news.cornell.edu/stories/2025/05/researchers-develop-new-method-studying-tb-other-organisms-go-dormant

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https://news.cornell.edu/stories/2025/05/researchers-develop-new-method-studying-tb-other-organisms-go-dormant

New method explores dormancy in TB, other organisms | Cornell Chronicle

A new computational method developed by researchers at Cornell sheds light on how going dormant – sometimes for multiple generations – has affected the evolution of the tuberculosis bacterium and other organisms that can temporarily drop out of the gene pool.



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New method explores dormancy in TB, other organisms | Cornell Chronicle

https://news.cornell.edu/stories/2025/05/researchers-develop-new-method-studying-tb-other-organisms-go-dormant

A new computational method developed by researchers at Cornell sheds light on how going dormant – sometimes for multiple generations – has affected the evolution of the tuberculosis bacterium and other organisms that can temporarily drop out of the gene pool.



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https://news.cornell.edu/stories/2025/05/researchers-develop-new-method-studying-tb-other-organisms-go-dormant

New method explores dormancy in TB, other organisms | Cornell Chronicle

A new computational method developed by researchers at Cornell sheds light on how going dormant – sometimes for multiple generations – has affected the evolution of the tuberculosis bacterium and other organisms that can temporarily drop out of the gene pool.

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      A new computational method developed by researchers at Cornell sheds light on how going dormant – sometimes for multiple generations – has affected the evolution of the tuberculosis bacterium and other organisms that can temporarily drop out of the gene pool.
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      A new computational method developed by researchers at Cornell sheds light on how going dormant – sometimes for multiple generations – has affected the evolution of the tuberculosis bacterium and other organisms that can temporarily drop out of the gene pool.
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      New method explores dormancy in TB, other organisms | Cornell Chronicle
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      A new computational method developed by researchers at Cornell sheds light on how going dormant – sometimes for multiple generations – has affected the evolution of the tuberculosis bacterium and other organisms that can temporarily drop out of the gene pool.
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      A new computational method developed by researchers at Cornell sheds light on how going dormant – sometimes for multiple generations – has affected the evolution of the tuberculosis bacterium and other organisms that can temporarily drop out of the gene pool.
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