Pathogen-mediated natural and manipulated population collapse in an invasive social insect

Author:

LeBrun Edward G.1,Jones Melissa2,Plowes Robert M.1ORCID,Gilbert Lawrence E.3

Affiliation:

1. Brackenridge Field Laboratory, Department of Integrative Biology, The University of Texas at Austin, Austin, TX 78703

2. Texas Parks and Wildlife Department, Estero Llano Grande State Park, Weslaco, TX 78596

3. Department of Integrative Biology, The University of Texas at Austin, Austin, TX 78701

Abstract

SignificanceInvasive social insects are among the most damaging of invasive organisms and have proved universally intractable to biological control. Despite this, populations of some invasive social insects collapse from unknown causes. We report long-term studies demonstrating that infection by a microsporidian pathogen causes populations of a globally significant invasive ant to collapse to local extinction, providing a mechanistic understanding of a pervasive phenomenon in biological invasions: the collapse of established populations from endogenous factors. We apply this knowledge and successfully eliminate two large, introduced populations of these ants. More broadly, microsporidian pathogens should be evaluated for control of other supercolonial invasive social insects. Diagnosing the cause of unanticipated population collapse in invasive organisms can lead to applied solutions.

Funder

Lee and Ramona Bass Foundation

Texas Parks and Wildlife Department

DOI | U.S. Fish and Wildlife Service

Travis County Natural Resources Division

Austin Water Wildlands Conservation Division

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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