The entomopathogenic fungus Beauveria bassiana activate toll and JAK-STAT pathway-controlled effector genes and anti-dengue activity in Aedes aegypti
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Fighting Arbovirus Transmission: Natural and Engineered Control of Vector Competence in Aedes MosquitoesAnalysis of whitefly transcriptional responses to Beauveria bassiana infection reveals new insights into insect-fungus interactionsEngineered Aedes aegypti JAK/STAT Pathway-Mediated Immunity to Dengue VirusDevelopment and evaluation of a novel contamination device that targets multiple life-stages of Aedes aegyptiThe insect microbiome modulates vector competence for arboviruses.The mosquito microbiota influences vector competence for human pathogens.Interactions between a fungal entomopathogen and malaria parasites within a mosquito vectorComplement-related proteins control the flavivirus infection of Aedes aegypti by inducing antimicrobial peptidesSmall mosquitoes, large implications: crowding and starvation affects gene expression and nutrient accumulation in Aedes aegyptiThe microbiome modulates arbovirus transmission in mosquitoes.Validation of Aedes aegypti Aag-2 cells as a model for insect immune studies.Evaluating the lethal and pre-lethal effects of a range of fungi against adult Anopheles stephensi mosquitoesHow malaria models relate temperature to malaria transmission.Annotation of the Asian Citrus Psyllid Genome Reveals a Reduced Innate Immune System.Aedes aegypti ML and Niemann-Pick type C family members are agonists of dengue virus infection.Microbial control of arthropod-borne disease.Microbiota activates IMD pathway and limits Sindbis infection in Aedes aegypti.Anopheles gambiae larvae mount stronger immune responses against bacterial infection than adults: evidence of adaptive decoupling in mosquitoes.Activation of Aedes aegypti prophenoloxidase-3 and its role in the immune response against entomopathogenic fungi.Cloning and characterization of microbial activated Aedes aegypti MEK4 (AaMEK4): influences of noncatalytic domains on enzymatic activity.An Aedes aegypti-associated fungus increases susceptibility to dengue virus by modulating gut trypsin activity.Entomopathogenic fungal infection leads to temporospatial modulation of the mosquito immune system.The interplay between dose and immune system activation determines fungal infection outcome in the African malaria mosquito, Anopheles gambiae.Strain-specific pathogenicity and subversion of phenoloxidase activity in the mosquito Aedes aegypti by members of the fungal entomopathogenic genus Isaria.Sexual dimorphism in Drosophila melanogaster survival of Beauveria bassiana infection depends on core immune signaling
P2860
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P2860
The entomopathogenic fungus Beauveria bassiana activate toll and JAK-STAT pathway-controlled effector genes and anti-dengue activity in Aedes aegypti
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2011 nî lūn-bûn
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2011年の論文
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2011年学术文章
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2011年学术文章
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2011年学术文章
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2011年学术文章
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name
The entomopathogenic fungus Be ...... ngue activity in Aedes aegypti
@ast
The entomopathogenic fungus Be ...... ngue activity in Aedes aegypti
@en
type
label
The entomopathogenic fungus Be ...... ngue activity in Aedes aegypti
@ast
The entomopathogenic fungus Be ...... ngue activity in Aedes aegypti
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The entomopathogenic fungus Be ...... ngue activity in Aedes aegypti
@ast
The entomopathogenic fungus Be ...... ngue activity in Aedes aegypti
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P2093
P2860
P1476
The entomopathogenic fungus Be ...... ngue activity in Aedes aegypti
@en
P2093
James C Morton
Jayme A Souza-Neto
Yuemei Dong
P2860
P304
P356
10.1016/J.IBMB.2011.11.005
P577
2011-12-13T00:00:00Z