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钾缺乏会导致在利用甲烷的混合培养物中积累超高分子量聚-β-羟基丁酸酯。

Potassium deficiency results in accumulation of ultra-high molecular weight poly-beta-hydroxybutyrate in a methane-utilizing mixed culture.

作者信息

Helm J, Wendlandt K-D, Jechorek M, Stottmeister U

机构信息

Department of Bioremediation, Helmholtz Centre for Environmental Research - UFZ, Leipzig, Germany.

出版信息

J Appl Microbiol. 2008 Oct;105(4):1054-61. doi: 10.1111/j.1365-2672.2008.03831.x. Epub 2008 Apr 16.

Abstract

AIMS

To investigate the effect of various single nutrient deficiencies on poly-beta-hydroxybutyrate (PHB) biosynthesis in a methane-utilizing mixed culture (dominant species Methylocystis sp. GB 25 DSM 7674).

METHODS AND RESULTS

Poly-beta-hydroxybutyrate accumulation experiments were performed in 7 and 70 l bioreactors and initiated by potassium, sulfur or iron deficiency. After 24 h the PHB content reached levels of 33.6%, 32.6% and 10.4% respectively. Interestingly a polymer with an ultra-high average-weight molecular weight (M(w)) of 3.1 MDa was accumulated under potassium-limited conditions. When sulfur and iron were lacking M(w) were lower by 20.6 and 41.6%. Potassium-deficiency experiments were furthermore characterized by a maximum specific PHB formation rate 0.08 g g(-1)residual biomass (R) h(-1) and a yield coefficient of 0.45 g PHB g(-1) CH(4).

CONCLUSIONS

Biosynthesis of an ultra-high M(w) PHB in a methane-utilizing mixed culture can be induced by potassium deficiency.

SIGNIFICANCE AND IMPACT OF THE STUDY

This study greatly extends the knowledge in the field of bacterial biopolymer formation with gaseous substrates. The special system used here combines the use of methane a low-cost substrate available from natural and renewable sources with the possibility of employing a mixed-culture in an open system for the synthesis of a high-value product.

摘要

目的

研究各种单一营养素缺乏对利用甲烷的混合培养物(优势菌种为甲基孢囊菌属GB 25 DSM 7674)中聚-β-羟基丁酸酯(PHB)生物合成的影响。

方法与结果

在7升和70升生物反应器中进行聚-β-羟基丁酸酯积累实验,通过缺钾、缺硫或缺铁引发实验。24小时后,PHB含量分别达到33.6%、32.6%和10.4%。有趣的是,在限钾条件下积累了一种平均分子量(M(w))高达3.1兆道尔顿的超高分子量聚合物。当缺硫和缺铁时,M(w)分别降低了20.6%和41.6%。此外,缺钾实验的特征在于最大比PHB形成速率为0.08克/克(-1)残余生物量(R)/小时,产率系数为0.45克PHB/克(-1)CH(4)。

结论

利用甲烷的混合培养物中,缺钾可诱导超高分子量PHB的生物合成。

研究的意义与影响

本研究极大地扩展了利用气态底物进行细菌生物聚合物形成领域的知识。这里使用的特殊系统将利用甲烷(一种可从天然和可再生资源获得的低成本底物)与在开放系统中采用混合培养物合成高价值产品的可能性结合起来。

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