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tag artificial selection genetics genomics culture microbiology developmental biology

bacteria and DNA molecules on a purple background.
Engineering the Microbiome: CRISPR Leads the Way
Mariella Bodemeier Loayza Careaga, PhD | Mar 15, 2024 | 10+ min read
Scientists have genetically modified isolated microbes for decades. Now, using CRISPR, they intend to target entire microbiomes.
Illustration showing a puzzle piece of DNA being removed
Large Scientific Collaborations Aim to Complete Human Genome
Brianna Chrisman and Jordan Eizenga | Sep 1, 2022 | 10+ min read
Thirty years out from the start of the Human Genome Project, researchers have finally finished sequencing the full 3 billion bases of a person’s genetic code. But even a complete reference genome has its shortcomings.
A rendering of a human brain in blue on a dark background with blue and white lines surrounding the brain to represent the construction of new connections in the brain.
Defying Dogma: Decentralized Translation in Neurons
Danielle Gerhard, PhD | Sep 8, 2023 | 10+ min read
To understand how memories are formed and maintained, neuroscientists travel far beyond the cell body in search of answers.
Microbiology Vigil: Probing What's Out There
Jeffrey Perkel | May 4, 2003 | 9 min read
Courtesy of Mary Ann Moran  THE MICROBE HUNTER: University of Georgia graduate student Justine Lyons uses new molecular approaches to study the diversity of bacteria and fungi in a coastal salt marsh on Georgia's Sapelo Island. An outbreak of Salmonellosis erupted in Ohio, Michigan, Georgia, and Alabama during the winter of 1981. Frustrated epidemiologists could find no common link, until they finally realized what all the victims had in common: marijuana.1 Samples of pot used by some pa
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.
Researchers Blast Open Pathogen Genome
Barry Palevitz | Aug 18, 2002 | 6 min read
Image: Courtesy of Tim Elkins BRUTE FORCE: Remnant of an appressorium formed on Mylar. The appressorium produced a peg-like extension that penetrated the film, leaving a round hole. (Reprinted with permission, Annual Review of Microbiology, 50:491-512, 1996.) "The Lord shall smite thee with a consumption, and with a fever, and with an inflammation, and with an extreme burning, and with the sword, and with BLASTING, and with mildew; and they shall pursue thee until thou perish." Deuteronom
A Selection of CRISPR Proof-of-Principle Studies
Kelly Rae Chi | Mar 1, 2017 | 7 min read
Advice on how to deploy the latest techniques in your own lab
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.
Ghosts in the Genome
Oliver J. Rando | Dec 1, 2015 | 10+ min read
How one generation’s experience can affect the next
Genetic Parasites and a Whole Lot More
Barry Palevitz | Oct 15, 2000 | 10+ min read
Photo: Ori Fragman, Hebrew University Hordeum spontaneum, the plant studied for BARE-1 retroelements. With genome sequences arriving almost as regularly as the morning paper, the public's attention is focused on genes--new genes to protect crops against pests; rogue genes that make bacteria resistant to antibiotics; faulty genes that, if fixed, could cure diseases such as muscular dystrophy. What many people don't realize is that genes account for only part of an organism's DNA, and in many c

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