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Two new miniature inverted-repeat transposable elements in the genome of the clam Donax trunculus (CROSBI ID 242596)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Šatović, Eva ; Plohl, Miroslav Two new miniature inverted-repeat transposable elements in the genome of the clam Donax trunculus // Genetica ('s-Gravenhage), 145 (2017), 4/5; 379-385. doi: 10.1007/s10709-017-9973-y

Podaci o odgovornosti

Šatović, Eva ; Plohl, Miroslav

engleski

Two new miniature inverted-repeat transposable elements in the genome of the clam Donax trunculus

Repetitive sequences are important components of eukaryotic genomes that drive their evolution. Among them are different types of mobile elements that share the ability to spread throughout the genome and form interspersed repeats. To broaden the generally scarce knowledge on bivalves at the genome level, in the clam Donax trunculus we described two new non-autonomous DNA transposons, miniature inverted-repeat transposable elements (MITEs), named DTC M1 and DTC M2. Like other MITEs, they are characterized by their small size, their A + T richness, and the presence of terminal inverted repeats (TIRs). DTC M1 and DTC M2 are 261 and 286 bp long, respectively, and in addition to TIRs, both of them contain a long imperfect palindrome sequence in their central parts. These elements are present in complete and truncated versions within the genome of the clam D. trunculus. The two new MITEs share only structural similarity, but lack any nucleotide sequence similarity to each other. In a search for related elements in databases, blast search revealed within the Crassostrea gigas genome a larger element sharing sequence similarity only to DTC M1 in its TIR sequences. The lack of sequence similarity with any previously published mobile elements indicates that DTC M1 and DTC M2 elements may be unique to D. trunculus.

Genome evolution, Transposable elements, MITE, Bivalve, Donax trunculus

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Podaci o izdanju

145 (4/5)

2017.

379-385

objavljeno

0016-6707

1573-6857

10.1007/s10709-017-9973-y

Povezanost rada

Biologija

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