Mango Materials, 490 Lake Park Ave #16098, Oakland, CA 94610, United States.
Mango Materials, 490 Lake Park Ave #16098, Oakland, CA 94610, United States.
Curr Opin Chem Biol. 2017 Dec;41:123-131. doi: 10.1016/j.cbpa.2017.10.024. Epub 2017 Nov 29.
Methanotrophs have been studied since the 1970s, but interest has increased tremendously in recent years due to their potential to transform methane into valuable bioproducts. The vast quantity of available methane and the low price of methane as natural gas have helped to spur this interest. The most well-studied, biologically-derived products from methane include methanol, polyhydroxyalkanoates, and single cell protein. However, many other high-interest chemicals such as biofuels or high-value products such as ectoine could be made industrially relevant through metabolic engineering. Although challenges must be overcome to achieve commercialization of biologically manufactured methane-to-products, taking a holistic view of the production process or radically re-imagining pathways could lead to a future bioeconomy with methane as the primary feedstock.
自 20 世纪 70 年代以来,人们一直在研究产甲烷菌,但近年来,由于它们有可能将甲烷转化为有价值的生物制品,人们对其兴趣大增。大量可用的甲烷和作为天然气的甲烷的低价,有助于激发这种兴趣。从甲烷中获得的研究最充分、最具生物衍生性的产品包括甲醇、聚羟基烷酸酯和单细胞蛋白。然而,许多其他高价值的化学品,如生物燃料,或高附加值的产品,如章鱼胺,可以通过代谢工程使它们在工业上具有相关性。尽管在实现生物制造的甲烷转化为产品的商业化方面必须克服挑战,但从生产过程的整体角度来看,或者从根本上重新想象途径,可能会导致未来的生物经济以甲烷为主要原料。