Soham Dibyachintan
sohamdibyachintan.bsky.social
Soham Dibyachintan
@sohamdibyachintan.bsky.social
Ph.D. student Landry Lab
gene duplication, cell signaling, protein evolution, full time member of the APOYG cult
Reposted by Soham Dibyachintan
Our Review is free to read here: rdcu.be/e4CYK
July 1, 2026 at 3:51 PM
Reposted by Soham Dibyachintan
Evolutionary causes and consequences of gene duplication www.nature.com/articles/s41... 🧬💻🧪 (🔓 rdcu.be/e4CYK)
February 21, 2026 at 9:00 PM
Reposted by Soham Dibyachintan
Our new review about the evolutionary causes and consequences of gene duplication is out!!! We delve into the various adaptive and non-adaptive forces which shape the fate of gene duplicates uncovered across the last decade through cutting edge experimental and computational techniques
February 16, 2026 at 5:09 PM
Our new review about the evolutionary causes and consequences of gene duplication is out!!! We delve into the various adaptive and non-adaptive forces which shape the fate of gene duplicates uncovered across the last decade through cutting edge experimental and computational techniques
February 16, 2026 at 5:09 PM
Reposted by Soham Dibyachintan
How does cryptic genetic variation influence the long-term fate of gene duplicates (paralogs)?
Our new study addresses this question by dissecting the evolutionary potential of redundant myosin paralogs in yeast nature.com/articles/s41... (1/12)
Cryptic genetic variation shapes the fate of gene duplicates in a protein interaction network - Nature Communications
Over time, paralogous genes accumulate changes in their sequences that do not affect their function, which is called cryptic variation. Using paralogous myosins, this study shows how cryptic variation...
nature.com
June 1, 2025 at 11:27 PM
Reposted by Soham Dibyachintan
Fantastic study of the evolution of epistasis in paralogs!
June 2, 2025 at 11:27 AM
How does cryptic genetic variation influence the long-term fate of gene duplicates (paralogs)?
Our new study addresses this question by dissecting the evolutionary potential of redundant myosin paralogs in yeast nature.com/articles/s41... (1/12)
Cryptic genetic variation shapes the fate of gene duplicates in a protein interaction network - Nature Communications
Over time, paralogous genes accumulate changes in their sequences that do not affect their function, which is called cryptic variation. Using paralogous myosins, this study shows how cryptic variation...
nature.com
June 1, 2025 at 11:27 PM