生物合成
生产(经济)
染色
原子经济
代谢工程
纳米技术
织物
组合化学
化学
计算机科学
构造(python库)
生产成本
生化工程
级联
纺织工业
醇脱氢酶
合成生物学
计算生物学
作者
Na Qi,Xiaowang Zhang,Linna Long,Siyu Qi,Zhiyu Zhang,Ruoyu Zhi,Zhuotao Tan,Hanjie Ying,Chenjie Zhu
标识
DOI:10.1038/s41467-025-67935-7
摘要
The textile dyeing industry has shaped modern aesthetics through vibrant coloration technologies. Indigoid dyes embody this potential but are hindered by the hazardous chemo-synthesis and water-intensive chemo-dyeing processes. While biosynthesis and bio-dyeing efforts offer alternatives, disjointed synthesis-dyeing steps lead to unsustainable water and energy demands, and complex biosynthetic pathways cause low atom economy and inefficiency. Here, we report a one-pot one-step approach that unifies biosynthesis and bio-dyeing of indigoids to drastically reduce water usage in the dyeing process. By combining alcohol dehydrogenase with flavin-containing monooxygenase, we construct an artificial redox-neutral cascade biosynthetic pathway to produce bluish-violet indigoid dyes, which significantly enhances atom economy and achieves high production efficiency. Various natural and synthetic fabrics are dyed in-situ with the biosynthetic indigoids utilizing recombinant E. coli whole cells. Crucially, this system dyes synthetic nylon fibers with the historic purple hue.
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