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  4. Fingerprinting, structure, and genetic relationships among selected accessions of blue honeysuckle (Lonicera caerulea L.) from European collections
 
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Fingerprinting, structure, and genetic relationships among selected accessions of blue honeysuckle (Lonicera caerulea L.) from European collections

Type
Journal article
Language
English
Date issued
2022
Author
Smolik, Miłosz
Ochmian, Ireneusz
Bobrowska-Chwat, Aleksandra
Chwat, Gerard
Arus, Liina
Banaszczak, Piotr
Bocianowski, Jan 
Milczarski, Paweł
Ostrowska, Krystyna
Faculty
Wydział Rolnictwa, Ogrodnictwa i Bioinżynierii
PBN discipline
agriculture and horticulture
Journal
Biotechnology Reports
ISSN
2215-017X
DOI
10.1016/j.btre.2022.e00721
Web address
https://www.sciencedirect.com/science/article/pii/S2215017X22000212
Volume
34
Number
June 2022
Pages from-to
e00721
Abstract (EN)
Due to its value and economic importance, the genome of Lonicera caerulea L. has been widely studied in various fields of science. In this study the genetic structure and relationships between 24 accessions of L. caerulea of different origins were assessed. A total of 692, 814, and 258 loci were amplified using 43 RAPD (random amplified polymorphic DNA), 40 ISSR (intersimple sequence repeat), and 20 R-ISSR (RAPD+ISSR) primers, respectively. Among the amplified loci, 66–78% were polymorphic and 12–20% were private. Selected R-ISSR sequences were detected in Lonicera japonica transcripts. Cluster and STRUCTURE analyses performed for each of the techniques revealed the existing differences and unknown similarities between the genotypes. The r-factor values calculated in the Mantel test indicated highly significant positive correlations between the Nei distance matrices, similar to the FST values (FST_RAPD = 0.223, FST_ISSR = 0.279, FST_R-ISSR = 0.363) determined in the analysis of molecular variance. It was found that 78%, 72%, and 64% of the genetic variations were related to the differences observed within the populations, which suggest that the variations are mainly reflected in the differences among the genotypes. The principal coordinate analysis showed greater differences between the mean distances of the Lonicera genotype pair and the actual distances of the same pairs on the Nei matrix compared to multidimensional scaling. These differences were 45%, 56%, and 42% higher for RAPD, ISSR and R-ISSR, respectively.
Keywords (EN)
  • Lonicera

  • R-ISSR

  • New molecular markers

  • STRUCTURE

  • MDS

  • PCoA

License
cc-bycc-by CC-BY - Attribution
Open access date
March 23, 2022
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