Fig. 1: Schematic representation of the analysis workflow to elucidate the regulatory role of circadian rhythms under extreme gravity environmental conditions. | npj Microgravity

Fig. 1: Schematic representation of the analysis workflow to elucidate the regulatory role of circadian rhythms under extreme gravity environmental conditions.

From: Skeletal muscle gene expression dysregulation in long-term spaceflights and aging is clock-dependent

Fig. 1: Schematic representation of the analysis workflow to elucidate the regulatory role of circadian rhythms under extreme gravity environmental conditions.

a Published sequencing (microarray, RNA-seq, LC-MS) datasets based on skeletal muscle were gathered from open source repositories (ns = number of samples; f: frequency). b Differential rhythmicity (for circadian datasets) and differential expression analysis were carried out after pre-processing of the raw sequencing datasets. Genes of interest were retrieved from KEGG, Reactome, and literature curation related to skeletal muscle-associated pathways and clock-controlled genes.

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