Sort   by:  
 Page size 
Deep molecular phenotyping of cells at transcriptomic and proteomic levels is an essential first step to understanding cellular contributions to development, aging, injury, and disease. Since proteome and transcriptome level abundances only modestly correlate with each other, complementary profiling...
ORGANISM(S): Mus musculus (Mouse) 
2026-02-16 | PXD059818 | Pride
Deep molecular phenotyping of cells at transcriptomic and proteomic levels is an essential first step to understanding cellular contributions to development, aging, injury, and disease. Since proteome and transcriptome level abundances only modestly correlate with each other, complementary profiling...
ORGANISM(S): Mus musculus (Mouse) Homo sapiens (Human) 
2026-02-16 | PXD073954 | Pride
Under natural conditions, plants experience episodes of drought for periods of days or longer. Plants respond to drought stress by reconfiguring their transcriptome activity. Transcriptome changes in response to drought are dynamic, and are likely to be shaped by mitigating factors such as diel sign...
ORGANISM(S): Arabidopsis thaliana 
Transcriptomes of Olavius algarvensis
This is a repository for goat transcriptomes
RNAseq transcriptomes from infected and uninfected C. difficile
Data on absolute molecule numbers will empower the modeling, understanding, and comparison of cellular functions and biological systems. We quantified transcriptomes and proteomes in fission yeast during cellular proliferation and quiescence. This rich resource provides the first comprehensive refer...
ORGANISM(S): Schizosaccharomyces pombe 
2013-06-06 | PXD000276 | Pride
In this study, we use mRNA-Seq to characterize and compare the leukocyte transcriptomes of Holstein, Jersey, and Cholistani with respect to variations in sequence, expression, and splicing. Poly A+ RNA are extracted from leukocytes of pools of blood drawn from cows of three different breeds, Holstei...
ORGANISM(S): Bos indicus 
We utilize single-cell sequencing (scSeq) of lymphocyte immune repertoires and transcriptomes to quantitatively profile the adaptive immune response in COVID-19 patients of varying age. Our scSeq analysis defines the adaptive immune repertoire and transcriptome in convalescent COVID-19 patients and ...
ORGANISM(S): Homo sapiens 
Background: Frankia sp. strains are actinobacteria that form N2-fixing root nodules on angiosperms. Several reference genome sequences are available enabling transcriptome studies in Frankia sp. Genomes from Frankia sp. strains differ markedly in size, a consequence proposed to be associated with a...
ORGANISM(S): Frankia sp. CcI3 
Sort   by:  
 Page size