Poly(3-hydroxybutyrate) production for food packaging from biomass derived carbohydrates by cupriavidus necator DSM 545

IF 3.4 3区 生物学 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Enzyme and Microbial Technology Pub Date : 2024-09-17 DOI:10.1016/j.enzmictec.2024.110516
Gianfrancesco Russo , Paola Scocca , Mattia Gelosia , Giacomo Fabbrizi , Tommaso Giannoni , Stefania Urbani , Sonia Esposto , Andrea Nicolini
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Abstract

The extensive utilization of conventional plastics has resulted in a concerning surge in waste. A potential solution lies in biodegradable polymers mostly derived from renewable sources. Cupriavidus necator DSM 545 is a microorganism capable, under stress conditions, of intracellularly accumulating Poly(3-hydroxybutyrate) (PHB), a bio-polyester. This study aimed to identify optimal conditions to maximize the intracellular accumulation of PHB and its global production using natural media obtained by processing lignocellulosic residues of cardoon, a low-cost feedstock. An intracellular PHB accumulation was observed in all of the tested media, indicating a metabolic stress induced by the lack of macronutrients. Increasing C/N ratios led to a significant decrease in cellular biomass and PHB production. Furthermore C. necator DSM 545 was incapable of consuming more than 25 g/L of supplied monosaccharides. Surprisingly, in the samples supplied with 60 % of the pentose-rich liquid fraction, complete consumption of xylose was observed. This result was also confirmed by subsequent tests using Medium 1 growth media containing xylose as the sole carbon source. Using a diluted medium with a C/N ratio of 5, a PHB production of 5.84 g/L and intracellular PHB accumulation of 77 % w/w were respectively achieved. Finally, comparative shelf-life tests conducted against conventional pre-packaging materials in PP suggested that PHB films performed similarly in preserve ready-to-eat products.

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利用坏死葡萄球菌 DSM 545 从生物质中提取的碳水化合物生产用于食品包装的聚(3-羟基丁酸)乙酸酯
传统塑料的广泛使用导致废物激增,令人担忧。生物可降解聚合物是一种潜在的解决方案,这种聚合物大多来自可再生来源。坏死葡萄球菌(Cupriavidus necator)DSM 545 是一种微生物,在压力条件下能够在细胞内积累生物聚酯聚(3-羟基丁酸)(PHB)。本研究旨在确定最佳条件,以最大限度地提高 PHB 的细胞内积累,并利用加工低成本原料--芒果的木质纤维素残渣所获得的天然培养基生产 PHB。在所有测试的培养基中都观察到了细胞内 PHB 的积累,这表明缺乏大量营养物质会导致新陈代谢压力。提高 C/N 比会导致细胞生物量和 PHB 产量显著下降。此外,C. necator DSM 545 无法消耗超过 25 克/升的单糖。令人惊讶的是,在富含 60% 戊糖液体组分的样品中,木糖被完全消耗。随后使用含木糖作为唯一碳源的 Medium 1 生长培养基进行的测试也证实了这一结果。使用 C/N 比为 5 的稀释培养基,PHB 产量分别达到 5.84 克/升和 77 % w/w 的胞内 PHB 积累。最后,与传统的聚丙烯预包装材料进行的货架期比较测试表明,PHB 薄膜在保存即食产品方面的表现类似。
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来源期刊
Enzyme and Microbial Technology
Enzyme and Microbial Technology 生物-生物工程与应用微生物
CiteScore
7.60
自引率
5.90%
发文量
142
审稿时长
38 days
期刊介绍: Enzyme and Microbial Technology is an international, peer-reviewed journal publishing original research and reviews, of biotechnological significance and novelty, on basic and applied aspects of the science and technology of processes involving the use of enzymes, micro-organisms, animal cells and plant cells. We especially encourage submissions on: Biocatalysis and the use of Directed Evolution in Synthetic Biology and Biotechnology Biotechnological Production of New Bioactive Molecules, Biomaterials, Biopharmaceuticals, and Biofuels New Imaging Techniques and Biosensors, especially as applicable to Healthcare and Systems Biology New Biotechnological Approaches in Genomics, Proteomics and Metabolomics Metabolic Engineering, Biomolecular Engineering and Nanobiotechnology Manuscripts which report isolation, purification, immobilization or utilization of organisms or enzymes which are already well-described in the literature are not suitable for publication in EMT, unless their primary purpose is to report significant new findings or approaches which are of broad biotechnological importance. Similarly, manuscripts which report optimization studies on well-established processes are inappropriate. EMT does not accept papers dealing with mathematical modeling unless they report significant, new experimental data.
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