Chromosome-free bacterial cells are safe and programmable platforms for synthetic biology
Catherine Fan(University of Oxford), Wei E. Huang(University of Oxford), Hong Zeng(University of Oxford), Frank Schmidt(Weill Cornell Medical College in Qatar), Helen Townley(University of Oxford), Manuela Gesell Salazar(Universitätsmedizin Greifswald), Paul A. Davison(University of Cambridge), Ian P. Thompson(University of Oxford), Aidong Yang(RWTH Aachen University), Hua Ye(Zunyi Medical University), Robert Habgood(University of Oxford), Christoph M. Decker(Universitätsmedizin Greifswald), Khemmathin Lueangwattanapong(University of Oxford), Zhanfeng Cui(University of Oxford), C. Neil Hunter(The Hunterian)
Cited by 62
Related Papers
The <i>TRANSPARENT TESTA GLABRA1</i> Locus, Which Regulates Trichome Differentiation and Anthocyanin Biosynthesis in Arabidopsis, Encodes a WD40 Repeat Protein
|The Plant Cell|1999|969
RT‐LAMP for rapid diagnosis of coronavirus SARS‐CoV‐2
|Microbial Biotechnology|2020|527
Tracking heavy water (D <sub>2</sub> O) incorporation for identifying and sorting active microbial cells
|Proceedings of the National Academy of Sciences|2014|474
Raman Microscopic Analysis of Single Microbial Cells
|Analytical Chemistry|2004|416