In previous work (D. R. Harris et al., J Bacteriol 191:5240-5252, 2009, https://doi.org/10.1128/JB.00502-09; B. T. Byrne et al., Elife 3:e01322, 2014, https://doi.org/10.7554/eLife.01322), we demonstrated that Escherichia coli could acquire substantial levels of resistance to ionizing radiation (IR) via directed evolution. Major phenotypic contributions involved adaptation of organic systems for DNA repair. We have now undertaken an extended effort to generate E. coli populations that are as resistant to IR as Deinococcus radiodurans After an initial 50 cycles of selection using high-energy electron beam IR, four replicate populations exhibit major increases in IR resistance but have not yet reached IR resistance equivalent to D. radioduran...
Adaptation to extreme desiccation has conferred extraordinary radiation resistance on the bacterium ...
The last 50 years, a variety of archaea and bacteria able to withstand extremely high doses of ioniz...
The last 50 years, a variety of archaea and bacteria able to withstand extremely high doses of ioniz...
In previous work (D. R. Harris et al., J Bacteriol 191:5240-5252, 2009, https://doi.org/10.1128/JB.0...
We have generated extreme ionizing radiation resistance in a relatively sensitive bacterial species,...
Ionizing radiation (IR) is lethal to most organisms at high doses, damaging every cellular macromole...
By directed evolution in the laboratory, we previously generated populations of Escherichia coli tha...
By directed evolution in the laboratory, we previously generated populations of Escherichia coli tha...
Ionizing radiation (IR) is lethal to most organisms at high doses, damaging every cellular macromole...
By directed evolution in the laboratory, we previously generated populations of Escherichia coli tha...
To further an improved understanding of the mechanisms used by bacterial cells to survive extreme ex...
We have previously generated four replicate populations of ionizing radiation (IR)-resistant Escheri...
We have previously generated four replicate populations of ionizing radiation (IR)-resistant Escheri...
Deinococcus bacteria are extremely resistant to radiation, oxidation, and desiccation. Resilience to...
Abstract Abstract Abstract Abstract Abstract Gamma radiation acts directly on the cellular component...
Adaptation to extreme desiccation has conferred extraordinary radiation resistance on the bacterium ...
The last 50 years, a variety of archaea and bacteria able to withstand extremely high doses of ioniz...
The last 50 years, a variety of archaea and bacteria able to withstand extremely high doses of ioniz...
In previous work (D. R. Harris et al., J Bacteriol 191:5240-5252, 2009, https://doi.org/10.1128/JB.0...
We have generated extreme ionizing radiation resistance in a relatively sensitive bacterial species,...
Ionizing radiation (IR) is lethal to most organisms at high doses, damaging every cellular macromole...
By directed evolution in the laboratory, we previously generated populations of Escherichia coli tha...
By directed evolution in the laboratory, we previously generated populations of Escherichia coli tha...
Ionizing radiation (IR) is lethal to most organisms at high doses, damaging every cellular macromole...
By directed evolution in the laboratory, we previously generated populations of Escherichia coli tha...
To further an improved understanding of the mechanisms used by bacterial cells to survive extreme ex...
We have previously generated four replicate populations of ionizing radiation (IR)-resistant Escheri...
We have previously generated four replicate populations of ionizing radiation (IR)-resistant Escheri...
Deinococcus bacteria are extremely resistant to radiation, oxidation, and desiccation. Resilience to...
Abstract Abstract Abstract Abstract Abstract Gamma radiation acts directly on the cellular component...
Adaptation to extreme desiccation has conferred extraordinary radiation resistance on the bacterium ...
The last 50 years, a variety of archaea and bacteria able to withstand extremely high doses of ioniz...
The last 50 years, a variety of archaea and bacteria able to withstand extremely high doses of ioniz...