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Novel microsatellite markers for Dalechampia scandens ( E uphorbiaceae) and closely related taxa: application to studying a species complex
Author(s) -
FalahatiAnbaran Mohsen,
Stenøien Hans K.,
Bolstad Geir H.,
Hansen Thomas F.,
PérezBarrales Rocío,
Armbruster W Scott,
Pélabon Christophe
Publication year - 2017
Publication title -
plant species biology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.419
H-Index - 36
eISSN - 1442-1984
pISSN - 0913-557X
DOI - 10.1111/1442-1984.12142
Subject(s) - biology , microsatellite , locus (genetics) , allele , loss of heterozygosity , genetics , evolutionary biology , genetic marker , species complex , zoology , phylogenetic tree , gene
We developed novel microsatellite markers for D alechampia scandens L . ( E uphorbiaceae). The target plants belong to a distinct, but undescribed, species in the D . scandens species complex, characterized by small resin‐producing glands. In total, 110 alleles over 36 novel markers were identified across 39 individuals from three populations. The number of alleles varied from one to seven, with an average of 3.06 ± 0.26 alleles per locus. The developed markers, along with previously developed ones for a large‐glanded D . scandens species, were tested for amplification in 11 additional species of the genus D alechampia . Four markers did not produce any detectable allele in 37 individuals from two populations of the large‐glanded species. Average expected heterozygosity across all small‐ and large‐glanded specific loci was 0.36 and 0.15, for the small and large glanded populations, respectively. Cross‐species amplification showed that 89% of all markers were successfully amplified in at least one of the 11 other D alechampia species. These microsatellite markers may be useful for detecting undescribed species in the D . scandens species complex, and can be used for comparative analyses of genetic structure, mating system and phylogeography of other D alechampia species.

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