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Genetic and cytogenetic analysis of the fruit fly Rhagoletis cerasi (Diptera : Tephritidae)

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Auteur
Kounatidis, I.; Papadopoulos, N.; Bourtzis, K.; Mavragani-Tsipidou, P.
Date
2008
DOI
10.1139/g08-032
Sujet
Rhagoletis cerasi
fruit fly
agricultural pest
polytene chromosomes
mitotic chromosomes
asynapsis
Wolbachia pipientis
POLYTENE CHROMOSOME MAPS
CERATITIS-CAPITATA DIPTERA
LUCILIA-CUPRINA
DIPTERA
DACUS-OLEAE DIPTERA
DROSOPHILA-MELANOGASTER
CYTOPLASMIC
INCOMPATIBILITY
WOLBACHIA INFECTIONS
SALIVARY CHROMOSOMES
MALPIGHIAN
TUBULE
HOST RACES
Biotechnology & Applied Microbiology
Genetics & Heredity
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Résumé
The European cherry fruit fly, Rhagoletis cerasi, is a major agricultural pest for which biological, genetic, and cytogenetic information is limited. We report here a cytogenetic analysis of 4 natural Greek populations of R. cerasi, all of them infected with the endosymbiotic bacterium Wolbachia pipientis. The mitotic karyotype and detailed photographic maps of the salivary gland polytene chromosomes of this pest species are presented here. The mitotic metaphase complement consists of 6 pairs of chromosomes, including one pair of heteromorphic sex chromosomes, with the male being the heterogametic sex. The analysis of the salivary gland polytene complement has shown a total of 5 long chromosomes (10 polytene arms) that correspond to the 5 autosomes of the mitotic nuclei and a heterochromatic mass corresponding to the sex chromosomes. The most prominent landmarks of each polytene chromosome, the "weak points", and the unusual asynapsis of homologous pairs of polytene chromosomes at certain regions of the polytene elements are also presented and discussed.
URI
http://hdl.handle.net/11615/29829
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