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Highly efficient improvement of Monascus pigment production by accelerating starch hydrolysis in Monascus ruber CICC41233

机译:通过加速红曲霉CICC41233中的淀粉水解来高效改善红曲霉色素的生产

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摘要

To investigate the relationship between starch hydrolysis and Monascus pigments (MPs) production, the α-amylase gene (AOamyA) from Aspergillus oryzae was heterologously expressed in Monascus ruber CICC41233, and we obtained a positive transformant named Monascus ruber Amy9. In M. ruber Amy9, the α-amylase activities were 6.65- and 4.26-fold higher at 72 h and 144 h, respectively, than those in the parent strain with the glucose as solo carbon medium. Surprisingly, in the MPs fermentation medium with rice powder as solo material, M. ruber Amy9 completely degraded starch at 48 h, while 43.93 and 7.29 mg/mL starch remained at 48 and 144 h, respectively, in the parent strain. Monascus ruber Amy9 accelerated starch hydrolysis, which enhanced biomass and also increased total MPs by 132% after 144 h. Compared with M. ruber CICC41233, the relative gene expression levels, as determined by a quantitative real-time polymerase chain reaction analysis, of acl2 encoding ATP-citrate lyase subunit 2, pks encoding polyketide synthase, and fasB encoding the fatty acid synthase beta subunit increased by 33.14, 145.18, and 32.15%, respectively, after 144 h in M. ruber Amy9. The up-regulated expression of these key genes in MPs synthesis contributed to the large increase in MPs production. This interesting work provided us with a new idea and a new target for the study of the MPs production.Electronic supplementary materialThe online version of this article (10.1007/s13205-018-1359-z) contains supplementary material, which is available to authorized users.
机译:为了研究淀粉水解与红曲霉色素(MPs)生产之间的关系,米曲霉CICC41233中异源表达了米曲霉的α-淀粉酶基因(AOamyA),我们获得了一个名为红曲霉Amy9的正向转化体。在红霉菌Amy9中,在72h和144h时,α-淀粉酶活性分别比以葡萄糖为单碳培养基的亲本菌株高6.65倍和4.26倍。出乎意料的是,在以米粉为单独材料的MPs发酵培养基中,M.ruber Amy9在48h时完全降解了淀粉,而在亲本菌株中48.93和7.29mg / mL淀粉分别保持在48h和144h。红曲霉Amy9加速了淀粉水解,这增强了生物量,并且在144小时后还使总MP增加了132%。通过定量实时聚合酶链反应分析确定的相对于Ruber M. CICC41233的相对基因表达水平,是编码acl2的ATP-柠檬酸裂解酶亚基2,编码聚酮化合物合酶的pks,和编码脂肪酸合酶β亚基的fasB。在红霉菌Amy9中经过144小时后,分别增加了33.14、145.18和32.15%。这些关键基因在MPs合成中的上调表达有助于MPs产量的大幅提高。这项有趣的工作为我们研究MP生产提供了新思路和新目标。电子补充材料本文的在线版本(10.1007 / s13205-018-1359-z)包含补充材料,可供授权用户使用。 。

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