Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Unveiling bacterial communication with a MATLAB GUI implementing the diffusion-based quorum sensing model

View through CrossRef
AbstractBacteria employ quorum sensing as a remarkable mechanism for coordinating behaviors and communicating within their communities. In this study, we introduce a MATLAB Graphical User Interface (GUI) that offers a versatile platform for exploring the dynamics of quorum sensing. Our computational framework allows for the assessment of quorum sensing, the investigation of parameter dependencies, and the prediction of minimum biofilm thickness required for its initiation. A pivotal observation from our simulations underscores the pivotal role of the diffusion coefficient in quorum sensing, surpassing the influence of bacterial cell dimensions. Varying the diffusion coefficient reveals significant fluctuations in autoinducer concentration, highlighting its centrality in shaping bacterial communication. Additionally, our GUI facilitates the prediction of the minimum biofilm thickness necessary to trigger quorum sensing, a parameter contingent on the diffusion coefficient. This feature provides valuable insights into spatial constraints governing quorum sensing initiation. The interplay between production rates and cell concentrations emerges as another critical facet of our study. We observe that higher production rates or cell concentrations expedite quorum sensing, underscoring the intricate relationship between cell communication and population dynamics in bacterial communities. While our simulations align with mathematical models reported in the literature, we acknowledge the complexity of living organisms, emphasizing the value of our GUI for standardizing results and facilitating early assessments of quorum sensing. This computational approach offers a window into the environmental conditions conducive to quorum sensing initiation, encompassing parameters such as the diffusion coefficient, cell concentration, and biofilm thickness. In conclusion, our MATLAB GUI serves as a versatile tool for understanding the diverse aspects of quorum sensing especially for non-biologists. The insights gained from this computational framework advance our understanding of bacterial communication, providing researchers with the means to explore diverse ecological contexts where quorum sensing plays a pivotal role.
Title: Unveiling bacterial communication with a MATLAB GUI implementing the diffusion-based quorum sensing model
Description:
AbstractBacteria employ quorum sensing as a remarkable mechanism for coordinating behaviors and communicating within their communities.
In this study, we introduce a MATLAB Graphical User Interface (GUI) that offers a versatile platform for exploring the dynamics of quorum sensing.
Our computational framework allows for the assessment of quorum sensing, the investigation of parameter dependencies, and the prediction of minimum biofilm thickness required for its initiation.
A pivotal observation from our simulations underscores the pivotal role of the diffusion coefficient in quorum sensing, surpassing the influence of bacterial cell dimensions.
Varying the diffusion coefficient reveals significant fluctuations in autoinducer concentration, highlighting its centrality in shaping bacterial communication.
Additionally, our GUI facilitates the prediction of the minimum biofilm thickness necessary to trigger quorum sensing, a parameter contingent on the diffusion coefficient.
This feature provides valuable insights into spatial constraints governing quorum sensing initiation.
The interplay between production rates and cell concentrations emerges as another critical facet of our study.
We observe that higher production rates or cell concentrations expedite quorum sensing, underscoring the intricate relationship between cell communication and population dynamics in bacterial communities.
While our simulations align with mathematical models reported in the literature, we acknowledge the complexity of living organisms, emphasizing the value of our GUI for standardizing results and facilitating early assessments of quorum sensing.
This computational approach offers a window into the environmental conditions conducive to quorum sensing initiation, encompassing parameters such as the diffusion coefficient, cell concentration, and biofilm thickness.
In conclusion, our MATLAB GUI serves as a versatile tool for understanding the diverse aspects of quorum sensing especially for non-biologists.
The insights gained from this computational framework advance our understanding of bacterial communication, providing researchers with the means to explore diverse ecological contexts where quorum sensing plays a pivotal role.

Related Results

Bacterial LomR Induces the Vibriophage VP882 VqmA-Directed Quorum-Sensing Lysogeny-Lysis Transition
Bacterial LomR Induces the Vibriophage VP882 VqmA-Directed Quorum-Sensing Lysogeny-Lysis Transition
SUMMARY The bacterial cell-cell communication process called quorum sensing enables groups of bacteria to synchronously alter behavior in respons...
Cloning, purification, and enzymatic activity of the quorum sensing signal synthase RhlI
Cloning, purification, and enzymatic activity of the quorum sensing signal synthase RhlI
Quorum sensing is a bacterial cell‐cell communication system that functions through the synthesis, secretion, and detection of signaling molecules called autoinducers. Quorum sensi...
Hierarchical transcriptional regulation of quorum-sensing genes inVibrio harveyi
Hierarchical transcriptional regulation of quorum-sensing genes inVibrio harveyi
AbstractIn vibrios, quorum sensing controls hundreds of genes that are required for cell density-specific behaviors including bioluminescence, biofilm formation, competence, secret...
Application of GUI Matlab in physics: Planetary motion (Kepler’s Law)
Application of GUI Matlab in physics: Planetary motion (Kepler’s Law)
Abstract This study aimed to create a teaching material using an application with a Graphical User Interface (GUI) provided on MATLAB. This teaching material is inte...
Comment on: Macroscopic water vapor diffusion is not enhanced in snow
Comment on: Macroscopic water vapor diffusion is not enhanced in snow
Abstract. The central thesis of the authors’ paper is that macroscopic water vapor diffusion is not enhanced in snow compared to diffusion through humid air alone. Further, mass di...
Social communication between microbes colonizing the social honey bee Apis mellifera
Social communication between microbes colonizing the social honey bee Apis mellifera
AbstractThe European honey bee (Apis mellifera) is a charismatic species that plays a critical role in the pollination of agriculturally important crops and native flora. One emerg...
Novel Linear Polymers Able to Inhibit Bacterial Quorum Sensing
Novel Linear Polymers Able to Inhibit Bacterial Quorum Sensing
Bacterial phenotypes, such as biofilm formation, antibiotic resistance and virulence expression, are associated with quorum sensing. Quorum sensing is a density‐dependent regulator...
Quorum sensing inhibitors: a tool for resistance against biofilm
Quorum sensing inhibitors: a tool for resistance against biofilm
Resistance among disease causing microorganism has increased, which inspire researchers to discover new antimicrobial drugs. In the field of medicine many researches have been cond...

Back to Top