The root of Arabidopsis thaliana provides a paradigmatic system for understanding how cell division and differentiation coordinate to generate a functional organ. At the apex lies the root apical ...
Simulating the complete life cycle of a minimal bacterial cell in 4D (space and time)—from DNA replication to protein translation to metabolism and cell division—at nanoscale resolution has ...
Every day, our bodies perform around 330 billion cell divisions to keep us alive and functioning. These divisions rely on the cell cycle, which has been in place since the earliest bacteria. The ...