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SRX24622855: InducTn-seq
1 ILLUMINA (NextSeq 1000) run: 21.4M spots, 2.1G bases, 668.9Mb downloads

Design: NA
Submitted by: Brigham and Women's Hospital
Study: Inducible transposon mutagenesis for genome-scale forward genetics
show Abstracthide Abstract
Data from transposon insertion sequencing using an inducible mutagenesis system, along with related microbial genome sequencing. Transposon insertion sequencing (Tn-seq) is a powerful method for genome-scale functional genetics in bacteria. However, its effectiveness is often limited by a lack of mutant diversity, caused by either inefficient transposon delivery or stochastic loss of mutants due to population bottlenecks. Here, we introduce InducTn-seq, which leverages inducible mutagenesis for temporal control of transposition. InducTn-seq generates millions of transposon mutants from a single colony, enabling the sensitive detection of subtle fitness defects and transforming binary classifications of gene essentiality into a quantitative fitness measurement across both essential and non-essential genes. Using a mouse model of infectious colitis, we show that InducTn-seq bypasses a highly restrictive host bottleneck to generate a diverse transposon mutant population from the cells that initiate infection, revealing the role of oxygen-related metabolic plasticity in pathogenesis. Overall, InducTn-seq overcomes the limitations of traditional Tn-seq, unlocking new possibilities for genome-scale forward genetic screens in bacteria.
Sample: Outgrowth of induced population on solid LB without arabinose after animal infection
SAMN41477034 • SRS21359971 • All experiments • All runs
Library:
Name: CrMouseOFF2
Instrument: NextSeq 1000
Strategy: Tn-Seq
Source: GENOMIC
Selection: PCR
Layout: SINGLE
Runs: 1 run, 21.4M spots, 2.1G bases, 668.9Mb
Run# of Spots# of BasesSizePublished
SRR2909891521,395,2922.1G668.9Mb2024-05-22

ID:
32941711

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