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A standard protocol to report discrete stage-structured demographic information

Gascoigne SJL; Rolph S; Sankey D; Nidadavolu N; Picman AS; Hernandez CM; Philpott MER; Salam A; Bernard C; Fenollosa E; Lee YJ; McLean J; Perera SHA; Spacey OG; Kajin M; Vinton AC; Archer CR; Burns JH; Buss DL; Caswell H; Che-Castaldo JP; Childs DZ; Capdevila P; Compagnoni A; Crone E; Ezard THG; Hodgson D; Knight TM; Jones OR; Jongejans E; McDonald J; Tenhumberg B; Thomas CC; Tyre AJ; Ramula S; Stott I; Tremblay RL; Wilson P; Vaupel JW; Salguero-Gomez R

A standard protocol to report discrete stage-structured demographic information

Gascoigne SJL
Rolph S
Sankey D
Nidadavolu N
Picman AS
Hernandez CM
Philpott MER
Salam A
Bernard C
Fenollosa E
Lee YJ
McLean J
Perera SHA
Spacey OG
Kajin M
Vinton AC
Archer CR
Burns JH
Buss DL
Caswell H
Che-Castaldo JP
Childs DZ
Capdevila P
Compagnoni A
Crone E
Ezard THG
Hodgson D
Knight TM
Jones OR
Jongejans E
McDonald J
Tenhumberg B
Thomas CC
Tyre AJ
Ramula S
Stott I
Tremblay RL
Wilson P
Vaupel JW
Salguero-Gomez R
Katso/Avaa
Methods Ecol Evol - 2023 - Gascoigne.pdf (2.751Mb)
Lataukset: 

WILEY
doi:10.1111/2041-210X.14164
URI
https://doi.org/10.1111/2041-210X.14164
Näytä kaikki kuvailutiedot
Julkaisun pysyvä osoite on:
https://urn.fi/URN:NBN:fi-fe2025082787782
Tiivistelmä

1. Stage-based demographic methods, such as matrix population models (MPMs), are powerful tools used to address a broad range of fundamental questions in ecology, evolutionary biology and conservation science. Accordingly, MPMs now exist for over 3000 species worldwide. These data are being digitised as an ongoing process and periodically released into two large open-access online repositories: the COMPADRE Plant Matrix Database and the COMADRE Animal Matrix Database. During the last decade, data archiving and curation of COMPADRE and COMADRE, and subsequent comparative research, have revealed pronounced variation in how MPMs are parameterized and reported.

2. Here, we summarise current issues related to the parameterisation and reporting of MPMs that arise most frequently and outline how they affect MPM construction, analysis, and interpretation. To quantify variation in how MPMs are reported, we present results from a survey identifying key aspects of MPMs that are frequently unreported in manuscripts. We then screen COMPADRE and COMADRE to quantify how often key pieces of information are omitted from manuscripts using MPMs.

3. Over 80% of surveyed researchers (n = 60) state a clear benefit to adopting more standardised methodologies for reporting MPMs. Furthermore, over 85% of the 300 MPMs assessed from COMPADRE and COMADRE omitted one or more elements that are key to their accurate interpretation. Based on these insights, we identify fundamental issues that can arise from MPM construction and communication and provide suggestions to improve clarity, reproducibility and future research utilising MPMs and their required metadata. To fortify reproducibility and empower researchers to take full advantage of their demographic data, we introduce a standardised protocol to present MPMs in publications. This standard is linked to , so that authors wishing to archive their MPMs can do so prior to submission of publications, following examples from other open-access repositories such as DRYAD, Figshare and Zenodo.

4. Combining and standardising MPMs parameterized from populations around the globe and across the tree of life opens up powerful research opportunities in evolutionary biology, ecology and conservation research. However, this potential can only be fully realised by adopting standardised methods to ensure reproducibility.

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