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利用低成本农业废料,通过聚羟基丁酸酯(PHB)积累细菌生产可生物降解塑料。

Production of biodegradable plastic by polyhydroxybutyrate (PHB) accumulating bacteria using low cost agricultural waste material.

作者信息

Getachew Anteneh, Woldesenbet Fantahun

机构信息

Department of Biotechnology, Wolkite University, Po. Box 07, Wolkite, Ethiopia.

Research Directorate, Arba Minch University, Po.Box 21, Arba Minch, Ethiopia.

出版信息

BMC Res Notes. 2016 Dec 12;9(1):509. doi: 10.1186/s13104-016-2321-y.

Abstract

BACKGROUND

Polyhydroxybutyrates (PHBs) are macromolecules synthesized by bacteria. They are inclusion bodies accumulated as reserve materials when the bacteria grow under different stress conditions. Because of their fast degradability under natural environmental conditions, PHBs are selected as alternatives for production of biodegradable plastics. The aim of this work was to isolate potential PHB producing bacteria, evaluate PHB production using agro-residues as carbon sources.

RESULT

Among fifty bacterial strains isolated from different localities, ten PHB accumulating strains were selected and compared for their ability to accumulate PHB granules inside their cells. Isolate Arba Minch Waste Water (AWW) identified as Bacillus spp was found to be the best producer. The optimum pH, temperature, and incubation period for best PHB production by the isolate were 7, 37 °C, and 48 h respectively at 150 rpm. PHB production was best with glucose as carbon source and peptone as nitrogen source. The strain was able to accumulate 55.6, 51.6, 37.4 and 25% PHB when pretreated sugar cane bagasse, corn cob, teff straw (Eragrostis tef) and banana peel were used as carbon sources respectively. Fourier transform-infrared authentication results of the extracted and purified PHB identified its functional units as C-H, CH, C=O and C-O groups. UV-Vis spectrophotometric analysis and biodegradability test confirmed the similarity of the extract with standard PHB and its suitability for bioplastic production.

CONCLUSION

The isolated Bacillus sp can be used for feasible production of PHB using agro-residues especially sugarcane bagasse which can reduce the production cost in addition to reducing the disposal problem of these substrates. The yield of PHB can further be boosted by optimization of production parameters as substrates.

摘要

背景

聚羟基丁酸酯(PHB)是细菌合成的大分子。它们是细菌在不同应激条件下生长时作为储备物质积累的包涵体。由于其在自然环境条件下的快速降解性,PHB被选为生产可生物降解塑料的替代品。本研究的目的是分离潜在的产PHB细菌,评估以农业废弃物为碳源生产PHB的能力。

结果

从不同地点分离出的50株细菌菌株中,筛选出10株积累PHB的菌株,并比较它们在细胞内积累PHB颗粒的能力。被鉴定为芽孢杆菌属的阿尔巴明奇废水分离株(AWW)被发现是最佳生产者。该分离株产生最佳PHB的最佳pH、温度和培养时间分别为7、37°C和48小时,转速为150 rpm。以葡萄糖为碳源、蛋白胨为氮源时,PHB产量最佳。当分别使用预处理的甘蔗渣、玉米芯、画眉草秸秆(Eragrostis tef)和香蕉皮作为碳源时,该菌株能够积累55.6%、51.6%、37.4%和25%的PHB。提取和纯化的PHB的傅里叶变换红外光谱鉴定结果确定其功能单元为C-H、CH、C=O和C-O基团。紫外可见分光光度分析和生物降解性测试证实了提取物与标准PHB的相似性及其用于生物塑料生产的适用性。

结论

分离出的芽孢杆菌属可用于利用农业废弃物特别是甘蔗渣可行地生产PHB,这除了减少这些底物的处置问题外,还可降低生产成本。通过优化生产参数作为底物,PHB的产量可进一步提高。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a299/5154074/7d84caf86fb3/13104_2016_2321_Fig1_HTML.jpg

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