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1.
Dev Cell ; 51(6): 787-803.e5, 2019 12 16.
Article in English | MEDLINE | ID: mdl-31735669

ABSTRACT

The use of adult Drosophila melanogaster as a model for hematopoiesis or organismal immunity has been debated. Addressing this question, we identify an extensive reservoir of blood cells (hemocytes) at the respiratory epithelia (tracheal air sacs) of the thorax and head. Lineage tracing and functional analyses demonstrate that the majority of adult hemocytes are phagocytic macrophages (plasmatocytes) from the embryonic lineage that parallels vertebrate tissue macrophages. Surprisingly, we find no sign of adult hemocyte expansion. Instead, hemocytes play a role in relaying an innate immune response to the blood cell reservoir: through Imd signaling and the Jak/Stat pathway ligand Upd3, hemocytes act as sentinels of bacterial infection, inducing expression of the antimicrobial peptide Drosocin in respiratory epithelia and colocalizing fat body domains. Drosocin expression in turn promotes animal survival after infection. Our work identifies a multi-signal relay of organismal humoral immunity, establishing adult Drosophila as model for inter-organ immunity.


Subject(s)
Blood Cells/metabolism , Hematopoiesis/physiology , Macrophages/metabolism , Respiratory Mucosa/metabolism , Animals , Drosophila/metabolism , Hemocytes/metabolism , Immunity, Cellular/immunology , Immunity, Innate/immunology , Janus Kinases/metabolism , Transcription Factors/metabolism
2.
Nat Commun ; 8: 15990, 2017 07 27.
Article in English | MEDLINE | ID: mdl-28748922

ABSTRACT

An outstanding question in animal development, tissue homeostasis and disease is how cell populations adapt to sensory inputs. During Drosophila larval development, hematopoietic sites are in direct contact with sensory neuron clusters of the peripheral nervous system (PNS), and blood cells (hemocytes) require the PNS for their survival and recruitment to these microenvironments, known as Hematopoietic Pockets. Here we report that Activin-ß, a TGF-ß family ligand, is expressed by sensory neurons of the PNS and regulates the proliferation and adhesion of hemocytes. These hemocyte responses depend on PNS activity, as shown by agonist treatment and transient silencing of sensory neurons. Activin-ß has a key role in this regulation, which is apparent from reporter expression and mutant analyses. This mechanism of local sensory neurons controlling blood cell adaptation invites evolutionary parallels with vertebrate hematopoietic progenitors and the independent myeloid system of tissue macrophages, whose regulation by local microenvironments remain undefined.


Subject(s)
Drosophila Proteins/metabolism , Drosophila melanogaster/growth & development , Hematopoiesis , Hematopoietic System/metabolism , Hemocytes/metabolism , Inhibin-beta Subunits/metabolism , Larva/growth & development , Sensory Receptor Cells/metabolism , Animals , Carbachol/pharmacology , Cell Survival , Cellular Microenvironment , Cholinergic Agonists/pharmacology , Drosophila Proteins/drug effects , Drosophila melanogaster/drug effects , Drosophila melanogaster/metabolism , Hematopoietic System/drug effects , Hemocytes/drug effects , Larva/drug effects , Larva/metabolism , Peripheral Nervous System/drug effects , Peripheral Nervous System/metabolism , Sensory Receptor Cells/drug effects
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