Literature DB >> 30858594

Essential biodiversity variables for mapping and monitoring species populations.

Walter Jetz1, Melodie A McGeoch2, Robert Guralnick3, Simon Ferrier4, Jan Beck5, Mark J Costello6, Miguel Fernandez7,8,9, Gary N Geller10, Petr Keil11, Cory Merow12, Carsten Meyer11,13, Frank E Muller-Karger14, Henrique M Pereira11,15,16, Eugenie C Regan17, Dirk S Schmeller18,19, Eren Turak20,21.   

Abstract

Species distributions and abundances are undergoing rapid changes worldwide. This highlights the significance of reliable, integrated information for guiding and assessing actions and policies aimed at managing and sustaining the many functions and benefits of species. Here we synthesize the types of data and approaches that are required to achieve such an integration and conceptualize 'essential biodiversity variables' (EBVs) for a unified global capture of species populations in space and time. The inherent heterogeneity and sparseness of raw biodiversity data are overcome by the use of models and remotely sensed covariates to inform predictions that are contiguous in space and time and global in extent. We define the species population EBVs as a space-time-species-gram (cube) that simultaneously addresses the distribution or abundance of multiple species, with its resolution adjusted to represent available evidence and acceptable levels of uncertainty. This essential information enables the monitoring of single or aggregate spatial or taxonomic units at scales relevant to research and decision-making. When combined with ancillary environmental or species data, this fundamental species population information directly underpins a range of biodiversity and ecosystem function indicators. The unified concept we present links disparate data to downstream uses and informs a vision for species population monitoring in which data collection is closely integrated with models and infrastructure to support effective biodiversity assessment.

Mesh:

Year:  2019        PMID: 30858594     DOI: 10.1038/s41559-019-0826-1

Source DB:  PubMed          Journal:  Nat Ecol Evol        ISSN: 2397-334X            Impact factor:   15.460


  26 in total

1.  Complex long-term biodiversity change among invertebrates, bryophytes and lichens.

Authors:  Charlotte L Outhwaite; Richard D Gregory; Richard E Chandler; Ben Collen; Nick J B Isaac
Journal:  Nat Ecol Evol       Date:  2020-02-17       Impact factor: 15.460

2.  Recommendations for connecting molecular sequence and biodiversity research infrastructures through ELIXIR.

Authors:  Robert M Waterhouse; Anne-Françoise Adam-Blondon; Donat Agosti; Petr Baldrian; Bachir Balech; Erwan Corre; Robert P Davey; Henrik Lantz; Graziano Pesole; Christian Quast; Frank Oliver Glöckner; Niels Raes; Anna Sandionigi; Monica Santamaria; Wouter Addink; Jiri Vohradsky; Amandine Nunes-Jorge; Nils Peder Willassen; Jerry Lanfear
Journal:  F1000Res       Date:  2021-12-03

3.  A functional perspective on the analysis of land use and land cover data in ecology.

Authors:  Federico Riva; Scott E Nielsen
Journal:  Ambio       Date:  2020-12-01       Impact factor: 5.129

4.  Metabarcoding Malaise traps and soil eDNA reveals seasonal and local arthropod diversity shifts.

Authors:  Ameli Kirse; Sarah J Bourlat; Kathrin Langen; Vera G Fonseca
Journal:  Sci Rep       Date:  2021-05-18       Impact factor: 4.996

Review 5.  Integrating remote sensing with ecology and evolution to advance biodiversity conservation.

Authors:  Jeannine Cavender-Bares; Fabian D Schneider; Maria João Santos; Amanda Armstrong; Ana Carnaval; Kyla M Dahlin; Lola Fatoyinbo; George C Hurtt; David Schimel; Philip A Townsend; Susan L Ustin; Zhihui Wang; Adam M Wilson
Journal:  Nat Ecol Evol       Date:  2022-03-24       Impact factor: 15.460

6.  Areas of global importance for conserving terrestrial biodiversity, carbon and water.

Authors:  Martin Jung; Andy Arnell; Xavier de Lamo; Shaenandhoa García-Rangel; Matthew Lewis; Jennifer Mark; Cory Merow; Lera Miles; Ian Ondo; Samuel Pironon; Corinna Ravilious; Malin Rivers; Dmitry Schepaschenko; Oliver Tallowin; Arnout van Soesbergen; Rafaël Govaerts; Bradley L Boyle; Brian J Enquist; Xiao Feng; Rachael Gallagher; Brian Maitner; Shai Meiri; Mark Mulligan; Gali Ofer; Uri Roll; Jeffrey O Hanson; Walter Jetz; Moreno Di Marco; Jennifer McGowan; D Scott Rinnan; Jeffrey D Sachs; Myroslava Lesiv; Vanessa M Adams; Samuel C Andrew; Joseph R Burger; Lee Hannah; Pablo A Marquet; James K McCarthy; Naia Morueta-Holme; Erica A Newman; Daniel S Park; Patrick R Roehrdanz; Jens-Christian Svenning; Cyrille Violle; Jan J Wieringa; Graham Wynne; Steffen Fritz; Bernardo B N Strassburg; Michael Obersteiner; Valerie Kapos; Neil Burgess; Guido Schmidt-Traub; Piero Visconti
Journal:  Nat Ecol Evol       Date:  2021-08-23       Impact factor: 15.460

7.  Landscape analyses using eDNA metabarcoding and Earth observation predict community biodiversity in California.

Authors:  Meixi Lin; Ariel Levi Simons; Ryan J Harrigan; Emily E Curd; Fabian D Schneider; Dannise V Ruiz-Ramos; Zack Gold; Melisa G Osborne; Sabrina Shirazi; Teia M Schweizer; Tiara N Moore; Emma A Fox; Rachel Turba; Ana E Garcia-Vedrenne; Sarah K Helman; Kelsi Rutledge; Maura Palacios Mejia; Onny Marwayana; Miroslava N Munguia Ramos; Regina Wetzer; N Dean Pentcheff; Emily Jane McTavish; Michael N Dawson; Beth Shapiro; Robert K Wayne; Rachel S Meyer
Journal:  Ecol Appl       Date:  2021-07-08       Impact factor: 6.105

8.  Environmental DNA allows upscaling spatial patterns of biodiversity in freshwater ecosystems.

Authors:  Luca Carraro; Elvira Mächler; Remo Wüthrich; Florian Altermatt
Journal:  Nat Commun       Date:  2020-07-17       Impact factor: 14.919

9.  Endemism patterns are scale dependent.

Authors:  Barnabas H Daru; Harith Farooq; Alexandre Antonelli; Søren Faurby
Journal:  Nat Commun       Date:  2020-04-30       Impact factor: 14.919

10.  Deep-sea biodiversity at the extremes of the Salas y Gómez and Nazca ridges with implications for conservation.

Authors:  Alan M Friedlander; Whitney Goodell; Jonatha Giddens; Erin E Easton; Daniel Wagner
Journal:  PLoS One       Date:  2021-06-30       Impact factor: 3.240

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