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Etienne Dervyn

Researcher at Institut national de la recherche agronomique

Publications -  22
Citations -  4823

Etienne Dervyn is an academic researcher from Institut national de la recherche agronomique. The author has contributed to research in topics: Gene & Bacillus subtilis. The author has an hindex of 18, co-authored 21 publications receiving 4513 citations. Previous affiliations of Etienne Dervyn include Université Paris-Saclay & Agro ParisTech.

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Essential Bacillus subtilis genes

Kazuto Kobayashi, +98 more
TL;DR: To estimate the minimal gene set required to sustain bacterial life in nutritious conditions, a systematic inactivation of Bacillus subtilis genes was carried out and most genes involved in the Embden–Meyerhof–Parnas pathway are essential.
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Condition-Dependent Transcriptome Reveals High-Level Regulatory Architecture in Bacillus subtilis

TL;DR: The transcriptomes of Bacillus subtilis exposed to a wide range of environmental and nutritional conditions that the organism might encounter in nature are reported, offering an initial understanding of why certain regulatory strategies may be favored during evolution of dynamic control systems.
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A vector for systematic gene inactivation in Bacillus subtilis.

TL;DR: PMUTIN characteristics and the inactivation of eight genes in the resA-serA region of the chromosome are presented and the potential polar effects generated by the integration of the vectors can be alleviated by addition of IPTG.
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Global Network Reorganization During Dynamic Adaptations of Bacillus subtilis Metabolism

TL;DR: The responses of a bacterium to changing nutritional conditions are explored and an initial understanding of why certain regulatory strategies may be favored during evolution of dynamic control systems is offered.
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Genes Involved in Formation of Structured Multicellular Communities by Bacillus subtilis

TL;DR: A large collection of mutants which have disruptions of most of the uncharacterized genes in the B. subtilis genome are taken advantage of to discover genes involved in this multicellular behavior and to do so on a genome-wide basis.