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tag fire ants developmental biology evolution genetics genomics

On the left is a normally developing mouse embryo, on the right is a slightly larger mouse embryo that also contains horse cells that glow green.
Chimera research opens new doors to understanding and treating disease
Hannah Thomasy, PhD, Drug Discovery News | Aug 9, 2023 | 10 min read
Animals with human cells could provide donor organs or help us understand neuropsychiatric disorders.
The Genetics of Society
Claire Asher and Seirian Sumner | Jan 1, 2015 | 10 min read
Researchers aim to unravel the molecular mechanisms by which a single genotype gives rise to diverse castes in eusocial organisms.
Fire Fly
Karen Hopkin | Mar 1, 2007 | 7 min read
UC Berkeley's Mike Levine almost became a physician. Lucky for research, he didn't.
Hacking the Genome
Karen Hopkin | Jun 1, 2012 | 9 min read
In pondering genome structure and function, evolutionary geneticist Laurence Hurst has arrived at some unanticipated conclusions about how natural selection has molded our DNA.
An illustration of green bacteria floating above neutral-colored intestinal villi
The Inside Guide: The Gut Microbiome’s Role in Host Evolution
Catherine Offord | Jul 1, 2021 | 10+ min read
Bacteria that live in the digestive tracts of animals may influence the adaptive trajectories of their hosts.
bacteria inside a biofilm
How Bacterial Communities Divvy up Duties
Holly Barker, PhD | Jun 1, 2023 | 10+ min read
Biofilms are home to millions of microbes, but disrupting their interactions could produce more effective antibiotics.
Unleashing genetic diversity
Melissa Lee Phillips | Feb 2, 2006 | 3 min read
Mutation in hormonal pathway can reveal environment-dependent phenotypes
Top 10 Innovations 2021
2021 Top 10 Innovations
The Scientist | Dec 1, 2021 | 10+ min read
The COVID-19 pandemic is still with us. Biomedical innovation has rallied to address that pressing concern while continuing to tackle broader research challenges.
Microbial Co-op in Evolution
Eugene Russo | Oct 5, 2003 | 7 min read
Courtesy of Michiel Vos, Max Planck Institute, Tübingen, Germany  FRUIT FOR THE HUNGRY: Myxococcus fruiting bodies emerge from soil particles in response to starvation. Approximately 100,000 cells aggregate and communicate via chemical signals to form the bodies, and a portion of the population differentiates into stress-resistant spores. Most microbiologists consider used flasks, laden with splotches of colonizing bacteria, simply more dishes to wash. Paul Rainey sees more. For Rai
The Rainbow Connection
Kerry Grens | Oct 1, 2014 | 10+ min read
Color vision as we know it resulted from one fortuitous genetic event after another.

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