Author:
Favreau Emeline,Cini Alessandro,Taylor Daisy,Câmara Ferreira Francisco,Bentley Michael A.,Cappa Federico,Cervo Rita,Privman Eyal,Schneider Jadesada,Thiéry Denis,Mashoodh Rahia,Wyatt Christopher D. R.,Brown Robert L.,Bodrug-Schepers Alexandrina,Stralis-Pavese Nancy,Dohm Juliane C.,Mead Daniel,Himmelbauer Heinz,Guigo Roderic,Sumner Seirian
Abstract
AbstractHornets are the largest of the social wasps, and are important regulators of insect populations in their native ranges. Hornets are also very successful as invasive species, with often devastating economic, ecological and societal effects. Understanding why these wasps are such successful invaders is critical to managing future introductions and minimising impact on native biodiversity. Critical to the management toolkit is a comprehensive genomic resource for these insects. Here we provide the annotated genomes for two hornets,Vespa crabroandVespa velutina.We compare their genomes with those of other social Hymenoptera, including the northern giant hornetVespa mandarinia. The three hornet genomes show evidence of selection pressure on genes associated with reproduction, which might facilitate the transition into invasive ranges.Vespa crabrohas experienced positive selection on the highest number of genes, including those putatively associated with molecular binding and olfactory systems. Caste-specific brain transcriptomic analysis also revealed 133 differentially expressed genes, some of which are associated with olfactory functions. This report provides a spring-board for advancing our understanding of the evolution and ecology of hornets, and opens up opportunities for using molecular methods in the future management of both native and invasive populations of these over-looked insects.
Funder
Natural Environment Research Council
HORIZON EUROPE Marie Sklodowska-Curie Actions
Plataforma de Recursos Biomoleculares y Bioinformáticos
Harold and Olga Fox Fund
Wellcome Trust Grant
Publisher
Springer Science and Business Media LLC
Cited by
2 articles.
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