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Biological Research in Canisters-16 (BRIC-16): Investigations of the plant cytoskeleton in microgravity with gene profiling and cytochemistry
NASA Test —
These investigations studied the fundamentals of how plants perceive gravity and develop in microgravity. It informs how gene regulation is altered by spaceflight... -
A study of gene expression influenced by simulated microgravity in human lymphoblastoid cells
NASA Test —
Here in this study we systematically examined the patterns of DNA methylation and hydroxy-methylation with its functional implications in gene regulation for the... -
Biological Research in Canisters-16 (BRIC-16): Investigations of the plant cytoskeleton in microgravity with gene profiling and cytochemistry
NASA Test —
These investigations studied the fundamentals of how plants perceive gravity and develop in microgravity. It informs how gene regulation is altered by spaceflight... -
Transcriptional and proteomic response of Pseudomonas aeruginosa PAO1 to spaceflight conditions involves Hfq regulation and reveals a role for oxygen
NASA Test —
This study describes the transcriptional response of P. aeruginosa PAO1 to low-Earth orbit environmental conditions. Our aim was to assess whether the microgravity... -
Biological Research in Canisters-16 (BRIC-16): Investigations of the plant cytoskeleton in microgravity with gene profiling and cytochemistry
NASA Test —
These investigations studied the fundamentals of how plants perceive gravity and develop in microgravity. It informs how gene regulation is altered by spaceflight... -
MicroRNA expression of C. elegans in space environment
NASA Test —
Entire microRNA expression were analyzed using the Filgen Array miRNA Caenorhabditis elegans 232 probes (Filgen). In the microRNA expression analysis we compared the... -
MicroRNA expression of C. elegans in space environment
NASA Test —
Entire microRNA expression were analyzed using the Filgen Array miRNA Caenorhabditis elegans 232 probes (Filgen). In the microRNA expression analysis we compared the...