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Plants, like other multicellular lifeforms, are colonized by microorganisms. How plants respond to their microbiota is currently not well understood. We used a phylogenetically diverse set of 39 endogenous bacterial strains from Arabidopsis thaliana leaves to assess host transcriptional and metaboli...
2021-09-13 | MTBLS2522 | MetaboLights

Plant monocultures growing for extended periods face severe losses of productivity. This phenomenon, known as 'yield decline', is often caused by the accumulation of above- and below-ground plant antagonists. The effectiveness of plant defences against antagonists might help explain differences i...

2023-11-03 | MTBLS4286 | MetaboLights
We assessed genome-wide expression of available pretreatment specimens from CLL patients enrolled in REACH, a study of fludarabine and cyclophosphamide FC or R-FC (addition of rituximab to FC) in relapsed CLL, to understand the disease heterogeneity and explore genes that may be prognostic or predic...
ORGANISM(S): Homo sapiens 
We assessed genome-wide expression of available pretreatment specimens from CLL patients enrolled in REACH, a study of fludarabine and cyclophosphamide FC or R-FC (addition of rituximab to FC) in relapsed CLL, to understand the disease heterogeneity and explore genes that may be prognostic or predic...
ORGANISM(S): Homo sapiens 
2014-07-30 | GSE58211 | GEO
Reanalysis of the human testis tissue dataset acquired for the Chromosome-centric Human Proteome Project (C-HPP; PRIDE project PXD002179), with a focus on identifying novel peptides for genome annotation.
ORGANISM(S): Homo sapiens (Human) 
2016-11-28 | PXD004785 | Pride
GATA4 is expressed in the proximal 85% of small intestine where it promotes a proximal intestinal ('jejunal') identity while repressing a distal intestinal ('ileal') identity, but its molecular mechanisms are unclear. Here, we tested the hypothesis that GATA4 promotes a jejunal versus ileal identity...
ORGANISM(S): Mus musculus 
Profiling CD34+ BCR-ABL+ cells of CML patients in chronic phase or blast crisis to identify differentially expressed stage-specific genes.
ORGANISM(S): Homo sapiens 
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