Science Daily·3 min read·medium

MIT turns bacteria into living transistors

MIT turns bacteria into living transistors
AI Summary

MIT researchers have successfully engineered bacterial cells to function as biological transistors, creating modular 'circuit boards' that can be printed on growth material. These living circuits can process environmental information and perform logic functions, offering potential applications in agriculture and biotechnology.

Why it matters

This breakthrough in synthetic biology could allow for the creation of 'smart' biological systems capable of monitoring and responding to environmental stressors in real-time.

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MIT researchers have engineered bacteria to work like transistors, creating living "circuit boards" that can be printed onto growth material inside a Petri dish.

In conventional electronics, transistors act as switches that control whether electrical current can pass through a circuit. In the MIT system, engineered bacterial cells perform a similar role by regulating the movement of small signaling molecules. Those molecules then carry information to other components in the biological circuit.

The researchers created two types of bacterial transistors and three additional bacterial strains that act as relays between them. Together, these five strains provide a modular set of components that can be arranged to build nearly any kind of circuit. In the new study, the team demonstrated circuits capable of adding two or three inputs and directing a single input toward a selected destination.

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