Publikationer
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Environmental DNA as an emerging tool in botanical research.
(2023). American Journal of Botany, . vol. 110 DOI -
Norway spruce postglacial recolonization of Fennoscandia.
(2022). Nature Communications, . vol. 13 DOI -
Lake Sedimentary DNA Research on Past Terrestrial and Aquatic Biodiversity: Overview and Recommendations.
(2021). Quaternary, . vol. 4 DOI -
Environmental DNA: For Biodiversity Research and Monitoring.
(2020). The Holocene, . vol. 30, ss. 197-198 DOI -
Quaternary DNA: A Multidisciplinary Research Field.
(2019). Quaternary, vol. 2 DOI -
Shotgun Environmental DNA, Pollen, and Macrofossil Analysis of Lateglacial Lake Sediments From Southern Sweden.
(2019). Frontiers in Ecology and Evolution, . vol. 7 DOI -
Phylogeography and population genetics of Acanthophyllum squarrosum complex (Caryophyllaceae) in the Irano-Turanian region.
(2019). Systematics and Biodiversity, . vol. 17, ss. 412-421 DOI -
Archaeal community changes in Lateglacial lake sediments: Evidence from ancient DNA.
(2018). Quaternary Science Reviews, . vol. 181, ss. 19-29 DOI -
Improved recovery of ancient DNA from subfossil wood - application to the world's oldest Late Glacial pine forest.
(2018). New Phytologist, vol. 217, ss. 1737-1748 DOI -
Impact of climate change implies the northward shift in distribution of the Irano-Turanian subalpine species complex Acanthophyllum squarrosum.
(2018). Journal of Asia-Pacific Biodiversity, vol. 11, ss. 566-572 DOI -
Reconstructing past vegetation communities using ancient DNA from lake sediments.
(2018). I Lindqvist C, Rajora OP (red.) Paleogenomics, . ss. 163-187 DOI -
The real significance of ancient DNA.
(2017). American Journal of Botany, vol. 104, ss. 800-802 DOI -
Ancient plant DNA in lake sediments.
(2017). New Phytologist, vol. 214, ss. 924-942 DOI -
Genetic diversity and divergence at the Arbutus unedo L. (Ericaceae) westernmost distribution limit.
(2017). PLOS ONE, vol. 12 DOI -
A short phylogenetically informative cpDNA fragment for the identification of Pinus species.
(2016). Biochemical Systematics and Ecology, vol. 66, ss. 166-172 DOI -
Gran och tall kan ha överlevt i Skandinavien under istiden.
(2016). Svensk Botanisk Tidskrift, vol. 110 -
The extent and meaning of hybridization and introgression between Siberian spruce (Picea obovata) and Norway spruce (Picea abies): cryptic refugia as stepping stones to the west?.
(2016). Molecular Ecology, vol. 25, ss. 2773-2789 DOI -
Genetic insights into the hybrid origin of Abies x borisii-regis Mattf..
(2015). Plant Systematics and Evolution, vol. 301, ss. 749-759 DOI -
Proxy comparison in ancient peat sediments: pollen, macrofossil and plant DNA.
(2015). Philosophical Transactions of the Royal Society of London. Biological Sciences, vol. 370, ss. 20130382- DOI -
Patterns of nucleotide diversity at photoperiod related genes in the conifer Norway spruce [Picea abies (L.) (Karst)].
(2014). PLOS ONE, vol. 9, ss. e95306- DOI -
Molecular- and pollen-based vegetation analysis in lake sediments from central Scandinavia.
(2013). Molecular Ecology, vol. 22, ss. 3511-3524 DOI -
Response to Comment on "Glacial Survival of Boreal Trees in Northern Scandinavia".
(2012). Science, vol. 338, ss. 742- DOI -
Glacial Survival of Boreal Trees in Northern Scandinavia.
(2012). Science, vol. 335, ss. 1083-1086 DOI -
Population dynamics and genetic changes of Picea abies in the South Carpathians revealed by pollen and ancient DNA analyses.
(2011). BMC Evolutionary Biology, vol. 11, ss. 66- DOI -
Ancient DNA studies in plant populations.
(2010). I Dorado, G. (red.) Molecular markers, PCR, bioinformatics and ancient DNA-technology, troubleshooting and applications Cordoba: Cordoba University. -
Single-pollen genotyping of Holocene lake sediments.
(2010). I Isagi, Y. & Suyama, Y. (red.) Single-pollen genotyping . -
Impacts of climate change on species, populations and communities: palaeobiogeographical insights and frontiers.
(2008). Progress in physical geography, vol. 32, ss. 139-172 DOI -
Analysis of short DNA fragments from Holocene peatmoss samples.
(2008). The Holocene, vol. 18, ss. 1003-1006 DOI -
DNA from pollen: principles and potential.
(2006). The Holocene, vol. 16, ss. 1031-1034 DOI -
Ancient plant DNA: review and prospects.
(2005). New Phytologist, vol. 166, ss. 409-418 DOI -
Ancient DNA from pollen: a genetic record of population history in Scots pine.
(2005). Molecular Ecology, vol. 14, ss. 2873-2882 DOI -
Ancient DNA research.
(2004). Bioscience-explained -
Species identification in seven small millet species using polymerase chain reaction-restriction fragment length polymorphism of trn S-psb C gene region.
(2001). Genome, vol. 44, ss. 495-499 -
Taxonomic position and origin of the endemic Sicilian fir Abies nebrodensis (Lojac.) Mattei based on allozyme analysis.
(2001). Forest Genetics, vol. 8, ss. 119-127 -
Genetic variation at chloroplast microsatellites (cpSSRs) in Abies nebrodensis (Lojac.) Mattei and three neighboring Abies species.
(2001). Theor Appl Genet, vol. 102, ss. 733-740 -
PCR-RFLP analysis of cpDNA in the genus Abies.
(1999). Theor Appl Genet, vol. 98, ss. 802-808 -
Genetic variation of Abies alba in Italy.
(1996). Hereditas, vol. 125, ss. 11-18 -
Testing plant metabarcoding on a temperate lake core from southern Italy covering thirty-one-thousand-years.
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Shotgun metagenomic and metabarcoding analysis of degraded plant DNA from ancient lakes in southern Sweden.