Tao Jun, An Fa-Liang, Pan Zheng-Hua, Lu Yan-Hua
State Key Laboratory of Bioreactor Engineering, East China University of Science and Technology, Shanghai 200237, P.R. China.
J Microbiol Biotechnol. 2018 May 28;28(5):748-756. doi: 10.4014/jmb.1801.01073.
Biofilms are of vital significance in bioconversion and biotechnological processes. In this work, sugarcane molasses was used to enhance biofilms for the improvement of the production of fumigaclavine C (FC), a conidiation-associated ergot alkaloid with strong anti-inflammatory activities. Biofilm formation was more greatly induced by the addition of molasses than the addition of other reported biofilm inducers. With the optimal molasses concentration (400 g/l), the biofilm biomass was 6-fold higher than that with sucrose, and FC and conidia production was increased by 5.8- and 3.1-fold, respectively. Moreover, the global secondary metabolism regulatory gene , FC biosynthetic gene , and asexual central regulatory genes and were upregulated in molasses-based biofilms, suggesting the upregulation of both asexual development and FC biosynthesis. This study provides novel insight into the stimulatory effects of molasses on biofilm formation and supports the widespread application of molasses as an inexpensive raw material and effective inducer for biofilm production.
生物膜在生物转化和生物技术过程中具有至关重要的意义。在本研究中,甘蔗废蜜被用于强化生物膜,以提高烟曲霉黄青霉素C(FC)的产量,FC是一种与分生孢子形成相关的麦角生物碱,具有很强的抗炎活性。与添加其他已报道的生物膜诱导剂相比,添加废蜜对生物膜形成的诱导作用更强。在废蜜最佳浓度(400 g/l)下,生物膜生物量比蔗糖处理时高6倍,FC和分生孢子产量分别提高了5.8倍和3.1倍。此外,基于废蜜的生物膜中,全局次生代谢调控基因、FC生物合成基因以及无性繁殖核心调控基因和均上调,这表明无性发育和FC生物合成均上调。本研究为废蜜对生物膜形成的刺激作用提供了新的见解,并支持将废蜜作为一种廉价原料和生物膜生产的有效诱导剂广泛应用。