Identification and characterization of GAL4 drivers that mark distinct cell types and regions in the Drosophila adult gut

  • Seung Yeon Lim
  • , Hyejin You
  • , Jinhyeong Lee
  • , Jaejin Lee
  • , Yoojin Lee
  • , Kyung Ah Lee
  • , Boram Kim
  • , Ji Hoon Lee
  • , Ji Hyeon Jeong
  • , Sooin Jang
  • , Byoungsoo Kim
  • , Hyungjun Choi
  • , Gayoung Hwang
  • , Min Sung Choi
  • , Sung Eun Yoon
  • , Jae Young Kwon
  • , Won Jae Lee
  • , Young Joon Kim
  • , Greg S.B. Suh

Research output: Contribution to journalArticlepeer-review

Abstract

The gastrointestinal tract in the adult Drosophila serves as a model system for exploring the mechanisms underlying digestion, absorption and excretion, stem cell plasticity, and inter-organ communication, particularly through the gut–brain axis. It is also useful for studying the cellular and adaptive responses to dietary changes, alterations in microbiota and immunity, and systematic and endocrine signals. Despite the various cell types and distinct regions in the gastrointestinal tract, few tools are available to target and manipulate the activity of each cell type and region, and their gene expression. Here, we report 353 GAL4 lines and several split-GAL4 lines that are expressed in enteric neurons (ENs), progenitors (ISCs and EBs), enterocytes (ECs), enteroendocrine cells (EEs), or/and other cell types that are yet to be identified in distinct regions of the gut. We had initially collected approximately 600 GAL4 lines that may be expressed in the gut based on RNA sequencing data, and then crossed them to UAS-GFP to perform immunohistochemistry to identify those that are expressed selectively in the gut. The cell types and regional expression patterns that are associated with the entire set of GAL4 drivers and split-GAL4 combinations are annotated online at http://kdrc.kr/index.php (K-Gut Project). This GAL4 resource can be used to target specific populations of distinct cell types in the fly gut, and therefore, should permit a more precise investigation of gut cells that regulate important biological processes.

Original languageEnglish
Pages (from-to)33-44
Number of pages12
JournalJournal of Neurogenetics
Volume35
Issue number1
DOIs
StatePublished - 2021

Keywords

  • cell-type specificity
  • Drosophila
  • GAL4
  • gut
  • regional
  • resource

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