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Ferreira Barletta, A. B.

Publications and source records attributed to Ferreira Barletta, A. B..

2 recordsLinked to original sources

Mosquito midgut stem cell cellular defense response limits Plasmodium parasite infection

A novel cellular response of midgut progenitors (stem cells and enteroblasts) to Plasmodium berghei infection was investigated in Anopheles stephensi. The presence of developing oocysts triggers proliferation of midgut progenitors that is modulated by the Jak/STAT pathway, and proportional to the number of oocysts on individual midguts. The percentage of parasites in direct contact with enteroblasts increases over time, as progenitors proliferate. Enhancing proliferation of progenitors significantly decreases oocyst numbers, while limiting proliferation increases oocyst survival. Live imaging revealed that enteroblasts interact directly with oocysts and eliminate them. Midgut progenitors sense the presence of Plasmodium oocysts and mount a cellular defense response that involves extensive proliferation and tissue remodeling, followed by oocysts lysis and phagocytosis of parasite remnants by enteroblasts. One-Sentence SummaryMosquito midgut stem cells detect Plasmodium parasites, proliferate and enteroblasts actively eliminate oocysts.

immunology↗

Toll signaling enhances mosquito antiplasmodial immunity by promoting differentiation of hemocytes to the Megacyte lineage

Silencing Cactus, a suppressor of Toll signaling, in Anopheles gambiae, eliminates Plasmodium ookinetes by enhancing local release of hemocyte-derived microvesicles that promote activation of the mosquito complement-like system. We report that Cactus silencing dramatically increases the proportion of megacytes, a new effector hemocyte subpopulation of large granulocytes, from 5 to 79% of circulating granulocytes. Transcriptomic and morphological analysis, as well as cell counts, in situ hybridization and expression of cell-specific markers, indicate that Cactus silencing triggers granulocyte differentiation into megacytes, a process mediated by the Rel1 transcription factor of the Toll pathway. Megacytes are very plastic cells that can extend long filopodia, tend to form clusters in vivo, and are massively recruited to the basal midgut surface in response to bacterial feeding and Plasmodium infection. We show that hemocyte differentiation to the megacyte lineage greatly enhances mosquito immunity against Plasmodium.

microbiology↗