Kim Byungchan, Oh Suk Jin, Hwang Jeong Hyeon, Kim Hyun Jin, Shin Nara, Bhatia Shashi Kant, Jeon Jong-Min, Yoon Jeong-Jun, Yoo Jaehung, Ahn Jungoh, Park Jung-Ho, Yang Yung-Hun
Department of Biological Engineering, College of Engineering, Konkuk University, Seoul, Republic of Korea.
Green & Sustainable Materials R&D Department, Korea Institute of Industrial Technology (KITECH), Cheonan, Republic of Korea.
Int J Biol Macromol. 2023 May 1;236:123997. doi: 10.1016/j.ijbiomac.2023.123997. Epub 2023 Mar 11.
Petrochemical-based plastics are hardly biodegradable and a major cause of environmental pollution, and polyhydroxybutyrate (PHB) is attracting attention as an alternative due to its similar properties. However, the cost of PHB production is high and is considered the greatest challenge for its industrialization. Here, crude glycerol was used as a carbon source for more efficient PHB production. Among the 18 strains investigated, Halomonas taeanenisis YLGW01 was selected for PHB production due to its salt tolerance and high glycerol consumption rate. Furthermore, this strain can produce poly(3-hydroxybutyrate-co-3-hydroxyvalerate) (P(3HB-co-3 HV)) with 17 % 3 HV mol fraction when a precursor is added. PHB production was maximized through medium optimization and activated carbon treatment of crude glycerol, resulting in 10.5 g/L of PHB with 60 % PHB content in fed-batch fermentation. Physical properties of the produced PHB were analyzed, i.e., weight average molecular weight (6.8 × 10), number average molecular weight (4.4 × 10), and the polydispersity index (1.53). In the universal testing machine analysis, the extracted intracellular PHB showed a decrease in Young's modulus, an increase in Elongation at break, greater flexibility than authentic film, and decreased brittleness. This study confirmed that YLGW01 is a promising strain for industrial PHB production using crude glycerol.
以石化为基础的塑料几乎不可生物降解,是环境污染的主要原因,而聚羟基丁酸酯(PHB)因其相似的性能作为替代品正受到关注。然而,PHB的生产成本很高,被认为是其工业化的最大挑战。在此,粗甘油被用作碳源以更高效地生产PHB。在所研究的18株菌株中,由于其耐盐性和高甘油消耗率,选择了泰安盐单胞菌YLGW01用于生产PHB。此外,当添加前体时,该菌株可以生产3-羟基戊酸摩尔分数为17%的聚(3-羟基丁酸酯-co-3-羟基戊酸酯)(P(3HB-co-3HV))。通过培养基优化和粗甘油的活性炭处理使PHB产量最大化,在分批补料发酵中得到了PHB含量为60%、产量为10.5 g/L的结果。对所生产的PHB的物理性质进行了分析,即重均分子量(6.8×10)、数均分子量(4.4×10)和多分散指数(1.53)。在万能试验机分析中,提取的细胞内PHB显示出杨氏模量降低、断裂伸长率增加、比正品薄膜更具柔韧性以及脆性降低。本研究证实YLGW01是使用粗甘油进行工业生产PHB的有前景的菌株。