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modENCODE_submission_5569 This submission comes from a modENCODE project of Gary Karpen. For full list of modENCODE projects, see http://www.genome.gov/26524648 Project Goal: We aim to determine the locations of 125 chromosomal proteins across the Drosophila melanogaster genome. The proteins under s...
ORGANISM(S): Drosophila melanogaster 
Aeromonas salmonicida is a fish pathogen that causes furunculosis. Virulent strains of this bacterium are able to infect salmonid macrophages and survive within them, although mechanisms favouring intracellular survival are not completely understood. It is known that A. salmonicida cultured in vivo ...
ORGANISM(S): Salmo salar 
Heterologous expression of Mara1 in S. ablidoflavus J1074. Mara1 is from S. mirabilis P8-A2
ORGANISM(S): Streptomyces Albidoflavus (ncbitaxon:1886) 
2024-01-26 | MSV000093927 | GNPS
OSMAC guided bioprospecting of Atlantic sponges reveals novel bacterial species and evidence for the antimicrobial thiazole alkaloid agrochelin II A tandem mass spec data file from the crude extract of Stappia 28M-7 Taxonomy ID: 2762596
ORGANISM(S): Stappia (ncbitaxon:152161) 
2025-08-11 | MSV000098784 | MassIVE
RON WT and RON KO at 5, 6, 7 week virgin mammary glands In the study, we demonstrated that RON regulates mammary gland branching morphogenesis in pubertal development associated with changes in gene expression. Keywords: Pubertal mammary glands In the study, we hybridized RNA from 5, 6, 7 week old ...
ORGANISM(S): Mus musculus 
In this study, genome-wide transcriptome profiling was used to understand molecular genetic mechanism of drought tolerance in rice. Illumina High-Seq 2000 platform was used for sequencing RNA from leaf tissue of rice plants exposed to controlled drought stress and well-watered conditions. The differ...
ORGANISM(S): Oryza sativa Japonica Group 
Heat shock factors (Hsfs) are known to regulate heat and drought stress response by controlling the expression of heat shock proteins and oxidative stress responsive genes. Loss-of-function of OsHSFA2e gene resulted in increased sensitivity of rice plants to drought and heat stress. To identify the ...
ORGANISM(S): Oryza sativa Japonica Group 
The members of bHLH transcription factor superfamily are known to play key role in plant development and abiotic stress response. Loss-of-function of OsbHLH148 gene resulted in increased sensitivity of rice plants to drought stress. To identify the targets of OsbHLH148 and dissect the drought stress...
ORGANISM(S): Oryza sativa Japonica Group 
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