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通过稳定生产提高嗜腺嘌呤丛赤壳菌中聚(3-羟基丁酸酯-co-3-羟基戊酸酯)的积累量

Enhancement of poly(3-hydroxybutyrate-co-3-hydroxyvalerate) accumulation in Arxula adeninivorans by stabilization of production.

作者信息

Biernacki Mateusz, Marzec Marek, Roick Thomas, Pätz Reinhard, Baronian Kim, Bode Rüdiger, Kunze Gotthard

机构信息

Leibniz Institute of Plant Genetics and Crop Plant Research (IPK), Corrensstr. 3, 06466, Gatersleben, Saxony-Anhalt, Germany.

Faculty of Biology and Environmental Protection, University of Silesia, Jagiellonska, 28, 40-032, Katowice, Poland.

出版信息

Microb Cell Fact. 2017 Aug 17;16(1):144. doi: 10.1186/s12934-017-0751-4.

Abstract

BACKGROUND

In recent years the production of biobased biodegradable plastics has been of interest of researchers partly due to the accumulation of non-biodegradable plastics in the environment and to the opportunity for new applications. Commonly investigated are the polyhydroxyalkanoates (PHAs) poly(hydroxybutyrate) and poly(hydroxybutyrate-co-hydroxyvalerate) (PHB-V). The latter has the advantage of being tougher and less brittle. The production of these polymers in bacteria is well established but production in yeast may have some advantages, e.g. the ability to use a broad spectrum of industrial by-products as a carbon sources.

RESULTS

In this study we increased the synthesis of PHB-V in the non-conventional yeast Arxula adeninivorans by stabilization of polymer accumulation via genetic modification and optimization of culture conditions. An A. adeninivorans strain with overexpressed PHA pathway genes for β-ketothiolase, acetoacetyl-CoA reductase, PHAs synthase and the phasin gene was able to accumulate an unexpectedly high level of polymer. It was found that an optimized strain cultivated in a shaking incubator is able to produce up to 52.1% of the DCW of PHB-V (10.8 g L) with 12.3%mol of PHV fraction. Although further optimization of cultivation conditions in a fed-batch bioreactor led to lower polymer content (15.3% of the DCW of PHB-V), the PHV fraction and total polymer level increased to 23.1%mol and 11.6 g L respectively. Additionally, analysis of the product revealed that the polymer has a very low average molecular mass and unexpected melting and glass transition temperatures.

CONCLUSIONS

This study indicates a potential of use for the non-conventional yeast, A. adeninivorans, as an efficient producer of polyhydroxyalkanoates.

摘要

背景

近年来,生物基可生物降解塑料的生产受到了研究人员的关注,部分原因是不可生物降解塑料在环境中的积累以及新应用的机会。常见的研究对象是聚羟基脂肪酸酯(PHA)、聚(3-羟基丁酸酯)和聚(3-羟基丁酸酯-co-3-羟基戊酸酯)(PHB-V)。后者具有更坚韧、更不易脆的优点。这些聚合物在细菌中的生产已得到充分确立,但在酵母中生产可能具有一些优势,例如能够使用广泛的工业副产品作为碳源。

结果

在本研究中,我们通过基因改造稳定聚合物积累并优化培养条件,提高了非常规酵母嗜腺嘌呤丛赤壳菌(Arxula adeninivorans)中PHB-V的合成。一株过表达PHA途径基因(β-酮硫解酶、乙酰乙酰辅酶A还原酶、PHA合酶和相蛋白基因)的嗜腺嘌呤丛赤壳菌能够积累异常高水平的聚合物。结果发现,在摇床培养箱中培养的优化菌株能够产生高达52.1%的细胞干重(DCW)的PHB-V(10.8 g/L),其中PHV组分含量为12.3%摩尔。尽管在补料分批生物反应器中进一步优化培养条件导致聚合物含量降低(PHB-V的DCW为15.3%),但PHV组分和聚合物总量分别增加到23.1%摩尔和11.6 g/L。此外,对产物的分析表明,该聚合物具有非常低的平均分子量以及意外的熔点和玻璃化转变温度。

结论

本研究表明非常规酵母嗜腺嘌呤丛赤壳菌作为聚羟基脂肪酸酯高效生产者的应用潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7fa9/5561651/8ffa0b1bf05d/12934_2017_751_Fig1_HTML.jpg

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