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首页> 外文期刊>Microbial Cell Factories >Production of scopularide A in submerged culture with Scopulariopsis brevicaulis
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Production of scopularide A in submerged culture with Scopulariopsis brevicaulis

机译:用短壁S鱼在水下培养中生产粉A

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Background Marine organisms produce many novel compounds with useful biological activity, but are currently underexploited. Considerable research has been invested in the study of compounds from marine bacteria, and several groups have now recognised that marine fungi also produce an interesting range of compounds. During product discovery, these compounds are often produced only in non-agitated culture conditions, which are unfortunately not well suited for scaling up. A marine isolate of Scopulariopsis brevicaulis, strain LF580, produces the cyclodepsipeptide scopularide A, which has previously only been produced in non-agitated cultivation. Results Scopulariopsis brevicaulis LF580 produced scopularide A when grown in batch and fed-batch submerged cultures. Scopularide A was extracted primarily from the biomass, with approximately 7% being extractable from the culture supernatant. By increasing the biomass density of the cultivations, we were able to increase the volumetric production of the cultures, but it was important to avoid nitrogen limitation. Specific production also increased with increasing biomass density, leading to improvements in volumetric production up to 29-fold, compared with previous, non-agitated cultivations. Cell densities up to 36?g?L-1 were achieved in 1 to 10?L bioreactors. Production of scopularide A was optimised in complex medium, but was also possible in a completely defined medium. Conclusions Scopularide A production has been transferred from a non-agitated to a stirred tank bioreactor environment with an approximately 6-fold increase in specific and 29-fold increase in volumetric production. Production of scopularide A in stirred tank bioreactors demonstrates that marine fungal compounds can be suitable for scalable production, even with the native production organism.
机译:背景技术海洋生物产生许多具有有用生物活性的新型化合物,但目前尚未得到充分利用。已经投入了大量的研究来研究海洋细菌中的化合物,现在有几个小组认识到海洋真菌也可以产生一系列有趣的化合物。在产品发现期间,这些化合物通常仅在非搅拌式培养条件下生产,不幸的是,这种条件不适用于大规模生产。短柄鞘藻的海洋分离株LF580产生了环二肽肽scopularide A,以前仅在非搅拌培养中生产。结果在分批和补料分批淹没培养中生长时,短柄鞘藻LF580产生了scopularideA。 Scopularide A主要从生物质中提取,其中约7%可从培养上清液中提取。通过增加培养物的生物量密度,我们能够增加培养物的体积产量,但重要的是要避免氮的限制。与以前的非搅拌栽培相比,随着生物量密度的增加,特定产量也增加了,导致体积产量提高了29倍。在1至10?L生物反应器中,细胞密度达到36?g?L -1 。 scopularide A的生产在复杂培养基中进行了优化,但在完全限定的培养基中也是可行的。结论Scopularide A的生产已从非搅拌式生物反应器环境转移到搅拌釜式生物反应器环境中,比产量大约增加了6倍,容积产量增加了29倍。在搅拌罐式生物反应器中生产红素A表明,海洋真菌化合物甚至适用于天然生产生物,也适用于规模化生产。

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