Javascript must be enabled to continue!
Engineered bacterial swarm patterns as spatial records of environmental inputs
View through CrossRef
AbstractA diverse array of bacteria species naturally self-organize into durable macroscale patterns on solid surfaces via swarming motility—a highly coordinated, rapid movement of bacteria powered by flagella1–5. Engineering swarming behaviors is an untapped opportunity to increase the scale and robustness of coordinated synthetic microbial systems. Here we engineer Proteus mirabilis, which natively forms centimeter-scale bullseye patterns on solid agar through swarming, to “write” external inputs into a visible spatial record. Specifically, we engineer tunable expression of swarming-related genes that accordingly modify pattern features, and develop quantitative approaches to decode input conditions. Next, we develop a two-input system that modulates two swarming-related genes simultaneously, and show the resulting patterns can be interpreted using a deep learning classification model. Lastly, we show a growing colony can record dynamic environmental changes, which can be decoded from endpoint images using a segmentation model. This work creates an approach for building a macroscale bacterial recorder and expands the framework for engineering emergent microbial behaviors.
Cold Spring Harbor Laboratory
Title: Engineered bacterial swarm patterns as spatial records of environmental inputs
Description:
AbstractA diverse array of bacteria species naturally self-organize into durable macroscale patterns on solid surfaces via swarming motility—a highly coordinated, rapid movement of bacteria powered by flagella1–5.
Engineering swarming behaviors is an untapped opportunity to increase the scale and robustness of coordinated synthetic microbial systems.
Here we engineer Proteus mirabilis, which natively forms centimeter-scale bullseye patterns on solid agar through swarming, to “write” external inputs into a visible spatial record.
Specifically, we engineer tunable expression of swarming-related genes that accordingly modify pattern features, and develop quantitative approaches to decode input conditions.
Next, we develop a two-input system that modulates two swarming-related genes simultaneously, and show the resulting patterns can be interpreted using a deep learning classification model.
Lastly, we show a growing colony can record dynamic environmental changes, which can be decoded from endpoint images using a segmentation model.
This work creates an approach for building a macroscale bacterial recorder and expands the framework for engineering emergent microbial behaviors.
Related Results
Evolution of Antimicrobial Resistance in Community vs. Hospital-Acquired Infections
Evolution of Antimicrobial Resistance in Community vs. Hospital-Acquired Infections
Abstract
Introduction
Hospitals are high-risk environments for infections. Despite the global recognition of these pathogens, few studies compare microorganisms from community-acqu...
Swarm A and C Accelerometer - data analysis and scientific outcome
Swarm A and C Accelerometer - data analysis and scientific outcome
The ESA Swarm mission was launched in November 2013, and it consists of a constellation of three identical satellites. The main mission objective is to model and analyze the geomag...
Longitudinal Gradients in Field-Aligned Currents as Observed by Swarm
Longitudinal Gradients in Field-Aligned Currents as Observed by Swarm
<p>Field-aligned currents (FACs) are closely related to aurora and a key component of the magnetosphere-ionosphere-thermosphere system. Large scale FAC structures, li...
Materialism and Environmental Knowledge as a Mediator for Relationships between Religiosity and Ethical Consumption
Materialism and Environmental Knowledge as a Mediator for Relationships between Religiosity and Ethical Consumption
ABSTRACTOn a global and regional scale, Indonesia has one of the least environmentally sustainable economies in the Asia-Pacific region. Consumption is one of the key factors contr...
Bacterial Meningitis among Adult Patients at University of Gondar Comprehensive Specialized Referral Hospital: Prevalence and Antimicrobial Susceptibility Patterns
Bacterial Meningitis among Adult Patients at University of Gondar Comprehensive Specialized Referral Hospital: Prevalence and Antimicrobial Susceptibility Patterns
Abstract
Background: Bacterial meningitis is a bacterial infection that causes inflammation of the membranes that surround the brain and spinal cord. The most frequent caus...
Enhancement of Surface-Enhanced Raman Spectroscopy for Bacterial Characterization Using Functionalized Silver Nanoparticles
Enhancement of Surface-Enhanced Raman Spectroscopy for Bacterial Characterization Using Functionalized Silver Nanoparticles
Surface-enhanced Raman Spectroscopy (SERS) has gained considerable interest as an effective method for bacterial detection owing to its exceptional sensitivity and ability to ident...
Spectrum of bacterial keratitis at a tertiary eye center in Indonesia
Spectrum of bacterial keratitis at a tertiary eye center in Indonesia
ABSTRACT
The purpose of this study is to analyze the bacterial spectrum and antibiotic susceptibility patterns in bacterial kerat...
Quantum Behaved Particle Swarm Optimization Algorithm Based on Artificial Fish Swarm
Quantum Behaved Particle Swarm Optimization Algorithm Based on Artificial Fish Swarm
Quantum behaved particle swarm algorithm is a new intelligent optimization algorithm; the algorithm has less parameters and is easily implemented. In view of the existing quantum b...

