Hjem
Agnes Weiners bilde

Agnes Weiner

Gjesteforsker
  • E-postagnes.weiner@uib.no
  • Besøksadresse
    Allégaten 70
    5007 Bergen
  • Postadresse
    Postboks 7803
    5020 Bergen
Vitenskapelig artikkel
  • Vis forfatter(e) (2024). The global genetic diversity of planktonic foraminifera reveals the structure of cryptic speciation in plankton. Biological Reviews.
  • Vis forfatter(e) (2024). Testate amoebae (Arcellinida, Amoebozoa) community diversity in New England bogs and fens assessed through lineage-specific amplicon sequencing. European Journal of Protistology.
  • Vis forfatter(e) (2023). The development of ocean currents and the response of the cryosphere on the Southwest Svalbard shelf over the Holocene. Global and Planetary Change.
  • Vis forfatter(e) (2023). Single-cell transcriptomics supports presence of cryptic species and reveals low levels of population genetic diversity in two testate amoebae morphospecies with large population sizes. Evolution. 2472-2483.
  • Vis forfatter(e) (2023). Sedimentary ancient DNA: a new paleogenomic tool for reconstructing the history of marine ecosystems. Frontiers in Marine Science. 12 sider.
  • Vis forfatter(e) (2022). Taxon-rich transcriptomics supports higher-level phylogeny and major evolutionary trends in Foraminifera. Molecular Phylogenetics and Evolution. 6 sider.
  • Vis forfatter(e) (2022). Reproduction dynamics of planktonic microbial eukaryotes in the open ocean. Journal of the Royal Society Interface.
  • Vis forfatter(e) (2022). Foraminifera as a model of the extensive variability in genome dynamics among eukaryotes. Bioessays.
  • Vis forfatter(e) (2022). Examining the Relationship Between the Testate Amoeba Hyalosphenia papilio (Arcellinida, Amoebozoa) and its Associated Intracellular Microalgae Using Molecular and Microscopic Methods. Protist.
Rapport
  • Vis forfatter(e) (2022). Arctic Paleoceanography Cruise KH21-234 with R/V Kronprins Haakon. .
Vitenskapelig foredrag
  • Vis forfatter(e) (2024). Tracing changes in past biodiversity in the Arctic using ancient DNA.
  • Vis forfatter(e) (2023). Tracing changes in past marine biodiversity using sedimentary ancient DNA .
  • Vis forfatter(e) (2023). Tracing changes in past marine biodiversity using sedimentary ancient DNA.
  • Vis forfatter(e) (2023). Tracing changes in past fjord biodiversity using sedimentary ancient DNA .
  • Vis forfatter(e) (2023). Assessing the impact of past environmental changes on marine protist biodiversity using sedimentary ancient DNA.
  • Vis forfatter(e) (2023). Assessing the impact of past environmental changes on Arctic biodiversity using sedimentary ancient DNA .
  • Vis forfatter(e) (2022). Using sedimentary ancient DNA to reconstruct the impact of Holocene environmental change on Arctic ecosystems.
  • Vis forfatter(e) (2022). Using ancient DNA sequencing to assess the impact of past environmental changes on marine protist biodiversity.
  • Vis forfatter(e) (2022). Towards Late Quaternary sea ice reconstructions in the Arctic with sedimentary ancient DNA.
  • Vis forfatter(e) (2022). Exploring past marine biodiversity using sedimentary ancient DNA.
Poster
  • Vis forfatter(e) (2023). Using sedimentary ancient DNA to reconstruct the impact of Holocene environmental change on Arctic ecosystems.
  • Vis forfatter(e) (2023). Reconstructing the Holocene marine ecosystem north of Svalbard using sedimentary ancient DNA.
  • Vis forfatter(e) (2022). Using sedimentary ancient DNA to reconstruct the impact of Holocene environmental change on Arctic ecosystems.
  • Vis forfatter(e) (2022). Using ancient DNA sequencing to assess the impact of past environmental changes on protist biodiversity in the Arctic.
  • Vis forfatter(e) (2022). Towards Quaternary Arctic sea ice reconstructions with sedimentary ancient DNA: building a modern database for calibrating new DNA-based proxies.

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