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Tissue adaptaion of intestinal eosinophils in mice
The aryl hydrocarbon receptor partially controls tissue adaptaion of intestinal eosinophils in mice
To examine the seasonal adaptaion, we compared the gene expression of brains (ventral part of telenchephalon, hypothalamus and pituitary) between SD (short-day conditions: 10 h light/14 h dark and 26 °C) and LD (long-day conditions: 14 h light/10 h dark and 26 °C) conditions in Medaka fish (Oryzias ...
ORGANISM(S): Oryzias latipes 
2019-04-08 | GSE119837 | GEO
To determine how eosinophils adapt to the intestinal environment, eosinophils were sorted from the bone marrow and small intestine and compared by RNA sequencing. We show here that intestinal eosinophils were specifically adapted to their environment and underwent substantial transcriptomic changes....
ORGANISM(S): Mus musculus 
2022-02-25 | GSE185070 | GEO
Nymphiodes peltata transcriptome
To determine how AHR affects eosinophil adaptation to the intestinal environment, eosinophils were sorted from the small intestine from WT, Ahr knockout and Ahrr knockout mice and compared by RNA sequencing. The canonical AHR pathway was active in murine intestinal eosinophils and limited eosinophil...
ORGANISM(S): Mus musculus 
2022-02-25 | GSE173831 | GEO
Comprehensive and quantitative information of the psychrophile proteome is an important source for understanding of the cold adaptation mechanism under low growth temperature. Mrakia psychrophila, a obligate fungus, was selected to quantitatively evaluate its protein abundance changes in response to...
ORGANISM(S): Mrakia psychrophila 
2016-12-07 | PXD004881 | Pride
Thermoleptolyngbya sichuanensis A183 strain:PKUAC-SCTA183 Genome sequencing
Thermosynechococcus elongatus PKUAC-SCTE542 genome sequencing
Leptodesmis sichuanensis A121 strain:PKUAC-SCTA121 Genome sequencing
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