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“Dry eye” is a multi-factorial inflammatory disease affecting the ocular surface. Tear hyperosmolarity in dry eye contributes to inflammation and cell damage. Recent research efforts on dry eye have been directed towards biomarker discovery for diagnosis, response to treatment and disease mechanisms...
2015-08-31 | MTBLS214 | MetaboLights
Metabolomics analysis of the algU mutant strain under hyperosmotic stress.
2024-07-12 | MTBLS9769 | MetaboLights
Peanut (Arachis hypogaea L.) is considered as a moderately salt-sensitive species and thus soil salinity can be a limiting factor for peanut cultivation. To gain insights into peanut plant physiology in response to salt stress and alleviation, we comprehensively characterized leaf relative electroly...
2019-03-19 | MTBLS583 | MetaboLights
Analysis of mRNA stability in S. cerevisiae in connection to hyperosmotic stress at different time points following mild hyperosmotic shock in Saccharomyces cerevisiae cells.
ORGANISM(S): Saccharomyces cerevisiae 
In budding yeast, this signaling pathway— the high-osmolarity glycerol (HOG) response —culminates in dual phosphorylation and nuclear translocation of the MAPK, Hog1 (ortholog of mammalian p38/SAPK). Induction of at least 50 genes requires nuclear Hog1, implying that transcriptional up-regulation...
ORGANISM(S): Saccharomyces cerevisiae 
The legume genus Lotus includes glycophytic forage crops and other species adapted to extreme environments, such as saline soils. Understanding salt tolerance mechanisms will contribute to the discovery of new traits which may enhance the breeding efforts towards improved performance of legumes in m...
2015-09-14 | MTBLS14 | MetaboLights
The legume genus Lotus includes glycophytic forage crops and other species adapted to extreme environments, such as saline soils. Understanding salt tolerance mechanisms will contribute to the discovery of new traits which may enhance the breeding efforts towards improved performance of legumes in m...
2015-09-14 | MTBLS15 | MetaboLights
The legume genus Lotus includes glycophytic forage crops and other species adapted to extreme environments, such as saline soils. Understanding salt tolerance mechanisms will contribute to the discovery of new traits which may enhance the breeding efforts towards improved performance of legumes in m...
2015-09-14 | MTBLS16 | MetaboLights
In order to better define the global regulatory effects of the sRNA, GsrN, in Caulobacter crescentus during hyperosmotic stress, we submitted soluble lysates from a gsrN over-expression stain , as well as, a wild-type sample for LC-MS/MS analysis.
ORGANISM(S): Caulobacter crescentus CB15 
2019-11-12 | PXD010072 | Pride
Transcriptome profiling of Arabidopsis seedlings upon hyperosmotic stress
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