By simulating the life cycle of a minimal bacterial cell—from DNA replication to protein translation to metabolism and cell ...
A remarkably small bacterium containing fewer than 500 genes serves as the basis for one of the most detailed digital life ...
Researchers simulated nearly every molecule in a bacterial cell — and then watched the cell grow and reproduce.
By simulating the life cycle of a minimal bacterial cell, from DNA replication to protein translation to metabolism and cell division, scientists have opened a new frontier of computer vision into the ...
Scientists have uncovered a surprising new way that giant embryonic cells divide—without relying on the classic “purse-string” ring long thought essential for splitting a cell in two. Studying ...
Biologists at the National University of Singapore (NUS) have uncovered how the protein NuSAP safeguards tiny structures inside cells called ...
Scientists have identified genes that allow plants to pause root growth during environmental stress and restart it when conditions improve.
A simulated cell in the early stages of division. Left half shows membrane (green cubes), and ribosomes (yellow/purple) interwoven through in the cell’s chromosome (red). Right side shows all the ...
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