Highly Contiguous Genome Assemblies of the Guinea Paper Wasp (Polistes exclamans) and Mischocyttarus mexicanus

Author:

Miller Sara E1ORCID,Legan Andrew W1ORCID,Uy Floria M K2ORCID,Sheehan Michael J1ORCID

Affiliation:

1. Department of Neurobiology and Behavior, Cornell University , Ithaca, New York , USA

2. Department of Biology, University of Rochester , Rochester, New York , USA

Abstract

Abstract Paper wasps are a model system for the study of social evolution due to a high degree of inter- and intraspecific variation in cooperation, aggression, and visual signals of social status. Increasing the taxonomic coverage of genomic resources for this diverse clade will aid comparative genomic approaches for testing predictions about the molecular basis of social evolution. Here, we provide draft genome assemblies for two well-studied species of paper wasps, Polistes exclamans and Mischocyttarus mexicanus. The P. exclamans genome assembly is 221.5 Mb in length with a scaffold N50 of 4.11 Mb. The M. mexicanus genome assembly is 227 Mb in length with a scaffold N50 of 1.1 Mb. Genomes have low repeat content (9.54–10.75%) and low GC content (32.06–32.4%), typical of other social hymenopteran genomes. The DNA methyltransferase gene, Dnmt3 , was lost early in the evolution of Polistinae. We identified a second independent loss of Dnmt3 within hornets (genus: Vespa).

Publisher

Oxford University Press (OUP)

Subject

Genetics,Ecology, Evolution, Behavior and Systematics

Reference58 articles.

1. Gapped BLAST and PSI-BLAST: a new generation of protein database search programs;Altschul;Nucleic Acids Res,1997

2. Cognitive specialization for learning faces is associated with shifts in the brain transcriptome of a social wasp;Berens;J Exp Biol,2017

3. Genomic organization of eukaryotic tRNAs;Bermudez-Santana;BMC Genomics,2010

4. Evolution of DNA methylation across insects;Bewick;Mol Biol Evol,2017

5. Scaffolding pre-assembled contigs using SSPACE;Boetzer;Bioinformatics,2011

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