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Characterization of heterotrophic growth and sesquiterpene production by Rhodobacter sphaeroides on a defined medium

机译:乳菌植物在定义培养基上的乳蛋白生长和癫痫发育的特征

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Rhodobacter sphaeroides is a metabolically versatile bacterium capable of producing terpenes natively. Surprisingly, terpene biosynthesis in this species has always been investigated in complex media, with unknown compounds possibly acting as carbon and nitrogen sources. Here, a defined medium was adapted for R. sphaeroides dark heterotrophic growth, and was used to investigate the conversion of different organic substrates into the reporter terpene amorphadiene. The amorphadiene synthase was cloned in R. sphaeroides, allowing its biosynthesis via the native 2-methyl-d-erythritol-4-phosphate (MEP) pathway and, additionally, via a heterologous mevalonate one. The latter condition increased titers up to eightfold. Consequently, better yields and productivities to previously reported complex media cultivations were achieved. Productivity was further investigated under different cultivation conditions, including nitrogen and oxygen availability. This novel cultivation setup provided useful insight into the understanding of terpene biosynthesis in R. sphaeroides, allowing to better comprehend its dynamics and regulation during chemoheterotrophic cultivation.
机译:乳头杆菌是一种代谢通用的细菌,能够自然地产生Terpenes。令人惊讶的是,本物种中的萜烯生物合成始终在复杂的培养基中进行了研究,其中包含不良化合物可能用作碳和氮源。这里,定义的培养基适于R. Sphaeroides黑色异养生长,并用于研究不同有机基材的转化在报告萜烯酰苯二烯中。氨基二烯合酶在R. Sphaeroides中克隆,允许其通过天然2-甲基-d-赤藓糖醇-4-磷酸盐(MEP)途径的生物合成,并且另外,通过异源甲酸盐溶液。后一种条件增加剧烈率高达八倍。因此,实现了先前报道的复杂培养培养的更好的产量和生产力。在不同的培养条件下进一步研究了生产率,包括氮气和氧可用性。这种新颖的栽培设置为在R. Sphaeroides中对萜烯生物合成的理解提供了有用的洞察,从而更好地理解其在化学能营养培养期间的动态和调节。

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