‘Broadband’ Networks of Viruses May Help Bacteria Evolve Faster

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According to (This article and its images were originally posted on Quanta Magazine October 16, 2018 at 11:35AM.)

Bacteria have a sneaky evolutionary advantage: their own version of the internet for swapping survival solutions. It’s a living network of viruses that can shuttle genetic information between unrelated cells. Known as transduction, this process is one of the ways that bacteria can bypass the generation-by-generation plodding of vertical inheritance and instead share information horizontally, enabling genes slowly shaped by natural selection to enter a new population in an instant.

Scientists have known this transduction network must influence bacterial evolution across the sweep of centuries, but they presumed its short-term impact might be limited because transduction events seemed rare. A study published last week in Science, however, discovered a new mechanism of transduction that occurs 1,000 times more often, and that may accelerate bacterial evolution to a similar degree. Transduction may in fact be a central force in bacterial evolution.

“We had assumed that transduction occurred at rates analogous to dial-up internet,” said John Chen, an assistant professor of microbiology and immunology at the National University of Singapore and a lead co-author on this study. “But it appears that in some cases, transduction rates are more akin to broadband.” Their results not only suggest that transduction makes horizontal gene transfer much more common, but also that this bacterial internet might have been shaped by selection for the benefit of both bacteria and the viruses called bacteriophages.


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This article and images were originally posted on [Quanta Magazine] October 16, 2018 at 11:35AM. Credit to the original author and Quanta Magazine | ESIST.T>G>S Recommended Articles Of The Day.




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