The fruit fly Drosophila is an excellent model to study the response of different immunocompetent organs during systemic infection. In the present study, we intended to test the hypothesis that the only professional immune organs of the fly, the fat body and hemocytes, show substantial similarities in their responses to systemic infection. However, comprehensive transcriptome analysis of isolated organs revealed highly divergent transcript signatures, with the few commonly regulated genes encoding mainly classical immune effectors from the antimicrobial peptide family. The fat body and the hemocytes each have specific reactions that are not present in the other organ. Fat body-specific responses comprised those enabling an improved peptide ...
The Toll signaling pathway, first discovered in Drosophila, has a well-established role in immune re...
In addition to its role in initiating immune response in the body, the innate immune system seems to...
During the past year, dramatic progress has been achieved in our understanding of Drosophila immune ...
The fruit fly Drosophila is an excellent model to study the response of different immunocompetent or...
International audienceThe innate immune response was once considered to be a limited set of response...
Several signaling pathways, including the JAK/STAT and Toll pathways, are known to activate blood ce...
Several signaling pathways, including the JAK/STAT and Toll pathways, are known to activate blood ce...
During the last 40 years, Drosophila melanogaster has become an invaluable tool in understanding inn...
Several signaling pathways, including the JAK/STAT and Toll pathways, are known to activate blood ce...
Drosophila melanogaster is widely used as a model organism to study the innate immune system because...
SummaryPhagocytic blood cells are critical to innate immune defense: They internalize and destroy mi...
The fruit fly Drosophila melanogaster is an important model for the analysis of the interaction betw...
Drosophila melanogaster's blood cells (hemocytes) play essential roles in wound healing and are invo...
<div><p>(A) Posterior region of a third instar larva showing the cuticle and the trachea. These stru...
Understanding the genomic basis of evolutionary adaptation requires insight into the molecular basis...
The Toll signaling pathway, first discovered in Drosophila, has a well-established role in immune re...
In addition to its role in initiating immune response in the body, the innate immune system seems to...
During the past year, dramatic progress has been achieved in our understanding of Drosophila immune ...
The fruit fly Drosophila is an excellent model to study the response of different immunocompetent or...
International audienceThe innate immune response was once considered to be a limited set of response...
Several signaling pathways, including the JAK/STAT and Toll pathways, are known to activate blood ce...
Several signaling pathways, including the JAK/STAT and Toll pathways, are known to activate blood ce...
During the last 40 years, Drosophila melanogaster has become an invaluable tool in understanding inn...
Several signaling pathways, including the JAK/STAT and Toll pathways, are known to activate blood ce...
Drosophila melanogaster is widely used as a model organism to study the innate immune system because...
SummaryPhagocytic blood cells are critical to innate immune defense: They internalize and destroy mi...
The fruit fly Drosophila melanogaster is an important model for the analysis of the interaction betw...
Drosophila melanogaster's blood cells (hemocytes) play essential roles in wound healing and are invo...
<div><p>(A) Posterior region of a third instar larva showing the cuticle and the trachea. These stru...
Understanding the genomic basis of evolutionary adaptation requires insight into the molecular basis...
The Toll signaling pathway, first discovered in Drosophila, has a well-established role in immune re...
In addition to its role in initiating immune response in the body, the innate immune system seems to...
During the past year, dramatic progress has been achieved in our understanding of Drosophila immune ...