Retention of an Endosymbiont for the Production of a Single Molecule

Author:

Garber Arkadiy I1,Garcia de la Filia Molina Andrés2,Vea Isabelle M2,Mongue Andrew J23,Ross Laura2ORCID,McCutcheon John P14ORCID

Affiliation:

1. Biodesign Center for Mechanisms of Evolution and School of Life Sciences, Arizona State University , Tempe, AZ , USA

2. Institute of Ecology and Evolution, University of Edinburgh , Edinburgh , UK

3. Department of Entomology and Nematology, University of Florida , Gainesville, FL , USA

4. Howard Hughes Medical Institute , Chevy Chase, MD , USA

Abstract

Abstract Sap-feeding insects often maintain two or more nutritional endosymbionts that act in concert to produce compounds essential for insect survival. Many mealybugs have endosymbionts in a nested configuration: one or two bacterial species reside within the cytoplasm of another bacterium, and together, these bacteria have genomes that encode interdependent sets of genes needed to produce key nutritional molecules. Here, we show that the mealybug Pseudococcus viburni has three endosymbionts, one of which contributes only two unique genes that produce the host nutrition-related molecule chorismate. All three bacterial endosymbionts have tiny genomes, suggesting that they have been coevolving inside their insect host for millions of years.

Publisher

Oxford University Press (OUP)

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