SASI-Seq: sample assurance Spike-Ins, and highly differentiating 384 barcoding for Illumina sequencing [PDF]
Michael A. Quail+7 more
openalex +1 more source
D‐galactose (D‐gal) induced inner ear hair cell senescence by inhibiting TFEB transcription. RONIN/HCF1 promotes TFEB transcription to prevent cochlear HCs from D‐gal‐induced senescence through autophagy activation. Abstract Age‐related hearing loss is characterized by senescent inner ear hair cells (HCs) and reduced autophagy.
Yongjie Wei+18 more
wiley +1 more source
The combination of SMRT sequencing and Illumina sequencing highlights organ-specific and age-specific expression patterns of miRNAs in Sika Deer. [PDF]
Jia B+11 more
europepmc +1 more source
Treatment of MPTP‐incubated cells with NAD+‐boosters increase the UPRmt/mitophagy‐related mitochondria quality control (MQC). Disturbed plasma UPRmt‐mitophagy‐mediated MQC profiles in PD patient samples. NMN inhibits motor deficit and forestalls neuropathology phenotypes of PD mice, which is required the atf4‐medicated UPRmt pathway.
Shuoting Zhou+16 more
wiley +1 more source
Resolving microbial microdiversity with high accuracy full length 16S rRNA Illumina sequencing [PDF]
Catherine Burke, Aaron E. Darling
openalex +1 more source
Comprehensive transcriptome characterization of Grus japonensis using PacBio SMRT and Illumina sequencing. [PDF]
Ye W, Xu W, Xu N, Chen R, Lu C, Liu H.
europepmc +1 more source
NOX2 Contributes to High‐Frequency Outer Hair Cell Vulnerability in the Cochlea
This study first identifies NOX2 as a differentially expressed gene related to oxidative damage in the apical and basal turns through single‐cell RNA sequencing. NOX2 gene knockout mitigates OHCs damage caused by neomycin and noise and enhances Nrf2 expression and nuclear translocation.
Meihao Qi+16 more
wiley +1 more source
Detection of human, porcine and canine picornaviruses in municipal sewage sludge using pan-enterovirus amplicon-based long-read Illumina sequencing. [PDF]
Faleye TOC+10 more
europepmc +1 more source
Correcting Illumina sequencing errors for human data
Summary: We present a new tool to correct sequencing errors in Illumina data produced from high-coverage whole-genome shotgun resequencing. It uses a non-greedy algorithm and shows comparable performance and higher accuracy in an evaluation on real human data. This evaluation has the most complete collection of high-performance error correctors so far.
openaire +2 more sources