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izvor podataka: crosbi

The impact of the Tekay chromoviral elements on genome organisation and evolution of Anemone s.l. (Ranunculaceae) (CROSBI ID 221666)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Mlinarec, Jelena ; Franjević, Damjan ; Harapin, Jan ; Besendorfer, Višnja The impact of the Tekay chromoviral elements on genome organisation and evolution of Anemone s.l. (Ranunculaceae) // Plant biology, 18 (2016), 2; 332-347. doi: 10.1111/plb.12393

Podaci o odgovornosti

Mlinarec, Jelena ; Franjević, Damjan ; Harapin, Jan ; Besendorfer, Višnja

engleski

The impact of the Tekay chromoviral elements on genome organisation and evolution of Anemone s.l. (Ranunculaceae)

We studied the highly abundant chromoviral Tekay clade in species from three sister genera – Anemone, Pulsatilla and Hepatica (Ranunculaceae). With this clade, we performed a concomitant survey of its phylogenetic diversity, chromosomal organisation and transcriptional activity in Anemone s.l. in order to investigate dynamics of the Tekay elements at a finer scale than previously achieved in this or any other flowering clade. The phylogenetic tree built from Tekay sequences conformed to expected evolutionary relationships of the species ; exceptions being A. nemorosa and A. sylvestris, which appeared more closely related that expected, and we invoke hybridisation events to explain the observed topology. The separation of elements into six clusters could be explained by episodic bursts of activity since divergence from a common ancestor at different points in their respective evolutionary histories. In Anemone s.l. the Tekay elements do not have a preferential position on chromosomes, i.e. they can have a: (i) centromeric/pericentromeric position ; (ii) interstitial position in DAPIpositive AT-rich heterochromatic regions ; can be (iii) dispersed throughout chromosomes ; or even (iv) be absent from large heterochromatic blocks. Widespread transcriptional activity of the Tekay elements in Anemone s.l. taxa indicate that some copies of Tekay elements could still be active in this plant group, contributing to genome evolution and speciation within Anemone s.l. Identification of Tekay elements in Anemone s.l. provides valuable information for understanding how different localisation patterns might help to facilitate plant genome organisation in a structural and functional manner.

Anemone ; chromoviruses ; fluorescence in situ hybridisation ; polyploids ; Pulsatilla ; retrotransposons

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Podaci o izdanju

18 (2)

2016.

332-347

objavljeno

1435-8603

10.1111/plb.12393

Povezanost rada

Biologija

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