4.0 Article

Of blood cells and the nervous system Hematopoiesis in the Drosophila larva

期刊

FLY
卷 6, 期 4, 页码 254-260

出版社

TAYLOR & FRANCIS INC
DOI: 10.4161/fly.22267

关键词

Drosophila larva; hematopoiesis; microenvironment; hemocyte; hematopoietic pocket; peripheral nervous system; sensory neuron; tissue macrophage; hematopoietic stem cell; niche

资金

  1. HFSP
  2. PBBR award
  3. NCRR/NIH [C06-RR16490]
  4. Sandler Foundation Startup award
  5. Broad Research Incubator award
  6. Hellman Fellows award

向作者/读者索取更多资源

Hematopoiesis is well-conserved between Drosophila and vertebrates. Similar as in vertebrates, the sites of hematopoiesis shift during Drosophila development. Blood cells (hemocytes) originate de novo during hematopoietic waves in the embryo and in the Drosophila lymph gland. In contrast, the hematopoietic wave in the larva is based on the colonization of resident hematopoietic sites by differentiated hemocytes that arise in the embryo, much like in vertebrates the colonization of peripheral tissues by primitive macrophages of the yolk sac, or the seeding of fetal liver, spleen and bone marrow by hematopoietic stem and progenitor cells. At the transition to the larval stage, Drosophila embryonic hemocytes retreat to hematopoietic niches, i.e., segmentally repeated hematopoietic pockets of the larval body wall that are jointly shared with sensory neurons and other cells of the peripheral nervous system (PNS). Hemocytes rely on the PNS for their localization and survival, and are induced to proliferate in these microenvironments, expanding to form the larval hematopoietic system. In this process, differentiated hemocytes from the embryo resume proliferation and self-renew, omitting the need for an undifferentiated prohemocyte progenitor. Larval hematopoiesis is the first Drosophila model for blood cell colonization and niche support by the PNS. It suggests an interface where innocuous or noxious sensory inputs regulate blood cell homeostasis or immune responses. The system adds to the growing concept of nervous system dependence of hematopoietic microenvironments and organ stem cell niches, which is being uncovered across phyla.

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