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Medfly-Wolbachia symbiosis: Genotype x genotype interactions determine host's life history traits under mass rearing conditions

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Συγγραφέας
Kyritsis G.A., Augustinos A.A., Livadaras I., Cáceres C., Bourtzis K., Papadopoulos N.T.
Ημερομηνία
2019
Γλώσσα
en
DOI
10.1186/s12896-019-0586-7
Λέξη-κλειδί
Cell proliferation
Fruits
Insect control
Ceratitis capitata
Fitness
Fruit flies
Genotype
Incompatible insect technique
Sterile insect techniques
Symbiosis
Tephritidae
Wolbachia
Bacteria
adult
animal experiment
Article
controlled study
embryo development
female
fertility
flying
genetic background
genotype
genotype by genotype interaction
hatching
larval development
life history trait
longevity
male
mating
Mediterranean fruit fly
nonhuman
pupation
rearing
reproductive fitness
sex ratio
symbiosis
Wolbachia pipientis
Anaplasmataceae infection
animal
classification
genetics
Mediterranean fruit fly
microbiology
pathogenicity
physiology
sexual behavior
symbiosis
veterinary medicine
Wolbachia
Anaplasmataceae Infections
Animals
Ceratitis capitata
Female
Fertility
Genotype
Male
Sexual Behavior, Animal
Symbiosis
Wolbachia
BioMed Central Ltd.
Εμφάνιση Μεταδεδομένων
Επιτομή
Background: Wolbachia pipientis is a widespread, obligatory intracellular and maternally inherited bacterium, that induces a wide range of reproductive alterations to its hosts. Cytoplasmic Incompatibility (CI) is causing embryonic lethality, the most common of them. Despite that Wolbachia-borne sterility has been proposed as an environmental friendly pest control method (Incompatible Insect Technique, IIT) since 1970s, the fact that Wolbachia modifies important fitness components of its hosts sets severe barriers to IIT implementation. Mass rearing of Mediterranean fruit fly, Ceratitis capitata (medfly), is highly optimized given that this pest is a model species regarding the implementation of another sterility based pest control method, the Sterile Insect Technique (SIT). We used the medfly-Wolbachia symbiotic association, as a model system, to study the effect of two different Wolbachia strains, on the life history traits of 2 C. capitata lines with different genomic background. Results: Wolbachia effects are regulated by both C. capitata genetic background and the Wolbachia strain. Wolbachia infection reduces fertility rates in both C. capitata genetic backgrounds and shortens the pre-pupa developmental duration in the GSS strain. On the other hand, regardless of the strain of Wolbachia (wCer2, wCer4) infection does not affect either the sex ratio or the longevity of adults. wCer4 infection imposed a reduction in females' fecundity but wCer2 did not. Male mating competitiveness, adults flight ability and longevity under water and food deprivation were affected by both the genetic background of medfly and the strain of Wolbachia (genotype by genotype interaction). Conclusion: Wolbachia infection could alter important life history traits of mass-reared C. capitata lines and therefore the response of each genotype on the Wolbachia infection should be considered toward ensuring the productivity of the Wolbachia-infected insects under mass-rearing conditions. © 2019 The Author(s).
URI
http://hdl.handle.net/11615/75608
Collections
  • Δημοσιεύσεις σε περιοδικά, συνέδρια, κεφάλαια βιβλίων κλπ. [19735]

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