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izvor podataka: crosbi

Dispersion Profiles and Gene Associations of Repetitive DNAs in the Euchromatin of the Beetle Tribolium castaneum (CROSBI ID 260435)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Brajković, Josip ; Pezer, Željka ; Bruvo-Mađarić, Branka ; Feliciello, Isidoro ; Ugarković, Đurđica Dispersion Profiles and Gene Associations of Repetitive DNAs in the Euchromatin of the Beetle Tribolium castaneum // G3-Genes genomes genetics, 8 (2018), 2; 875-886. doi: 10.1534/g3.117.300267

Podaci o odgovornosti

Brajković, Josip ; Pezer, Željka ; Bruvo-Mađarić, Branka ; Feliciello, Isidoro ; Ugarković, Đurđica

engleski

Dispersion Profiles and Gene Associations of Repetitive DNAs in the Euchromatin of the Beetle Tribolium castaneum

Satellite DNAs are tandemly repeated sequences clustered within heterochromatin. However, in some cases such as the major TCAST1 satellite DNA from the beetle Tribolium castaneum, they are found partially dispersed within euchromatin. Such organization together with transcriptional activity enables TCAST1 to modulate the activity of neighbouring genes. In order to explore if other T. castaneum repetitive families have features which could provide them with a possible gene-modulatory role we compare here the structure, organization, dispersion profiles and transcription activity of ten distinct TCAST repetitive families including TCAST1. The genome organization of TCAST families exhibit either satellite-like or transposon-like characteristics. In addition to heterochromatin localization, bioinformatics search of assembled genome reveals dispersion of all families within euchromatin, preferentially in the form of single repeats. Dispersed TCAST repeats are mutually correlated in distribution and are grouped in distinct regions of euchromatin. The repeats are associated with genes and are enriched in introns relative to intergenic regions and very rarely overlap exons. In spite of the different mechanisms of repeat proliferation such as transposition and homologous recombination, all TCAST families share a similar frequency of spreading as well as dispersion and gene association profiles. Additionally, TCAST families are transcribed and their transcription is significantly activated by heat stress. A possibility that such common features of TCAST families might be related to their potential gene-modulatory role is discussed.

satellite DNA ; repetitive DNA ; transcription ; gene regulation ; Tribolium castaneum

nije evidentirano

nije evidentirano

nije evidentirano

nije evidentirano

nije evidentirano

nije evidentirano

Podaci o izdanju

8 (2)

2018.

875-886

objavljeno

2160-1836

10.1534/g3.117.300267

Trošak objave rada u otvorenom pristupu

Povezanost rada

Biologija

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