The abundance and distribution pattern of eight mariner elements from three different subfamilies in the genome of the medfly Ceratitis capitata were determined. The copy numbers, as determined by slot-blot analysis, were very different for these elements. Their abundance did not change significantly within the native, the ancient or the newly derived populations, indicating that the rapid colonization process of the medfly had not affected the copy number of mariner elements. The distribution of the mariner elements was analyzed using fluorescent in situ hybridization (FISH) with charge-coupled device (CCD) camera analysis. The pattern of distribution in euchromatin and heterochromatin varied greatly and was distinctive and specific for each element. The implications of these findings are discussed and it is concluded that they generally support the hypothesis of a transposition/selection model in which the abundance and distribution patterns of these elements are regulated primarily by selection against deleterious effects due to meiotic ectopic recombination, while genetic drift would have played a minor role.

Evolution of different subfamilies of mariner elements within the medfly genome inferred from abundance and chromosomal distribution.

TORTI, CRISTINA;GOMULSKI, LUDVIK;MORALLI, DANIELA;RAIMONDI, ELENA MARIA;GASPERI, GIULIANO;MALACRIDA, ANNA RODOLFA
2000-01-01

Abstract

The abundance and distribution pattern of eight mariner elements from three different subfamilies in the genome of the medfly Ceratitis capitata were determined. The copy numbers, as determined by slot-blot analysis, were very different for these elements. Their abundance did not change significantly within the native, the ancient or the newly derived populations, indicating that the rapid colonization process of the medfly had not affected the copy number of mariner elements. The distribution of the mariner elements was analyzed using fluorescent in situ hybridization (FISH) with charge-coupled device (CCD) camera analysis. The pattern of distribution in euchromatin and heterochromatin varied greatly and was distinctive and specific for each element. The implications of these findings are discussed and it is concluded that they generally support the hypothesis of a transposition/selection model in which the abundance and distribution patterns of these elements are regulated primarily by selection against deleterious effects due to meiotic ectopic recombination, while genetic drift would have played a minor role.
2000
Molecular Biology & Genetics considers all aspects of basic and applied genetics, including molecular genetics, prokaryotic and eukaryotic gene expression, mechanisms of mutagenesis, structure, function and regulation of genetic material. Also included are resources concerned with clinical genetics, patterns of inheritance, genetic cause, and screening and treatment of disease. Resources dealing specifically with developmentally regulated gene expression, or with signal transduction pathways that modulate gene expression at the cellular level are excluded and are covered in the Cell and Developmental Biology category.
Sì, ma tipo non specificato
Inglese
Internazionale
STAMPA
108
8
523
532
Tematica Ex SIR: Costruzione di cromosomi artificiali umani. (Classif. Ex SIR:Articoli su riviste ISI )
DNA TRANSPOSONS; MEDFLY GENOME; CHROMOSOMAL LOCALIZATION; GENOME PLASTICITY
http://www.springerlink.com/content/3r0pmj067d4gqlwf/
8
info:eu-repo/semantics/article
262
Torti, Cristina; Gomulski, Ludvik; Moralli, Daniela; Raimondi, ELENA MARIA; Robertson, H. M.; Capy, P.; Gasperi, Giuliano; Malacrida, ANNA RODOLFA...espandi
1 Contributo su Rivista::1.1 Articolo in rivista
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11571/4770
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