Are you sure you want to leave this community? Leaving the community will revoke any permissions you have been granted in this community.
Virtually all species of coelomate animals contain blood cells that display a division of labor necessary for homeostasis. This functional partition depends upon the balance between proliferation and differentiation mostly accomplished in the hematopoietic organs. In Drosophila melanogaster, the lymph gland produces plasmatocytes and crystal cells that are not released until pupariation. Yet, throughout larval development, both hemocyte types increase in numbers. Mature plasmatocytes can proliferate but it is not known if crystal cell numbers increase by self-renewal or by de novo differentiation. We show that new crystal cells in third instar larvae originate through a Notch-dependent process of plasmatocyte transdifferentiation. This process occurs in the sessile clusters and is contingent upon the integrity of these structures. The existence of this hematopoietic tissue, relying on structure-dependent signaling events to promote blood homeostasis, creates a new paradigm for addressing outstanding questions in Drosophila hematopoiesis and establishing further parallels with vertebrate systems.
Pubmed ID: 25650737
Publication data is provided by the National Library of Medicine ® and PubMed ®. Data is retrieved from PubMed ® on a weekly schedule. For terms and conditions see the National Library of Medicine Terms and Conditions.
Drosophila melanogaster with name y[1] w[*] P{w[+mC]=UAS-mCD8::GFP.L}Ptp4E[LL4] P{w[+mW.hs]=GawB}lz[gal4] from BDSC.
View all literature mentionsDrosophila melanogaster with name P{w[+mW.hs]=GawB}lz[gal4]; P{w[+mC]=UAS-GFP.S65T}Myo31DF[T2] from BDSC.
View all literature mentionsDrosophila melanogaster with name Oregon-R(R) from DGGR.
View all literature mentionsDrosophila melanogaster with name y[*] w[*]; P{w[+mC]=UAS-2xEGFP}AH3 from BDSC.
View all literature mentions