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Decoding mosquito–virus interactions: from classical genetics to multi-omics

delete2025-07-25
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AI
É
Élodie Couderc *
L
Louis Lambrechts
S
Sarah H. Merkling *
DOI:10.1016/j.tim.2025.07.001delete
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Abstract

Abstract

En 中文
Harnessing the rich genetic diversity of wild mosquito populations has emerged as a powerful strategy for uncovering novel genetic determinants of vector competence. Targeted and unbiased approaches are complementary: unbiased methods can reveal novel candidate factors, which can subsequently be characterized in greater detail using hypothesis-driven targeted methods. Linkage mapping has clarified the genetic basis of vector competence, while multi-omics have deepened the understanding of mosquito–virus interactions. Single-cell and spatial omics offer unprecedented insights into mosquito infection dynamics and vector–virus interactions.
Keywords:
wild mosquito populations
vector competence
linkage mapping
multi-omics
single-cell omics

Journal

Trends in Microbiology cover
Trends in Microbiology
IF:
14.9
Papers:
3.9K
Citations:
1.9W

Organization

U
Université Paris Cité
Scholars:
1.8K
Papers: 739
Citations: 8.5W