Heritability of symbiont density reveals distinct regulatory mechanisms in a tripartite symbiosis.
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ABSTRACT: Beneficial eukaryotic-bacterial partnerships are integral to animal and plant evolution. Understanding the density regulation mechanisms behind bacterial symbiosis is essential to elucidating the functional balance between hosts and symbionts. Citrus mealybugs, Planococcus citri (Risso), present an excellent model system for investigating the mechanisms of symbiont density regulation. They contain two obligate nutritional symbionts, Moranella endobia, which resides inside Tremblaya princeps, which has been maternally transmitted for 100-200 million years. We investigate whether host genotype may influence symbiont density by crossing mealybugs from two inbred laboratory-reared populations that differ substantially in their symbiont density to create hybrids. The density of the M. endobia s
SUBMITTER: Parkinson JF
PROVIDER: S-EPMC4831439 | biostudies-literature | 2016 Apr
REPOSITORIES: biostudies-literature
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