Home /Biotechnology /Course /Bacterial Gene Transfer: E. coli Plasmid Conjugation, Transformation & Antibiotic Marker Tracking

Bacterial Gene Transfer: E. coli Plasmid Conjugation, Transformation & Antibiotic Marker Tracking

AttributeDetail
FormatRecorded Lectures
LevelBeginner
Duration3 Days (1.5 Hour/day)
Certificatione-Certification + e-Marksheet
FeeFree
ToolsArduino Raspberry Pi MQTT Node-RED ThingSpeak Python AWS IoT

About the Bacterial Gene Transfer: E. coli Plasmid Conjugation, Transformation & Antibiotic Marker Tracking Course

This hands-on laboratory course focuses on understanding plasmid-mediated horizontal gene transfer in E. coli through transformation and conjugation experiments.

Participants will learn how antibiotic resistance markers are used to track gene transfer events and quantify efficiency. The session integrates core molecular biology techniques with practical microbiology skills, providing foundational knowledge relevant to antimicrobial resistance research, biotechnology, and genetic engineering.

Program Highlights

• Comprehensive coverage of E. coli Plasmid Conjugation and Transformation from fundamentals to advanced applications

• Hands-on projects and real-world case studies in Internet of Things

• Expert-curated curriculum aligned with current industry standards

• Access to recorded lectures and e-LMS platform for flexible, self-paced learning

• e-Certification and e-Marksheet upon successful completion

• Dedicated mentor support and interactive doubt-clearing sessions

• Exposure to industry-standard tools and platforms used in Internet of Things

• Career-oriented training for academic and professional growth in Internet of Things

Course Curriculum

Module 1: Introduction to E. coli Plasmid Conjugation and Transformation

  • Overview and historical evolution of E. coli Plasmid Conjugation and Transformation
  • Key terminology, definitions, and core concepts in Internet of Things
  • Current industry landscape, trends, and career opportunities
  • Setting up the learning environment and essential tools

Module 2: Fundamentals and Theoretical Foundations

  • Core principles and scientific/theoretical underpinnings of E. coli Plasmid Conjugation and Transformation
  • Mathematical and analytical frameworks relevant to Internet of Things
  • Comparative analysis of major approaches and methodologies
  • Understanding key standards, guidelines, and best practices

Module 3: Tracking Gene Transfer Using Antibiotic Markers

  • Core concepts and techniques in Tracking Gene Transfer Using Antibiotic Markers
  • Practical implementation and hands-on exercises
  • Integration of Tracking Gene Transfer Using Antibiotic Markers with E. coli Plasmid Conjugation and Transformation workflows
  • Case study: Real-world application of Tracking Gene Transfer Using Antibiotic Markers

Module 4: Sensor Integration

  • Introduction to Sensor Integration concepts and methodologies
  • Step-by-step practical implementation of Sensor Integration techniques
  • Tools and platforms commonly used for Sensor Integration
  • Troubleshooting, optimization, and best practices

Module 5: Edge Computing

  • Introduction to Edge Computing concepts and methodologies
  • Step-by-step practical implementation of Edge Computing techniques
  • Tools and platforms commonly used for Edge Computing
  • Troubleshooting, optimization, and best practices

Module 6: Advanced Topics and Emerging Trends in Internet of Things

  • Cutting-edge research and innovations in E. coli Plasmid Conjugation and Transformation
  • Integration with AI, automation, and modern technologies
  • Industry case studies and real-world problem solving
  • Future directions and career pathways in Internet of Things

Module 7: Capstone Project and Assessment

  • End-to-end project implementation using E. coli Plasmid Conjugation and Transformation skills
  • Peer review, collaborative exercises, and expert feedback
  • Portfolio-ready project documentation and presentation
  • Final assessment and course completion evaluation

Tools, Techniques, or Platforms Covered

Arduino Raspberry Pi MQTT Node-RED ThingSpeak Python AWS IoT

Real-World Applications

  • Apply E. coli Plasmid Conjugation and Transformation skills directly to academic research, thesis work, and publications
  • Build a professional portfolio showcasing practical Internet of Things competencies
  • Solve industry-relevant problems using E. coli Plasmid Conjugation and Transformation methodologies and tools
  • Contribute to open-source projects and collaborative research in Internet of Things
  • Prepare for competitive examinations, interviews, and professional certifications in Internet of Things

Who Should Attend & Prerequisites

  • Students pursuing degrees in Internet of Things, science, engineering, or related disciplines
  • Working professionals seeking to upskill or transition into Internet of Things roles
  • Researchers and academicians looking to adopt modern techniques in Internet of Things
  • Entrepreneurs, freelancers, and self-learners interested in practical Internet of Things knowledge
Prerequisites: No prior experience in Internet of Things is required. Basic computer literacy and a stable internet connection are sufficient. This course is designed to be beginner-friendly.

Certification

Sample certificate
Hi! Need help? Chat with NSTC ✨