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tag discovery evolution genetics genomics

Yeast Made to Harvest Light Hint at Evolution’s Past
Kamal Nahas, PhD | Feb 21, 2024 | 6 min read
Scientists transferred light-harvesting proteins into yeast for the first time, shining a light on the past lives of eukaryotic cells.
Layered visual representation of multiomics
Integrate and Innovate with NGS and Multiomics
The Scientist and Illumina | May 4, 2023 | 6 min read
Researchers across disciplines combine layers of discovery obtained with accessible NGS-based multiomics approaches.
Tapping Into Immunotherapy’s Potential to Help More People
Tapping Into Immunotherapy’s Potential to Help More People
The Scientist Staff | Mar 8, 2024 | 1 min read
Discover what researchers have learned about varying immunotherapy response rates between patients with the same cancer types.
A bat flying in a dark cave
Turning on the Bat Signal
Hannah Thomasy, PhD | Mar 15, 2024 | 10+ min read
Scientists around the world investigate how bat immune systems cope with viral attacks and how this information could be used to keep humans safe.
Cartoon of scientist deciding whether to go down the path of well-studied genes or that of the neglected genes. 
Stepping Into the Unknome
Danielle Gerhard, PhD | Mar 8, 2024 | 5 min read
A database of neglected genes may help unlock the mysteries hiding in the overlooked regions of the proteome.
One Protein to Rule Them All
Shelby Bradford, PhD | Feb 28, 2024 | 10+ min read
p53 is possibly the most important protein for maintaining cellular function. Losing it is synonymous with cancer.
illustration of DNA strands
Mitochondrial DNA Sneaks into Nuclear Genome
Holly Barker, PhD | Oct 17, 2022 | 3 min read
Genetic material pilfered from mitochondria may seal cracks in our genetic code, a study suggests.
Understanding Cancer Evolution Through the Lens of Single Cell Genomics
Understanding Cancer Evolution Through the Lens of Single Cell Genomics
The Scientist | Oct 14, 2021 | 1 min read
Nicholas Navin and Lars Velten discuss sampling, sequencing, and tracing single cells to study how cancer cells adapt to various environments.
This shows a cryo-EM map of a Fanzor protein in complex with its guiding RNA (in purple) and DNA (target strand in red, complementary strand in blue).
CRISPR-like Abilities in Eukaryotic Proteins
Ida Emilie Steinmark, PhD | Sep 8, 2023 | 4 min read
Two groups independently discovered that Fanzor proteins in eukaryotic organisms are CRISPR’s genome-editing cousins.
Artist’s rendering of a reflective metallic DNA double helix.
Humans Are Still Evolving Thanks to Microgenes
Natalia Mesa, PhD | Jan 4, 2023 | 3 min read
A study sheds light on the tiny genes that have evolved in human genomes since we split from our mammalian ancestors.

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