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This study includes raw data of testis RNA-seq profiles from treated (nABX & LPHS, with nABX: non-absorbable antibiotics LPHS: low-protein, high sugar diet) and control (CON) males of young (10-11 weeks) FVB background. Sequencing was done using 40bp paired-end reads on a NextSeq500 sequencer, obtai...
ORGANISM(S): Mus musculus 
This study includes raw data of blastocyst single-embryo SMART-seq profiles generated by IVF using sperm derived from treated (nABX & LPHS, with nABX: non-absorbable antibiotics and LPHS: low-protein, high sugar diet) and control (CON) males of young (9-10 weeks) FVB background. After SMART-seq libr...
ORGANISM(S): Mus musculus 
This study includes raw data of testis RNA-seq profiles from treated (nABX & LPHS, with nABX: non-absorbable antibiotics and LPHS: low-protein, high sugar diet) and control (CON) males of mature (57-62 weeks) and young (9-11 weeks) FVB & C57BL/6J backgrounds.  Sequencing was done using 40bp paired-e...
ORGANISM(S): Mus musculus 
This study includes raw data of sperm smallRNA profiles from treated (nABX & LPHS, with nABX: non-absorbable antibiotics ; LPHS: low-protein, high sugar diet) and control (CON) males across FVB and C57BL/6J genetic backgrounds and mature (76-78 weeks (>1yr)) and young (10-11 weeks) ages. Sequencing ...
ORGANISM(S): Mus musculus 
This study includes raw data of blastocyst single-embryo SMART-seq profiles generated by IVF using sperm derived from mature (50-57 weeks) and young (9-11 weeks) males of C57BL/6N background. After SMART-seq library preparation of single embryos, indexed samples were pooled and sequenced on the Next...
ORGANISM(S): Mus musculus 
This study includes raw data of blastocyst single-embryo SMART-seq profiles generated by IVF using sperm derived from treated (nABX & LPHS with nABX: non-absorbable antibiotics and LPHS: low-protein, high sugar diet) and control (CON) males of young (9-11 weeks) C57BL/6J background. After SMART-seq ...
ORGANISM(S): Mus musculus 

The gut microbiota operates at the interface of host-environment interactions to influence human homeostasis and metabolic networks. Environmental factors that unbalance gut microbial ecosystems can therefore elicit physiological and disease-associated responses across somatic tissues. However, t...

2024-02-12 | MTBLS1629 | MetaboLights
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