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氮限制诱导粘红酵母中碳积累

Carbon accumulation in Rhodotorula glutinis induced by nitrogen limitation.

作者信息

Cescut Julien, Fillaudeau Luc, Molina-Jouve Carole, Uribelarrea Jean-Louis

机构信息

Université de Toulouse; INSA,UPS,INP; LISBP, 135 Avenue de Rangueil, F-31077 Toulouse, France ; INRA, UMR792, Ingénierie des Systèmes Biologiques et des Procédés, F-31400 Toulouse, France ; CNRS, UMR5504, F-31400 Toulouse, France.

出版信息

Biotechnol Biofuels. 2014 Dec 9;7(1):164. doi: 10.1186/s13068-014-0164-0. eCollection 2014.

Abstract

BACKGROUND

Oleaginous microorganisms, such as bacterium, yeast and algal species, can represent an alternative oil source for biodiesel production. The composition of their accumulated lipid is similar to the lipid of an oleaginous plant with a predominance of unsaturated fatty acid. Moreover this alternative to conventional biodiesel production does not create competition for land use between food and oleo-chemical industry supplies. Despite this promising potential, development of microbial production processes are at an early stage. Nutritional limited conditions, such as nitrogen limitation, with an excess of carbon substrate is commonly used to induce lipid accumulation metabolism. Nitrogen limitation implies modification of the carbon-to-nitrogen ratio in culture medium, which impacts on carbon flow distribution in the metabolic network.

RESULTS

The goal of the present study is to improve our knowledge of carbon flow distribution in oleaginous yeast metabolism by focusing carbon distribution between carbohydrate and lipid pools in order to optimize microbial lipid production. The dynamic effects of limiting nitrogen consumption flux according to carbon flow were studied to trigger lipid accumulation in the oleaginous yeast Rhodotorula glutinis. With a decrease of the specific nitrogen consumption rate from 0.052 Nmol.CmolX (-1).h(-1) to 0.003 Nmol.CmolX (-1).h(-1), a short and transitory intracellular carbohydrate accumulation occurred before the lipid accumulation phase. This phenomenon was studied in fed-batch culture under optimal operating conditions, with a mineral medium and using glucose as carbon source. Two different strategies of decreasing nitrogen flow on carbohydrate accumulation were investigated: an instantaneous decrease and a progressive decrease of nitrogen flow.

CONCLUSIONS

Lipid production performance in these fed-batch culture strategies with R. glutinis were higher than those reported in the previous literature; the catalytic specific lipid production rate was 0.07 Cmollip.CmolX* (-1).h(-1). Experimental results suggested that carbohydrate accumulation was an intrinsic phenomenon connected to the limitation of growth by nitrogen when the nitrogen-to-carbon ratio in the feed flow was lower than 0.045 Nmol.Cmol(-1). Carbohydrate accumulation corresponded to a 440% increase of carbohydrate content. These results suggest that microbial lipid production can be optimized by culture strategy and that carbohydrate accumulation must be taken account for process design.

摘要

背景

产油微生物,如细菌、酵母和藻类,可作为生物柴油生产的替代油源。它们积累的脂质组成与产油植物的脂质相似,以不饱和脂肪酸为主。此外,这种传统生物柴油生产的替代方法不会在食品和油脂化工行业供应之间造成土地使用竞争。尽管有这种潜在的前景,但微生物生产工艺的开发仍处于早期阶段。营养限制条件,如氮限制,同时存在过量的碳底物,通常用于诱导脂质积累代谢。氮限制意味着培养基中碳氮比的改变,这会影响代谢网络中碳流的分布。

结果

本研究的目的是通过关注碳水化合物和脂质池之间的碳分布来提高我们对产油酵母代谢中碳流分布的认识,以优化微生物脂质生产。研究了根据碳流限制氮消耗通量对产油酵母粘红酵母脂质积累的动态影响。随着比氮消耗率从0.052 Nmol·CmolX⁻¹·h⁻¹降至0.003 Nmol·CmolX⁻¹·h⁻¹,在脂质积累阶段之前出现了短暂的细胞内碳水化合物积累。在最佳操作条件下,使用矿物培养基并以葡萄糖作为碳源,在分批补料培养中研究了这种现象。研究了两种不同的降低氮流对碳水化合物积累影响的策略:氮流的瞬时降低和逐步降低。

结论

这些使用粘红酵母的分批补料培养策略中的脂质生产性能高于先前文献报道的性能;催化比脂质生产率为0.07 Cmollip·CmolX⁻¹·h⁻¹。实验结果表明,当进料流中的氮碳比低于0.045 Nmol·Cmol⁻¹时,碳水化合物积累是与氮限制生长相关的固有现象。碳水化合物积累对应于碳水化合物含量增加440%。这些结果表明,微生物脂质生产可通过培养策略进行优化,并且在工艺设计中必须考虑碳水化合物积累。

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