs的组合。评估的主要指标是生物量、MPs产量、柑桔素产量以及细胞内和细胞外铁含量。结果表明,暴露于不同强度的MFs对M. purpureus的生物量没有显著影响,但显著抑制了柑桔素的产生。相反,暴露于1.6 mt MF显著增加MPs的产生,而暴露于1.2或1.6 mt MF促进细胞内铁的细胞外排泄。此外,浓度为3和5 mM的L-AG显著抑制了M. purpureus的生长,而不同浓度的L-AG显著抑制了MPs和柑桔素的产生。此外,与L-AG单独处理相比,L-AG和MFs联合处理后,所有组合都显示出MPs和柑桔蛋白产量的显著增加。相比之下,在120 mt或160 mt MF的L-AG处理组中,柠檬酸蛋白的产量显著低于对照组。此外,与L-AG处理组相比,L-AG和1.6 mt或2.0 mt MF处理组的细胞内铁含量降低,与对照组相比无显著差异。这些发现表明,适当暴露于MFs可以降低细胞内铁含量,减轻L-AG诱导的MPs和柠檬黄蛋白产生的减少。因此,MFs对紫癜分枝杆菌胞内铁含量的调控可能与胞内铁含量有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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