Species conservation profiles of a random sample of world spiders III: Oecobiidae to Salticidae

Sini Seppälä, Sérgio Henriques, Michael Draney, Stefan Foord, Alastair Gibbons, Luz Gomez, Sarah Kariko, Jagoba Malumbres-olarte, Marc Milne, Cor Vink, Pedro Cardoso

    7 Citations (Scopus)
    20 Downloads (Pure)

    Abstract

    Background The IUCN Red List of Threatened Species is the most widely used information source on the extinction risk of species. One of the uses of the Red List is to evaluate and monitor the state of biodiversity and a possible approach for this purpose is the Red List Index (RLI). For many taxa, mainly hyperdiverse groups, it is not possible within available resources to assess all known species. In such cases, a random sample of species might be selected for assessment and the results derived from it extrapolated for the entire group - the Sampled Red List Index (SRLI). The current contribution is the third in four papers that will constitute the baseline of a future spider SRLI encompassing 200 species distributed across the world. New information A sample of 200 species of spiders were randomly selected from the World Spider Catalogue, an updated global database containing all recognized species names for the group. The 200 selected species where divided taxonomically at the family level, and the familes were ordered alphabetically. In this publication, we present the conservation profiles of 58 species belonging to the famillies alphabetically arranged between Oecobiidae and Salticidae, which encompassed Oecobiidae, Oonopidae, Orsolobidae, Oxyopidae, Palpimanidae, Philodromidae, Pholcidae, Pisauridae, Prodidomidae and Salticidae.

    Original languageEnglish
    Article numbere27004
    JournalBiodiversity Data Journal
    Volume6
    Number of pages262
    ISSN1314-2836
    DOIs
    Publication statusPublished - 2018

    Fingerprint

    Dive into the research topics of 'Species conservation profiles of a random sample of world spiders III: Oecobiidae to Salticidae'. Together they form a unique fingerprint.

    Cite this