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Veterinary and Animal Science
Wildlife Population Genetics Training Course
Introduction
Wildlife Population Genetics Training Course is designed to provide professionals, researchers, and enthusiasts with an in-depth understanding of genetic diversity, population structure, and evolutionary processes affecting wildlife species. Participants will gain hands-on experience with cutting-edge genomic tools, bioinformatics pipelines, and statistical modeling to address real-world conservation challenges. The course emphasizes sustainable wildlife management, biodiversity preservation, and applied conservation strategies to maintain resilient ecosystems.
This course integrates theoretical knowledge with practical case studies, enabling participants to apply population genetic principles, molecular ecology, and wildlife forensics to enhance decision-making. By exploring topics such as genetic drift, gene flow, and adaptive evolution, learners will develop the expertise needed to monitor endangered species, assess genetic health, and implement evidence-based conservation interventions. Participants will also explore the latest next-generation sequencing techniques, population viability analyses, and data-driven conservation planning to meet the challenges of modern wildlife management.
Programme Curriculum
Wildlife Population Genetics Training Course
Introduction
Wildlife Population Genetics Training Course is designed to provide professionals, researchers, and enthusiasts with an in-depth understanding of genetic diversity, population structure, and evolutionary processes affecting wildlife species. Participants will gain hands-on experience with cutting-edge genomic tools, bioinformatics pipelines, and statistical modeling to address real-world conservation challenges. The course emphasizes sustainable wildlife management, biodiversity preservation, and applied conservation strategies to maintain resilient ecosystems.
This course integrates theoretical knowledge with practical case studies, enabling participants to apply population genetic principles, molecular ecology, and wildlife forensics to enhance decision-making. By exploring topics such as genetic drift, gene flow, and adaptive evolution, learners will develop the expertise needed to monitor endangered species, assess genetic health, and implement evidence-based conservation interventions. Participants will also explore the latest next-generation sequencing techniques, population viability analyses, and data-driven conservation planning to meet the challenges of modern wildlife management.
Course Duration
5 days
Course Objectives
Understand the fundamentals of wildlife genomics and population genetics.
Analyze genetic diversity and population structure in natural populations.
Apply molecular markers and SNP analysis for wildlife monitoring.
Interpret phylogenetic relationships and evolutionary dynamics.
Conduct genetic drift, inbreeding, and gene flow analyses.
Utilize next-generation sequencing (NGS) and bioinformatics tools.
Design and implement conservation genetics strategies.
Perform population viability and risk assessment modeling.
Explore landscape genetics and habitat connectivity.
Integrate wildlife forensics and species identification methods.
Develop data-driven management plans for endangered species.
Evaluate adaptive evolution and resilience to environmental change.
Apply case studies in real-world wildlife conservation scenarios.
Target Audience
Wildlife biologists and ecologists
Conservation scientists
Environmental consultants
Graduate students in genetics and ecology
Government wildlife management authorities
Non-governmental conservation organizations
Zoo and sanctuary geneticists
Researchers in molecular ecology and biodiversity
Course Modules
Module 1: Fundamentals of Wildlife Population Genetics
Introduction to population genetics principles
Genetic variation and gene pool analysis
Hardy-Weinberg equilibrium and deviations
Molecular markers in wildlife studies
Case Study: Tiger (Panthera tigris) population structure in India
Module 2: Molecular Techniques and Genomics
DNA extraction, PCR, and microsatellite analysis
SNP genotyping and high-throughput sequencing
Next-Generation Sequencing (NGS) applications
Bioinformatics pipelines for wildlife data
Case Study: Genomic diversity in African elephants
Module 3: Genetic Diversity and Conservation
Measuring genetic diversity indices
Detecting bottlenecks and inbreeding
Implications for conservation planning
Tools for monitoring endangered populations
Case Study: Giant panda genetic health assessment
Module 4: Population Structure and Connectivity
Gene flow and migration patterns
Population clustering techniques
Landscape genetics and habitat fragmentation
Simulation models for population connectivity
Case Study: Grey wolf corridors in North America
Module 5: Evolutionary Genetics and Adaptive Traits
Natural selection and adaptation in wildlife
Phylogenetics and evolutionary trees
Detecting adaptive genes
Integrating genomics with ecological data
Case Study: Adaptive traits in Arctic fox populations
Module 6: Wildlife Forensics and Genetic Identification
DNA barcoding for species identification
Wildlife crime investigation protocols
Forensic genetics in poaching control
Integrating genetic databases for legal evidence
Case Study: Rhino horn origin tracing in South Africa
Module 7: Population Viability and Risk Assessment
Population viability analysis (PVA) models
Assessing extinction risk using genetic metrics
Scenario-based conservation planning
Decision-support systems for wildlife management
Case Study: Conservation strategy for Snow leopard in Central Asia
Module 8: Data Analysis, Reporting, and Conservation Strategies
Statistical analysis of genetic datasets
Using R and Python for population genetics
Interpretation and visualization of results
Drafting actionable conservation recommendations
Case Study: Restoration of coral reef fish populations using genetic insights
Training Methodology
This course employs a participatory and hands-on approach to ensure practical learning, including:
Interactive lectures and presentations.
Group discussions and brainstorming sessions.
Hands-on exercises using real-world datasets.
Role-playing and scenario-based simulations.
Analysis of case studies to bridge theory and practice.
Peer-to-peer learning and networking.
Expert-led Q&A sessions.
Continuous feedback and personalized guidance.
Register as a group from 3 participants for a Discount
Upon successful completion of this training, participants will be issued with a globally- recognized certificate.
Tailor-Made Course
We also offer tailor-made courses based on your needs.
Key Notes
a. The participant must be conversant with English.
b. Upon completion of training the participant will be issued with an Authorized Training Certificate
c. Course duration is flexible and the contents can be modified to fit any number of days.
d. The course fee includes facilitation training materials, 2 coffee breaks, buffet lunch and A Certificate upon successful completion of Training.
e. One-year post-training support Consultation and Coaching provided after the course.
f. Payment should be done at least a week before commence of the training, to FINESKILL TRAINING CENTER account, as indicated in the invoice so as to enable us prepare better for you.