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Celis, A. I.

Publications and source records attributed to Celis, A. I..

2 recordsLinked to original sources

Construction and characterization of a genome-scale ordered mutant collection of Bacteroides thetaiotaomicron

Genomic analyses have revealed how the gut microbiota impacts human health. However, knowledge about the physiology of most gut commensals is largely lacking. Here, we sorted cells from a pooled library to construct an ordered collection of transposon-insertion mutants in the model commensal Bacteroides thetaiotaomicron. We applied a pooling strategy with barcode sequencing to locate mutants and created a condensed collection with single insertions in 2,565 genes. This effort enabled the development of an accurate model for progenitor-collection assembly, which identified strain-abundance biases and multi-insertion strains as important factors that limit coverage. To demonstrate the potential for phenotypic screening, we analyzed growth dynamics and morphology of the condensed collection and identified growth defects and altered cell shape in the sphingolipid-synthesis gene BT0870 and the thiamine scavenging gene BT2397. Analyses of this collection and utilization of the platform described herein to construct future ordered libraries will increase understanding of gut commensal physiology and colonization strategies.

microbiology↗

Previously uncharacterized rectangular bacteria in the dolphin mouth

Much remains to be explored regarding the diversity of uncultured, host-associated microbes. Here, we report the discovery of unusual rectangular bacterial structures (RBSs) in the mouths of bottlenose dolphins. DNA staining revealed multiple paired bands within RBSs that suggested cells dividing along the longitudinal axis. Cryogenic transmission electron microscopy and tomography revealed parallel membrane-bound segments, suspected to be cells, encapsulated by an S-layer-like periodic surface covering. RBSs displayed novel pilus-like appendages with bundles of threads splayed at the tips. Multiple lines of evidence suggested that RBSs are bacterial and distinct from the Neisseriaceae genera Simonsiella and Conchiformibius, with which they share similar morphology and division patterning, including genomic DNA sequencing of micromanipulated RBSs, 16S rRNA gene sequencing, and fluorescence in situ hybridization. Our findings highlight the diversity of novel microbial forms and lifestyles that await discovery and characterization using tools complementary to genomics such as microscopy.

microbiology↗