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        <parTitl xml:lang="en">Kungsängen soil microbial communities</parTitl>
        <IDNo agency="SND">gbif-sweden-10-15468-upxbwy-0</IDNo>
        <IDNo agency="DOI">https://doi.org/10.15468/UPXBWY</IDNo>
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        <producer xml:lang="en" abbr="SND">Swedish National Data Service</producer>
        <producer xml:lang="sv" abbr="SND">Svensk nationell datatjänst</producer>
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      <holdings URI="https://doi.org/10.15468/UPXBWY">Landing page</holdings>
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    <citation>
      <titlStmt>
        <titl xml:lang="sv"></titl>
        <parTitl xml:lang="en">Kungsängen soil microbial communities</parTitl>
        <IDNo agency="SND">gbif-sweden-10-15468-upxbwy-0</IDNo>
        <IDNo agency="DOI">https://doi.org/10.15468/UPXBWY</IDNo>
      </titlStmt>
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        <AuthEnty xml:lang="en" affiliation="Department of Ecology and Genetics, Uppsala University">Anna Rosling</AuthEnty>
        <AuthEnty xml:lang="en" affiliation="Department of Ecology and Genetics, Uppsala University">Shadi Eshghi Sahraei</AuthEnty>
        <AuthEnty xml:lang="en" affiliation="Department of Ecology and Genetics, Uppsala University">Brendan Furneaux</AuthEnty>
        <AuthEnty xml:lang="en" affiliation="Department of Ecology and Genetics, Uppsala University">Kerri Kluting</AuthEnty>
        <AuthEnty xml:lang="en" affiliation="Department of Ecology and Genetics, Uppsala University">Mustafa Zakieh</AuthEnty>
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        <distrbtr xml:lang="en" abbr="SND" URI="https://snd.se">Swedish National Data Service</distrbtr>
        <distrbtr xml:lang="sv" abbr="SND" URI="https://snd.se">Svensk nationell datatjänst</distrbtr>
        <distDate xml:lang="en" date="2022-09-06" />
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        <version elementVersion="0" elementVersionDate="2022-09-06" />
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      <holdings URI="https://doi.org/10.15468/UPXBWY">Landing page</holdings>
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      <abstract xml:lang="en" contentType="abstract">Since Linnaeus's time, the Kungsängen Nature Reserve has drawn frequent visitors because of its vegetation including the largest population of Fritillaria meleagris L. in Sweden. The reserve is a meadow with an abrupt moisture transition, where the wetter part has a Carex acuta dominated plant community with low species richness, visually distinct from the drier part, which has a species rich plant community including a high density of Fritillaria meleagris. To investigate the link between plant and below-ground micro-eukaryotic communities, we amplified and sequenced the ITS and LSU regions of the rDNA operon (1500 bp) from soil using PacBio SMRT sequencing, and evaluated three different methods for generation of operational taxonomic units. We found distinct communities associated with wet and mesic-dry soil conditions but estimated richness was not so different. Both soil conditions host communities dominated by protists, a large fraction of which were taxonomically assigned to Ciliphora (Alveolata), while 30-40% of all reads were assigned to kingdom Fungi. Ecological patterns were consistently recovered irrespective of the read clustering method used. However, different clustering methods affect the taxonomic and phylogenetic resolution of community characterization with implications for how well members of the micro-eukaryotic communities can be recognized in the data.
This data resource contain amplicon sequence variant (ASV) sequences generated with DADA2 using the Ampliseq pipeline (https://nf-co.re/ampliseq).

This dataset was published via the SBDI ASV portal (https://asv-portal.biodiversitydata.se/).</abstract>
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        <restrctn xml:lang="en">Access to data through an external actor. </restrctn>
        <restrctn xml:lang="sv">Åtkomst till data via extern aktör. </restrctn>
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