Kim Sangwoo, Lee Wangjun, Song Insu, Kwon Yuhyun, Yun Seokhun, Park Soohyun, Cho Sukhyeong, Oh Byung-Keun, Oh Han Bin, Lee Jinwon
Department of Chemical and Biomolecular Engineering, Sogang University, 35, Baekbeom-ro, Mapo-gu, Seoul 04107, Republic of Korea.
Department of Chemistry, Sogang University, 35, Baekbeom-ro, Mapo-gu, Seoul 04107, Republic of Korea.
J Biotechnol. 2016 Dec 20;240:43-47. doi: 10.1016/j.jbiotec.2016.10.019. Epub 2016 Oct 21.
Methane is an abundant, inexpensive one-carbon feedstock and one of the most powerful greenhouse gases. Because it does not compete with food demand, it is considered a promising carbon feedstock for the production of valuable products using methanotrophic bacteria. Here, we isolated a novel methanotrophic bacterium, Methylomonas sp. SW1, from a sewage sample obtained from Wonju City Water Supply Drainage Center, Republic of Korea. The conditions for uracil production by Methylomonas sp. SW1, such as Cu concentration and temperature were investigated and optimized. As a result, Methylomonas sp. SW1 produced uracil from methane as a sole carbon source with a titer of 2.1mg/L in 84h without genetic engineering under the optimized condition. The results in this study demonstrate the feasibility of using Methylomonas sp. SW1 for the production of uracil from methane. This is the first report of uracil production from gas feedstock by methanotrophic bacteria.
甲烷是一种丰富且廉价的一碳原料,也是最强大的温室气体之一。由于它不与食物需求竞争,因此被认为是利用甲烷营养细菌生产有价值产品的一种有前景的碳原料。在此,我们从韩国原州市供水排水中心获得的污水样本中分离出一种新型甲烷营养细菌——甲基单胞菌属SW1。研究并优化了甲基单胞菌属SW1生产尿嘧啶的条件,如铜浓度和温度。结果表明,在优化条件下,甲基单胞菌属SW1无需基因工程,就能以甲烷作为唯一碳源在84小时内生产出效价为2.1mg/L的尿嘧啶。本研究结果证明了利用甲基单胞菌属SW1从甲烷生产尿嘧啶的可行性。这是关于甲烷营养细菌从气体原料生产尿嘧啶的首次报道。