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Cesar, C. S.

Publications and source records attributed to Cesar, C. S..

2 recordsLinked to original sources

Virus infection significantly decreases insect fitness: a meta-analysis

Organisms are constantly at risk of being infected by pathogens such as viruses. Adaptations against viral infection include immune defenses encoded within the host genome and associations with defensive symbionts such as Wolbachia. Wolbachia is widely spread among insects, and its success in nature may be due to its antiviral effects, which can benefit hosts if viruses significantly reduce host fitness. Here, we conducted a meta-analysis to assess the degree to which viral infection affects the fitness of insect hosts, and which factors may influence the impact of viral infection on hosts such as if the insect host is a vector or not of viruses that cause diseases in humans and plants, and if the insect is a new or a natural host of a specific virus. We gathered 1,040 effect sizes from 150 studies. Our results show that viruses significantly reduce host fitness, especially their survival. The decrease in host fitness is higher in non-vector than in vector insects, and we found no difference in fitness decrease caused by viral infection between new and natural hosts. Moreover, we found that fitness effects caused by viruses vary between host order and fitness components. In conclusion, our results show that viruses exert severe harmful effects on hosts by decreasing their fitness. In this context, harboring symbionts that confer antiviral protection, such as Wolbachia, can be highly advantageous for hosts, enhancing their fitness. Conversely, Wolbachia can benefit from the presence of viruses, facilitating its spread in insect populations by offering antiviral protection.

ecology↗

Defensive symbionts provide high protection against natural enemies at low cost to hosts: a meta-analysis

Defensive endosymbionts (i.e., endosymbionts that protect hosts against natural enemies) are widespread in terrestrial arthropods, especially insects. Protection against natural enemies may contribute to their successful spread in nature. However, the outcome of host-symbiont interactions (mutualism or parasitism) depend on the balance between the costs and benefits of the interaction and on the ecological conditions experienced by the host, such as the presence or absence of natural enemies. Here, we conducted a meta-analysis to quantitatively assess the costs and benefits of symbiont-mediated protection in terrestrial arthropods. We gathered approximately 3,425 effect sizes from 246 studies. Our results show that in the presence of natural enemies (i.e., hosts infected with pathogens or parasites), symbionts provide protection, positively affecting the fitness of hosts. In the absence of natural enemies, symbionts caused little reduction in host fitness. Overall, symbiont-mediated protection was 7.1 times stronger than the cost observed in the absence of natural enemies, indicating strong protection and little evidence of substantial fitness costs to hosts. Natural enemies attacking symbiont-infected hosts had substantial reduction in their fitness. Moreover, the level of protection and cost for both hosts and natural enemies varies between the fitness components, host families, symbiont species, and natural enemy group. Our results reveal a broad symbiont-mediated protection with little evidence of substantial costs associated, which may help explain the successful spread of symbionts in wild arthropod populations.

ecology↗