A set of SSR markers to characterize genetic diversity in all Viburnum species
About 160 species are classified within the Viburnum genus and many of these are cultivated for horticultural purposes. The vast dispersal of Viburnum makes the genus a useful model for studying evolutionary history and inferring how species expanded into their current distributions. Simple sequence...
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Veröffentlicht in: | Scientific reports 2023-04, Vol.13 (1), p.5343-5343, Article 5343 |
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Zusammenfassung: | About 160 species are classified within the
Viburnum
genus and many of these are cultivated for horticultural purposes. The vast dispersal of
Viburnum
makes the genus a useful model for studying evolutionary history and inferring how species expanded into their current distributions. Simple sequence repeat (SSR) markers were previously developed for five
Viburnum
species that were classified within the four major clades (
Laminotinus
,
Crenotinus
,
Valvatotinus
, and
Porphyrotinus
). The ability of some of these markers to cross-amplify in
Viburnum
species has been scantly evaluated, but there has not been any genus-wide assessment for the markers. We evaluated a collection of 49 SSR markers for the ability to cross-amplify in 224 samples, including 46
Viburnum
species, representing all 16 subclades, and five additional species in the Viburnaceae and Caprifoliaceae. A subset of 14 potentially comprehensive markers for
Viburnum
species was identified and evaluated for the ability to detect polymorphisms in species outside of their respective clades. The 49 markers had overall amplification success in 52% of the samples, including a 60% success rate within the
Viburnum
genus and 14% in other genera. The comprehensive marker set amplified alleles in 74% of all samples tested, including 85% of
Viburnum
samples and 19% of outgroup samples. To the best of our knowledge, this is the first comprehensive set of markers able to characterize species across an entire genus. This set of markers can be used to assess the genetic diversity and population structure of most
Viburnum
species and closely allied species. |
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ISSN: | 2045-2322 2045-2322 |
DOI: | 10.1038/s41598-023-31878-0 |