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Author: gene_x
Abstract: TODO: edit and sort the following text after vacation # Input 9,181,515x2 reads # -- starting point: initial_mutants_rep1.trimmed1_failed_trim # -- generate bam-file containing
Author: gene_x
Abstract: TODO: edit and sort the following text after vacation # Define the number of reads to sample for i in {1..9}; do num_reads=$((i * 1000000)) # Sample the reads seqtk
Author: gene_x
Abstract: 1. BayWa AG * Revenue: €19.84 billion (2021) * Description: The largest agricultural company in Germany, involved in trading agricultural products, building materials, and energy, with compreh
Author: gene_x
Abstract: [![TraDIS_optimization](/static/sequencing/TraDIS_optimization.png "TraDIS_optimization")](/static/sequencing/TraDIS_optimization.png "TraDIS_optimization") > https://www.nature.com/articles/s41598-0
Author: huang
Abstract: > Drug repurposing screen identifies lonafarnib as respiratory syncytial virus fusion protein inhibitor > https://www.nature.com/articles/s41467-024-45241-y 0. A Promising Farnesyltransferase Inhibi
Author: gene_x
Abstract: [![scSLAM-seq2](/static/sequencing/scSLAM-seq.png "scSLAM-seq2")](/static/sequencing/scSLAM-seq.png "scSLAM-seq2") SLAM-seq(thiol(SH)-linked Alkylation for the Metabolic sequencing of RNA)可以理解为“S4U烷基
Author: gene_x
Abstract: [![Overview](/static/Clinical_metagenomics/Overview.png "Overview")](/static/Clinical_metagenomics/Overview.png "Overview") [![Figure7](/static/Clinical_metagenomics/Figure7.png "Figure7")](/static/C
Author: gene_x
Abstract: > https://www.vka.de/verband/unsere-mitgliedverbaende > https://www.av-hamburg.de/ > https://www.av-hamburg.de/fileadmin/dokumente/tarifvertraege/aktuell/entgelttabellen/Allgemeine_Tabelle_01.03.2024_
Author: gene_x
Abstract: [![PEcell1](/static/Adapter_in_illumina_seq/PEcell1.png "PEcell1")](/static/Adapter_in_illumina_seq/PEcell1.png "PEcell1") [![PEcell2](/static/Adapter_in_illumina_seq/PEcell2.png "PEcell2")](/static/
Author: gene_x
Abstract: > Genome-wide identification of virulence-associated genes in Staphylococcus aureus using Transposon insertion-site deep sequencing 5.7 Mutagenesis in S. aureus 5.7.1 Generation of random Transposon
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