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  5. Repeat dynamics across timescales: a perspective from sibling allotetraploid marsh orchids (Dactylorhiza majalis s.l.).

Repeat dynamics across timescales: a perspective from sibling allotetraploid marsh orchids (Dactylorhiza majalis s.l.).

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Resource type
Journal article
Creator (person)
Eriksson, Mimmi C.
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Mandáková, Terezie
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McCann, Jamie
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Temsch, Eva M.
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Chase, Mark W
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Hedrén, Mikael
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Weiss-Schneeweiss, Hanna
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Paun, Ovidiu
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Date published
July 29, 2022
Abstract
To provide insights into the fate of transposable elements (TEs) across timescales in a post-polyploidization context, we comparatively investigate five sibling Dactylorhiza allotetraploids (Orchidaceae) formed independently and sequentially between 500 and 100K generations ago by unidirectional hybridisation between diploids D. fuchsii and D. incarnata. Our results first reveal that the paternal D. incarnata genome shows a marked increased content of LTR retrotransposons compared to the maternal species, reflected in its larger genome size and consistent with a previously hypothesised bottleneck. With regard to the allopolyploids, in the youngest D. purpurella both genome size and TE composition appear to be largely additive with respect to parents, whereas for polyploids of intermediate ages we uncover rampant genome expansion on a magnitude of multiple entire genomes of some plants such as Arabidopsis. The oldest allopolyploids in the series are not larger than the intermediate ones. A putative tandem repeat, potentially derived from a non-autonomous miniature inverted-repeat TE (MITE) drives much of the genome dynamics across the allopolyploids. The highly dynamic MITE-like element is found in higher proportions in the maternal diploid, D. fuchsii, but is observed to increase in copy number in both subgenomes of the allopolyploids. Altogether, the fate of repeats appears strongly regulated and therefore predictable across multiple independent allopolyploidization events in this system. Apart from the MITE-like element, we consistently document a mild genomic shock following the allopolyploidizations investigated here, which may be linked to their relatively large genome sizes, possibly associated with strong selection against further genome expansions.
Contributor (person)
Wright, Stephen
Project(s)
Priority 2: Trait Diversity and Function
Funder
Funder nameAwards
Austrian Science Fund, Austria
Grant Y661-B16 29 - Doctoral programme (DK) grant W1225-B20
Journal title
Molecular Biology and Evolution
Volume
39
Issue
8
Article number
msac167
Publisher
Oxford University Press (OUP)
Place of publication
Oxford, UK
ISSN
0737-4038
eISSN
1537-1719
Date accepted
July 25, 2022
Official URL
https://doi.org/10.1093/molbev/msac167
Related URL
https://academic.oup.com/mbe/advance-article/doi/10.1093/molbev/msac167/6651906
Rights statement
In Copyright
Licence
https://creativecommons.org/licenses/by/4.0/
DOI
10.1093/molbev/msac167
Keywords
Allopolyploidy
Genomic shock
Dactylorhiza majalis
Transposable elements
Marsh orchids
Genome size
Additional information
IF = 16.24 (2021-2022)
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