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首页> 外文期刊>Journal of industrial microbiology & biotechnology >High-level productivity of alpha,omega-dodecanedioic acid with a newly isolated Candida viswanathii strain
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High-level productivity of alpha,omega-dodecanedioic acid with a newly isolated Candida viswanathii strain

机译:α,ωdecanedio酸的高水平生产率,具有新分离的念珠菌Viswanathii菌株

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alpha,omega-Dicarboxylic acids (DC) are versatile chemical intermediates with different chain lengths, which are well-known as polymer building block. In this work, a new strain with high productivity of DC was isolated from oil-contaminated soil. Based on the morphology and phylogenetic analyses of the internal transcribed spacer sequences, it was characterized as Candida viswanathii. It was found that the contribution of carbon flux to the cell growth and DC production from n-dodecane could be regulated by the sucrose and yeast extract concentrations in the medium, and besides the broth pH, a suitable proportioning of sucrose and yeast extract was the key to achieve the optimal transition from cell growth phase to DC production phase. By optimizing culture conditions in a 7.5-L bioreactor, a higher DC productivity of 1.59 g center dot L-1 h(-1) with a corresponding concentration of 181.6 g/L was obtained. After the purification of DC from the culture, the results from gas chromatography-mass spectrometry, infrared spectroscopy and H-1-NMR showed that alpha,omega-dodecanedioic acid (DC12) was the major product of C. viswanathii ipe-1 using pure n-dodecane as substrate. For the first time, we reported that a high productivity of DC12 could be produced by C. viswanathii.
机译:α,Omega-二羧酸(DC)是具有不同链长的多功能化学中间体,其具有众所周知的聚合物结构块。在这项工作中,从油污土中分离了具有高生产率的新菌株。基于内部转录间隔序列的形态和系统发育分析,其特征在于念珠菌Viswanathii。发现碳通量对细胞生长和来自N-十二烷的DC产生的贡献可以通过培养基中的蔗糖和酵母提取物浓度来调节,并且除了肉汤pH,蔗糖和酵母提取物的合适比例是键实现从细胞生长阶段到直流生产阶段的最佳转变。通过优化7.5-L生物反应器中的培养条件,获得了1.59g中心点L-1 H(-1)的更高的DC生产率,相应浓度为181.6g / L。从培养物中纯化DC后,来自气相色谱 - 质谱,红外光谱和H-1-NMR的结果表明,α,Omega-十二烷二酸(DC12)是C.Viswanathii IPE-1的主要产物,使用纯净N-十二烷作为基质。我们首次报道,DC12的高生产率可以由C.Viswanathii生产。

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