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Plant Breeding Genetics

Plant Breeding Genetics
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Plant Breeding Genetics

Choose a category below to begin. Each category opens into focused areas, and selecting a focused area lets you pick your final internship variant (your preferred track, mode and duration).

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Showing 120 of 50

AI Genomic Selection Plant Research
Internship studying plant genomic selection with AI prediction of breeding value across traits. Interns work with realistic case datasets.
Academic (A)Tech (T)Research (R)
1 Month
A · £268
T · £613
R · £892
3 Months
A · £806
T · £985
R · £1,433
6 Months
A · £1,791
T · £2,189
R · £3,184
14 more durations from 5 days to 1 year
5 focused areasClick to view more details →
Machine Learning QTL Mapping Research
Internship studying QTL mapping with ML fine-mapping across association and functional evidence. Practical exercises anchor every concept taught.
Academic (A)Tech (T)Research (R)
1 Month
A · £268
T · £589
R · £856
3 Months
A · £774
T · £946
R · £1,376
6 Months
A · £1,720
T · £2,102
R · £3,057
14 more durations from 5 days to 1 year
5 focused areasClick to view more details →
AI GWAS Plant Breeding Research
Internship studying plant GWAS with analysis of population structure, power, and marker discovery. Mentor-led sessions build applied skill.
5 focused areasClick to view more details →
AI Heterosis & Hybrid Breeding Research
Internship studying heterosis and hybrid breeding with analysis of parent selection and vigour. Interns practise on genuine research problems.
Academic (A)Tech (T)Research (R)
1 Month
A · £268
T · £600
R · £873
3 Months
A · £789
T · £964
R · £1,403
6 Months
A · £1,753
T · £2,143
R · £3,116
14 more durations from 5 days to 1 year
5 focused areasClick to view more details →
AI Climate-Adaptive Breeding Research
Internship studying climate-adaptive breeding with analysis of tolerance traits and selection strategy. Includes mentored hands-on analysis sessions.
Academic (A)Tech (T)Research (R)
1 Month
A · £268
T · £600
R · £873
3 Months
A · £789
T · £964
R · £1,403
6 Months
A · £1,753
T · £2,143
R · £3,116
14 more durations from 5 days to 1 year
5 focused areasClick to view more details →
AI Haploid Breeding Technology Research
Internship studying haploid breeding technology with analysis of induction and doubling efficiency. Hands-on work runs alongside theory modules.
5 focused areasClick to view more details →
AI Disease Resistance Breeding Research
Internship studying disease resistance breeding with analysis of resistance genes and durability. Practical exercises anchor every concept taught.
5 focused areasClick to view more details →
AI Marker-Assisted Selection Research
Internship studying marker-assisted selection with analysis of marker choice, cost, and cycle gain. Applied sessions reinforce each technique.
Academic (A)Tech (T)Research (R)
1 Month
A · £268
T · £600
R · £873
3 Months
A · £789
T · £964
R · £1,403
6 Months
A · £1,753
T · £2,143
R · £3,116
14 more durations from 5 days to 1 year
5 focused areasClick to view more details →
AI Polyploidy & Crop Evolution Research
Internship studying polyploidy in crop evolution with analysis of genome doubling consequences. Guided practice with real datasets throughout.
5 focused areasClick to view more details →
AI Speed Genomics Breeding Research
Internship studying rapid genomics for breeding with AI pipelines returning decisions within days. Includes mentored hands-on analysis sessions.
5 focused areasClick to view more details →
Genomic Selection Model Development
Develop and validate predictive models using genomic data to accelerate selection of superior plant genotypes in breeding programs.
Academic (A)Tech (T)Research (R)
1 Month
A · £268
T · £600
R · £873
3 Months
A · £789
T · £964
R · £1,403
6 Months
A · £1,753
T · £2,143
R · £3,116
14 more durations from 5 days to 1 year
5 focused areasClick to view more details →
Phenotypic Trait Measurement High-Throughput
Conduct large-scale phenotyping experiments using automated platforms to collect quantitative trait data for genetic analysis.
5 focused areasClick to view more details →
Linkage Map Construction Plant Genetics
Generate genetic linkage maps using molecular markers and segregating populations to identify chromosomal regions controlling traits.
5 focused areasClick to view more details →
SNP Discovery Development Plant Crops
Identify and validate single nucleotide polymorphisms across crop genomes to build marker panels for breeding applications.
5 focused areasClick to view more details →
Pollen Viability Fertility Assessment
Evaluate pollen quality and plant fertility using cytological and molecular techniques for hybrid seed production optimization.
5 focused areasClick to view more details →
Cytogenetic Analysis Chromosome Mapping
Perform chromosome counts, karyotyping, and fluorescence in situ hybridization to study plant genome organization and evolution.
5 focused areasClick to view more details →
Cross-Breeding Hybridization Protocol Design
Develop and optimize controlled crossing procedures to generate hybrid populations with desired genetic combinations.
5 focused areasClick to view more details →
Mutation Breeding Induction Mutagenesis
Apply physical and chemical mutagenesis techniques to induce genetic variation for novel trait discovery in crop plants.
Academic (A)Tech (T)Research (R)
1 Month
A · £268
T · £600
R · £873
3 Months
A · £789
T · £964
R · £1,403
6 Months
A · £1,753
T · £2,143
R · £3,116
14 more durations from 5 days to 1 year
5 focused areasClick to view more details →
Gene Expression Analysis Breeding Lines
Conduct RNA-sequencing and qPCR experiments to understand gene expression patterns underlying agronomic traits in breeding lines.
5 focused areasClick to view more details →
Germplasm Characterization Diversity Assessment
Profile genetic diversity within crop germplasm collections using molecular markers and phenotypic evaluation.
5 focused areasClick to view more details →