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tag c elegans microbiology genetics genomics disease medicine

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.
a close-up photo of C. elegans worms
Eyeless C. elegans Perceives Colors: Study
Shawna Williams | Mar 4, 2021 | 4 min read
The roundworm uses cues from visible light to help avoid eating toxic bacteria with a distinguishing hue.
Haydeh Payami is wearing a purple dress and an orange and pink scarf and standing in front of a whiteboard.
A Microbial Link to Parkinson’s Disease
Mariella Bodemeier Loayza Careaga, PhD | Dec 4, 2023 | 6 min read
Haydeh Payami helped uncover the genetic basis of Parkinson’s disease. Now, she hopes to find new ways to treat the disease by studying the gut microbiome.
Group Unveils Worm's Complete Genetic Blueprint
Karen Hopkin | Jan 3, 1999 | 3 min read
December 10 marked another "major milestone" in molecular biology. An international consortium of scientists announced that they have obtained the first complete genetic blueprint of a complex animal. C. elegans Researchers from Washington University in St. Louis and the Sanger Centre in Cambridge, U.K., have sequenced the 97 million-base genome of Caenorhabditis elegans, biologists' favorite worm. The product of a nine-year effort, the C. elegans sequence joins those of E. coli and yeast in
Scientists Clone SARS-CoV-2 Genome with Quick Yeast-Based Method
Ruth Williams | May 6, 2020 | 4 min read
The use of yeast artificial chromosomes has enabled the rapid genetic reconstruction of the novel coronavirus.
An Introduction to Metabolomics
An Introduction to Metabolomics
Rebecca Roberts, PhD | Oct 17, 2023 | 5 min read
As the closest reflection of biological phenotype, metabolomics provides critical information about human health and disease.
Researchers in George Church&rsquo;s lab modified wild type ADK proteins (left) in <em >E.coli</em>, furnishing them with an nonstandard amino acid (nsAA) meant to biocontain the resulting bacterial strain.
A Pioneer of The Multiplex Frontier
Rashmi Shivni, Drug Discovery News | May 20, 2023 | 10 min read
George Church is at it again, this time using multiplex gene editing to create virus-proof cells, improve organ transplant success, and protect elephants.
A fruit bat in the hands of a researcher
How an Early Warning Radar Could Prevent Future Pandemics
Amos Zeeberg, Undark | Feb 27, 2023 | 8 min read
Metagenomic sequencing can help detect unknown pathogens, but its widespread use faces challenges.
Bacteria and Humans Have Been Swapping DNA for Millennia
Kelly Robinson and Julie Dunning Hotopp | Oct 1, 2016 | 8 min read
Bacteria inhabit most tissues in the human body, and genes from some of these microbes have made their way to the human genome. Could this genetic transfer contribute to diseases such as cancer?
A Genetic Checkup: Lessons from Huntington Disease and Cystic Fibrosis
Ricki Lewis | Oct 19, 2003 | 9 min read
Thom Graves Media While genome sequencing may be the new kid on the block--perhaps now with a cracking voice and fuzzy facial hair--predicting phenotypes is the stuff of classical genetics, honed on the rare single-gene disorders, such as Huntington disease (HD) and cystic fibrosis (CF), which dominated the field in the last century (see Genetic Testing Timeline). "Geneticists today are portrayed as soothsayers of the future. But predictive medicine and testing has a significant history," says

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