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The integrated use of omics technologies to understand mechanisms of Daphnia's stress response to cyanobacteria
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- Journal Article
- A1
- open access
Bisulfite sequencing with Daphnia highlights a role for epigenetics in regulating stress response to Microcystis through preferential differential methylation of serine and threonine amino acids
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Changes in DNA methylation in response to cyanobacteria in the model crustacean Daphnia
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Changes in DNA methylation in response to cyanobacteria in the model crustacean Daphnia
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- Journal Article
- A1
- open access
Gene body methylation patterns in Daphnia are associated with gene family size
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Conserved transcriptional responses to cyanobacterial stressors are mediated by alternate regulation, of paralogous genes in Daphnia
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Global cytosine methylation in Daphnia magna depends on genotype, environment and their interaction
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An approach to assess the regulatory relevance of microevolutionary effects in ecological risk assessment of chemicals: a case-study with cadmium
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Genome-wide transcription profiles reveal genotype-dependent responses of biological pathways and gene-families in Daphnia exposed to single and mixed stressors
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What genomic mechanisms cause a cadmium-adapted Daphnia pulex isolate to be more tolerant to cyanobacterial stress than a non-adapted isolate?