Abstract Background The diversification of immune systems during evolution involves the expansion of particular gene families in given phyla. A better understanding of the metazoan immune system requires an analysis of the logic underlying such immune gene amplification. This analysis is now within reach due to the ease with which we can generate multiple mutations in an organism. In this paper, we analyze the contribution of the three Drosophila prophenoloxidases (PPOs) to host defense by generating single, double and triple mutants. PPOs are enzymes that catalyze the production of melanin at the site of infection and around parasites. They are the rate-limiting enzymes that contribute to the melanization reaction, a major immune mechanism...
In arthropods, melanization plays a major role in the innate immune response to encapsulate and kill...
Understanding the genomic basis of evolutionary adaptation requires insight into the molecular basis...
Understanding the genomic basis of evolutionary adaptation requires insight into the molecular basis...
<div><p>The melanization reaction is a major immune response in Arthropods and involves the rapid sy...
The melanization reaction is a major immune response in Arthropods and involves the rapid synthesis ...
The melanization reaction is a major immune response in Arthropods and involves the rapid synthesis ...
International audienceUpon infection, the phenoloxidase system in arthropods is rapidly mobilized an...
Insect prophenoloxidase (PPO) is an important innate immunity protein due to its involvement in cell...
Insect prophenoloxidase (PPO) is essential for physiological functions such as melanization of invad...
Understanding the genomic basis of evolutionary adaptation requires insight into the molecular basis...
<div><p>Insect prophenoloxidase (PPO) is essential for physiological functions such as melanization ...
The antimicrobial defence of Drosophila relies on cellular and humoral processes, of which the induc...
Understanding the genomic basis of evolutionary adaptation requires insight into the molecular basis...
<div><p>In arthropods, melanization plays a major role in the innate immune response to encapsulate ...
International audienceMicrosporidia are obligate intracellular parasites able to infest specifically...
In arthropods, melanization plays a major role in the innate immune response to encapsulate and kill...
Understanding the genomic basis of evolutionary adaptation requires insight into the molecular basis...
Understanding the genomic basis of evolutionary adaptation requires insight into the molecular basis...
<div><p>The melanization reaction is a major immune response in Arthropods and involves the rapid sy...
The melanization reaction is a major immune response in Arthropods and involves the rapid synthesis ...
The melanization reaction is a major immune response in Arthropods and involves the rapid synthesis ...
International audienceUpon infection, the phenoloxidase system in arthropods is rapidly mobilized an...
Insect prophenoloxidase (PPO) is an important innate immunity protein due to its involvement in cell...
Insect prophenoloxidase (PPO) is essential for physiological functions such as melanization of invad...
Understanding the genomic basis of evolutionary adaptation requires insight into the molecular basis...
<div><p>Insect prophenoloxidase (PPO) is essential for physiological functions such as melanization ...
The antimicrobial defence of Drosophila relies on cellular and humoral processes, of which the induc...
Understanding the genomic basis of evolutionary adaptation requires insight into the molecular basis...
<div><p>In arthropods, melanization plays a major role in the innate immune response to encapsulate ...
International audienceMicrosporidia are obligate intracellular parasites able to infest specifically...
In arthropods, melanization plays a major role in the innate immune response to encapsulate and kill...
Understanding the genomic basis of evolutionary adaptation requires insight into the molecular basis...
Understanding the genomic basis of evolutionary adaptation requires insight into the molecular basis...