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BMC Genomics|April 18, 2019
The first draft genomes of the ant Formica exsecta, and its Wolbachia endosymbiont reveal extensive gene transfer from endosymbiont to hostKishor Dhaygude, Abhilash Nair, Helena Johansson, et al.Insects|August 29, 2019
Comparison of Twelve Ant Species and Their Susceptibility to Fungal InfectionNick Bos, Viljami Kankaanpää-Kukkonen, Dalial Freitak, et al.Journal of Chemical Ecology|November 26, 2013
Sources of variation in cuticular hydrocarbons in the ant Formica exsectaStephen J Martin, Emma Vitikainen, Sue Shemilt, et al.Molecular Ecology|February 28, 2019
Changes in gene DNA methylation and expression networks accompany caste specialization and age-related physiological changes in a social insectClaire Morandin, Volker P Brendel, Liselotte Sundström, et al.Plos One|November 22, 2013
A metatranscriptomic approach to the identification of microbiota associated with the ant Formica exsectaHelena Johansson, Kishor Dhaygude, Stafva Lindström, et al.Peerj|November 28, 2017
Transcriptome sequencing reveals high isoform diversity in the ant Formica exsectaKishor Dhaygude, Kalevi Trontti, Jenni Paviala, et al.Molecular Ecology|October 6, 2005
Eider females form non-kin brood-rearing coalitionsMarkus Ost, Emma Vitikainen, Peter Waldeck, et al.Proceedings of the National Academy of Sciences of the United States of America|July 3, 2003
Informational constraints on optimal sex allocation in antsJacobus J Boomsma, Jannie Nielsen, Liselotte Sundström, et al.Current Biology : CB|January 7, 2020
An Ancient and Eroded Social Supergene Is Widespread across Formica AntsAlan Brelsford, Jessica Purcell, Amaury Avril, et al.Plos One|July 23, 2013
Transcriptome characterisation of the ant Formica exsecta with new insights into the evolution of desaturase genes in social hymenopteraHélène Badouin, Khalid Belkhir, Emma Gregson, et al.Pageof 4