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首页> 外文期刊>Biochemical Engineering Journal >Engineering a new metabolic pathway for itaconate production in Pichia stipitis from xylose
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Engineering a new metabolic pathway for itaconate production in Pichia stipitis from xylose

机译:从木糖中工程为辛酸稳定炎的培康酸盐产生新的代谢途径

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摘要

Renewable alternatives for petroleum-derived chemicals are achievable through biosynthetic production. In this work, Pichia stipitis was engineered for itaconate production from xylose. The heterologous cis-aconitate decarboxylase from Aspergillus terreus was overexpressed with codon optimization, and 52 mg/L itaconate was produced by the initial engineered strain TJUIA01. To improve itaconate production, optimization of medium composition was performed and the availability of the critical substrate cis-aconitate was discovered as the limited factor for higher itaconate production. Then native cytoplasmic and mitochondrial aconitase were overexpressed to overcome the limitation, respectively. Furthermore, an efficient strain TJUIA03 with cytoplasmic aconitase was obtained, and the batch and fed-batch fermentations in a bioreactor were implemented, respectively. Finally, the itaconate titer reached to 1.52 g/L in a 3 L bioreactor, with an improvement of 28-fold than that of the strain TJUIA01, which also highlighted areas for future strain improvement compared to the glucose-based fermentation. Nevertheless, the results suggest that P. stipitis is a promising platform for itaconate production from xylose. (C) 2017 Elsevier B.V. All rights reserved.
机译:通过生物合成生产可实现石油衍生化学品的可再生替代品。在这项工作中,Pichia稳定炎设计用于木糖的迭科生产。来自CoSpergillus Terreus的异源顺式焦焦脱羧酶对密码子优化过表达,并且通过初始工程菌株TJuia01生产了52mg / L型康酸酯。为了改善甲酸盐的生产,进行培养基组成的优化,临界衬底CIS-aconitate的可用性被发现为甲酸盐产量较高的有限因素。然后,过表达本地细胞质和线粒体肌酶以克服限制。此外,获得了具有细胞质穴位酶的有效菌株TJuia03,分批和批量生反应器中的批量发酵。最后,迭科滴度在3L生物反应器中达到1.52克/升,其菌株TJuia01的菌株28倍,这也强调了与基于葡萄糖的发酵相比未来应变改善的领域。然而,结果表明,P.智炎是一种从木糖生产的迭科生产的有希望的平台。 (c)2017 Elsevier B.v.保留所有权利。

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