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Decoding Microbial Community Assembly: Insights on Vectors of Infectious Diseases

Dasiel Obregón, Apolline Maître, Elianne Piloto‐Sardiñas, Alejandra Wu‐Chuang, Lianet Abuin‐Denis, Ana Laura Cano‐Argüelles, Justé Aželytė, Ivan Corona-Guerrero, Lourdes Mateos‐Hernández, Myriam Kratou, Štefánia Skičková, Karolína Svobodová, Alejandro Cabezas‐Cruz

2025Annual Review of Microbiology5 citationsDOIOpen Access PDF

Abstract

Vector-borne diseases (VBDs), which are caused by pathogens transmitted by vectors such as mosquitoes and ticks, account for more than 17% of infectious diseases and more than 700,000 deaths annually. The complexity of VBDs arises from ecological interactions among hosts, vectors, pathogens, and the environment, with vector microbiota playing a pivotal role in the modulation of vector competence. Advances in sequencing and in microbiome analysis have deepened our understanding of microbial community assembly within vectors and revealed opportunities for novel control strategies. Network analysis has become essential for uncovering microbial interactions and identifying keystone species that affect community stability and pathogen transmission. Despite progress, key challenges remain in deciphering the drivers of vector microbiota assembly. This review highlights factors shaping microbiota assembly, the potential of network analysis, and promising interventions such as antimicrobiota vaccines and paratransgenesis to reduce pathogen transmission. Future research should focus on standardizing methodologies and leveraging emerging technologies for effective and sustainable VBD control.

Topics & Concepts

BiologyMicrobiomeComputational biologyVector (molecular biology)MetagenomicsMicrobial population biologyBiotechnologyHuman Microbiome ProjectSystems biologyKey (lock)Infectious disease (medical specialty)Human microbiomeEcologyMicrobial ecologyData scienceGut microbiomeMechanism (biology)PathogenHuman pathogenRisk analysis (engineering)BioinformaticsComputer scienceGenomicsEmerging technologiesKeystone speciesNetwork analysisEmerging infectious diseaseInsect symbiosis and bacterial influencesMosquito-borne diseases and controlEvolution and Genetic Dynamics
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