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E. coli Engineered Into a Self-Powered Mercury Sensor

18 August 20251 min read
SCIENCE & TECHNOLOGYE. coli EngineeredInto aSelf-PoweredMercury Sensor18 August 2025safalsetu.com

Why in the news

Scientists have turned genetically engineered E. coli into a whole-cell biosensor that detects mercury and produces an electrical output. The work comes from Imperial College London and Zhejiang University.

Key facts

  • Trigger: mercury in water activates the MerR protein, which acts as a molecular switch.
  • Response: the bacteria make phenazines, molecules that interact with an electrode.
  • Signal: the resulting current grows stronger as mercury concentration rises.
  • Goal: cheap, self-powered, programmable biosensors.
ComponentRole
E. coli (engineered)Living sensor
MerR proteinDetects mercury and acts as a switch
PhenazinesCarry electrons to the electrode
ElectrodeReads the current

About whole-cell biosensors

Unlike enzyme-based sensors, which are fragile and costly, living microbes are more durable and cheaper, and can regenerate themselves. Possible uses include detecting toxins in drinking water, tracking aquatic pollution, early warnings of contamination and portable field devices. The work also advances programmable bioelectronics.

Exam angle

  • Link it with synthetic biology and heavy-metal pollution.
  • Remember the sensing chain: mercury, MerR, phenazines, current.
  • Mercury is a toxic heavy metal in water pollution questions.

Test yourself

1. Which protein switches on when engineered E. coli senses mercury?

Mercury activates the MerR protein, which triggers phenazine production.

2. Which molecules made by the bacteria generate the electrical signal at the electrode?

The bacteria produce phenazines, which interact with an electrode to create current.

3. Which two institutions developed the mercury-sensing E. coli?

The work was done by Imperial College London and Zhejiang University.

Sources: Insights on India - E. coli Turned into Mercury Sensor, Drishti IAS News Analysis 19 Aug 2025