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Epithelial homeostasis and the underlying molecular mechanisms in the gut of the insect model Drosophila melanogaster

Journal

CELLULAR AND MOLECULAR LIFE SCIENCES
Volume 68, Issue 22, Pages 3651-3660

Publisher

SPRINGER BASEL AG
DOI: 10.1007/s00018-011-0828-x

Keywords

Drosophila; Innate immune response; Immune mechanisms; Gut microbiota; Intestinal epithelium

Funding

  1. CNRS
  2. ANR
  3. FRM
  4. AFM
  5. IUF

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Insects mostly develop on decaying and contaminated organic matter and often serve as vectors of biologically transmitted diseases by transporting microorganisms to the plant and animal hosts. As such, insects are constantly ingesting microorganisms, a small fraction of which reach their epithelial surfaces, mainly their digestive tract, where they can establish relationships ranging from symbiosis to mutualism or even parasitism. Understanding the tight physical, genetic, and biochemical interactions that takes place between intestinal epithelia and either resident or infectious microbes has been a long-lasting objective of the immunologist. Research in this field has recently been revitalized with the development of deep sequencing techniques, which allow qualitative and quantitative characterization of gut microbiota. Interestingly, the recent identification of regenerative stem cells in the Drosophila gut together with the initial characterization of Drosophila gut microbiota have opened up new avenues of study aimed at understanding the mechanisms that regulate the dialog between the Drosophila gut epithelium and its microbiota of this insect model. The fact that some of the responses are conserved across species combined with the power of Drosophila genetics could make this organism model a useful tool to further elucidate some aspects of the interaction occurring between the microbiota and the human gut.

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