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Updated: Nov 17, 2025

Assaying Blood Cell Populations of the Drosophila melanogaster Larva
Published on: November 11, 2015
Differential activation of JAK-STAT signaling reveals functional compartmentalization in Drosophila blood progenitors
Diana Rodrigues1,2,3, Yoan Renaud4, K VijayRaghavan2,3
1Jawaharlal Nehru Centre for Advanced Scientific Research, Bangalore, India.
Abstract:
Blood cells arise from diverse pools of stem and progenitor cells. Understanding progenitor heterogeneity is a major challenge. The Drosophila larval lymph gland is a well-studied model to understand blood progenitor maintenance and recapitulates several aspects of vertebrate hematopoiesis. However in-depth analysis has focused on the anterior lobe progenitors (AP), ignoring the posterior progenitors (PP) from the posterior lobes. Using in situ expression mapping and developmental and transcriptome analysis, we reveal PP heterogeneity and identify molecular-genetic tools to study this abundant progenitor population. Functional analysis shows that PP resist differentiation upon immune challenge, in a JAK-STAT-dependent manner. Upon wasp parasitism, AP downregulate JAK-STAT signaling and form lamellocytes. In contrast, we show that PP activate STAT92E and remain undifferentiated, promoting survival. Stat92E knockdown or genetically reducing JAK-STAT signaling permits PP lamellocyte differentiation. We discuss how heterogeneity and compartmentalization allow functional segregation in response to systemic cues and could be widely applicable.
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