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to target specific candidate epialleles, allowing you to prove the causal link between DNA methylation and gene expression. Investigate the transgenerational stability of these epigenetic marks over multiple
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; profile root and leaf microbiomes using amplicon sequencing; analyse integrated microbiome and phenotyping datasets; contribute to machine-learning models predicting pathogen invasion success and plant
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, physiology and disease development; profile root and leaf microbiomes using amplicon sequencing; analyse integrated microbiome and phenotyping datasets; contribute to machine-learning models predicting
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candidate epialleles, allowing you to prove the causal link between DNA methylation and gene expression. Investigate the transgenerational stability of these epigenetic marks over multiple generations
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, Deltares Research Institute, industrial and governmental national and international partners. The project aligns their various research lines into BEP and risk assessment for dikes. For this PhD research, we
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multiple migrant groups and enable systematic migrant-group comparisons. Supervision Team The project will be supervised by Verena Seibel and Tobias Stark at Utrecht University. The project is embedded in
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University, Deltares Research Institute, industrial and governmental national and international partners. The project aligns their various research lines into BEP and risk assessment for dikes. For this PhD
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and working with large-scale datasets is an advantage; interest in combining multiple data sources (e.g. administrative data, patents, publications, surveys, or online data); a strong interest in