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首页> 外文期刊>Biomass & bioenergy >Towards enhanced n-butanol production from sugarcane bagasse hemicellulosic hydrolysate: Strain screening, and the effects of sugar concentration and butanol tolerance
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Towards enhanced n-butanol production from sugarcane bagasse hemicellulosic hydrolysate: Strain screening, and the effects of sugar concentration and butanol tolerance

机译:从甘蔗面蔗糖半纤维素水解产物增强正丁醇生产:菌株筛选,以及糖浓度和丁醇耐受的影响

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摘要

Robust strains are essential towards success of n-butanol production from lignocellulosic feedstock. To find a suitable strain to convert a non-detoxified hemicellulosic hydrolysate of sugarcane bagasse, we first assessed the performance of four wild-type butanol-producing Clostridium strains (C. acetobutylicum DSM 6228, C. beijerinckii DSM 6422, C. saccharobutylicum DSM 13864, and C. saccharoperbutylacetonicum DSM 14923) in batch fermentations containing either xylose or glucose at 30 g L-1 as sole carbon sources. C. saccharoperbutylacetonicum was selected after achieving butanol yields as high as 0.31 g g(-1) on glucose and 0.25 g g(-1) on xylose. In a 48-h fermentation containing a mixture of sugars (93% xylose and 7% glucose) that mimicked the hydrolysate, C. saccharoperbutylacetonicum delivered the highest butanol concentration (14.5 g L-1) when the initial sugar concentration was 50 g L-1. Moreover, the selected strain achieved the highest butanol yield (0.29 g g(-1)) on xylose-rich media reported so far. Meanwhile, C. saccharoperbutylacetonicum produced 5.8 g butanol L-1 (0.22 g g(-1) butanol yield) when fermenting a non-detoxified sugarcane bagasse hemicellulosic hydrolysate enriched with xylose (30 g total sugars L-1). Although sugars were not exhausted (4.7 g residual sugars L-1) even after 72 h because of the presence of lignocellulose-derived microbial inhibitors, these results show that C. saccharoperbutylacetonicum is a robust wild-type strain. This microorganism with high butanol tolerance and yield on xylose can, therefore, serve as the basis for the development of improved biocatalysts for production of butanol from non-detoxified sugarcane bagasse hemicellulosic hydrolysate.
机译:强大的菌株对木质纤维素原料的正丁醇生产成功至关重要。为了找到合适的菌株来转化非疏散的半纤维素水解产甘油蛋白甘蔗渣,首先评估了四种野生型丁醇的梭菌菌株的性能(C.乙酰丁基DSM 6228,C.Beijerinckii DSM 6422,C. Saccharobutylcum DSM 13864和C.Saccharoperbutylcetonicum DSM 14923)分批发酵,其含有木糖或30g L-1的葡萄糖作为唯一的碳源。在木糖上达到丁醇产率高达0.31g g(-1)的葡萄糖和0.25g g(-1)上的葡萄糖产率后,选择C. Saccharoperbutylcetonicum。在48小时发酵中,含有糖的混合物(93%木糖和7%葡萄糖),其模仿水解产物,C.Saccharoperbutylcetonicum,当初始糖浓度为50克 - 1。此外,所选择的菌株在迄今为止报道的富含木糖的介质上实现了最高丁醇产率(0.29g g(-1))。同时,当发酵富含木糖(30g总糖L-1)时,C,C.Saccharoperbutylacetonic制备5.8g丁醇L-1(0.22g g(-1)丁醇产率)。虽然糖未耗尽(4.7g残留的糖L-1),即使存在木质纤维素衍生的微生物抑制剂,虽然在72小时之后,但这些结果表明C.Saccharoperbutylcetonicum是一种坚固的野生型菌株。因此,这种具有高丁醇耐受性和木糖产率的微生物可以作为开发改进的生物催化剂的基础,从未解毒的甘蔗甘蔗渣半纤维素水解产物生产丁醇。

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