How the Mouse ENCODE Project is unlocking the secrets of our DNA through functional genomics research using mouse models.
Discover how whole-genome sequencing of Bradyrhizobium diazoefficiens reveals molecular insights into nitrogen fixation and sustainable agriculture.
Discover how noncoding DNA, once considered junk, contains crucial regulatory elements that control gene expression and shape biological complexity.
Discover how conserved noncoding elements drive dramatic evolutionary changes in Caenorhabditis inopinata, challenging our understanding of genetic evolution.
Discover how identifying common DNA sequences across therapeutic targets could revolutionize treatment for complex diseases like cancer, diabetes, and Alzheimer's.
Discover how gene ontologies transformed functional genomics and revealed the intricate dependencies between biological processes through computational analysis.
Discover how structural genomic variations - large-scale DNA rearrangements - are shaping evolution and diversity in natural populations.
Discover how functional genomics uncovered the master switches controlling our immune system's powerful oxidative burst mechanism.
Discover how patient-specific genomics and cross-species analysis revealed LRP2's role in hypoplastic left heart syndrome, a rare congenital heart condition.
Discover the fascinating head-to-head arrangement of IDH gamma and TRAP delta genes on human Xq28 and its evolutionary significance across mammalian species.