Related Experiment Video
Updated: Jun 17, 2026

Optogenetic Random Mutagenesis Using Histone-miniSOG in C. elegans
Published on: November 14, 2016
Improving cellular properties for genetic manipulation by dispersed growing mutagenesis in Myxococcus fulvus HW-1
Cui-ying Zhang1, Ke Cai, Zhi-hong Wu
1Shandong University, Jinan, People's Republic of China. zhangcuiying2009@hotmail.com
Abstract:
One of the key limitations to genetic manipulation in myxobacteria is that the cells grow in clumps in liquid. A salt-tolerant strain HW-1 of Myxococcus fulvus was treated with UV irradiation and produced a completely dispersedly growing mutant UV684. There were no significant differences between the parent HW-1 and the mutant UV684 in terms of salt-tolerant growth. The mutant UV684 and the parent strain had the similar abilities of the fruiting body formation and S motility. Interestingly, the mutant exhibited high transformation/transposition efficiency with 10(5)-10(6) colony-forming units per microg DNA, which was about 10(3)-10(5) fold higher than HW-1. The results indicate that the mutation that led to dispersed growth in the UV684 mutant strain had a few impacts on social behavior, but greatly facilitated molecular genetic manipulation.
Related Concept Videos
In vitro Mutagenesis
In-vitro Mutagenesis

