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Wild insect diversity increases inter-annual stability in global crop pollinator communities
While an increasing number of studies indicate that the range, diversity and abundance of many wild pollinators has declined, the global area of pollinator-dependent crops has significantly increased over the last few decades. Crop pollination studies to date have mainly focused on either identifyin...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
The Royal Society
2021
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8059553/ https://www.ncbi.nlm.nih.gov/pubmed/33726596 http://dx.doi.org/10.1098/rspb.2021.0212 |
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author | Senapathi, Deepa Fründ, Jochen Albrecht, Matthias Garratt, Michael P. D. Kleijn, David Pickles, Brian J. Potts, Simon G. An, Jiandong Andersson, Georg K. S. Bänsch, Svenja Basu, Parthiba Benjamin, Faye Bezerra, Antonio Diego M. Bhattacharya, Ritam Biesmeijer, Jacobus C. Blaauw, Brett Blitzer, Eleanor J. Brittain, Claire A. Carvalheiro, Luísa G. Cariveau, Daniel P. Chakraborty, Pushan Chatterjee, Arnob Chatterjee, Soumik Cusser, Sarah Danforth, Bryan N. Degani, Erika Freitas, Breno M. Garibaldi, Lucas A. Geslin, Benoit de Groot, G. Arjen Harrison, Tina Howlett, Brad Isaacs, Rufus Jha, Shalene Klatt, Björn Kristian Krewenka, Kristin Leigh, Samuel Lindström, Sandra A. M. Mandelik, Yael McKerchar, Megan Park, Mia Pisanty, Gideon Rader, Romina Reemer, Menno Rundlöf, Maj Smith, Barbara Smith, Henrik G. Silva, Patrícia Nunes Steffan-Dewenter, Ingolf Tscharntke, Teja Webber, Sean Westbury, Duncan B. Westphal, Catrin Wickens, Jennifer B. Wickens, Victoria J. Winfree, Rachael Zhang, Hong Klein, Alexandra-Maria |
author_facet | Senapathi, Deepa Fründ, Jochen Albrecht, Matthias Garratt, Michael P. D. Kleijn, David Pickles, Brian J. Potts, Simon G. An, Jiandong Andersson, Georg K. S. Bänsch, Svenja Basu, Parthiba Benjamin, Faye Bezerra, Antonio Diego M. Bhattacharya, Ritam Biesmeijer, Jacobus C. Blaauw, Brett Blitzer, Eleanor J. Brittain, Claire A. Carvalheiro, Luísa G. Cariveau, Daniel P. Chakraborty, Pushan Chatterjee, Arnob Chatterjee, Soumik Cusser, Sarah Danforth, Bryan N. Degani, Erika Freitas, Breno M. Garibaldi, Lucas A. Geslin, Benoit de Groot, G. Arjen Harrison, Tina Howlett, Brad Isaacs, Rufus Jha, Shalene Klatt, Björn Kristian Krewenka, Kristin Leigh, Samuel Lindström, Sandra A. M. Mandelik, Yael McKerchar, Megan Park, Mia Pisanty, Gideon Rader, Romina Reemer, Menno Rundlöf, Maj Smith, Barbara Smith, Henrik G. Silva, Patrícia Nunes Steffan-Dewenter, Ingolf Tscharntke, Teja Webber, Sean Westbury, Duncan B. Westphal, Catrin Wickens, Jennifer B. Wickens, Victoria J. Winfree, Rachael Zhang, Hong Klein, Alexandra-Maria |
author_sort | Senapathi, Deepa |
collection | PubMed |
description | While an increasing number of studies indicate that the range, diversity and abundance of many wild pollinators has declined, the global area of pollinator-dependent crops has significantly increased over the last few decades. Crop pollination studies to date have mainly focused on either identifying different guilds pollinating various crops, or on factors driving spatial changes and turnover observed in these communities. The mechanisms driving temporal stability for ecosystem functioning and services, however, remain poorly understood. Our study quantifies temporal variability observed in crop pollinators in 21 different crops across multiple years at a global scale. Using data from 43 studies from six continents, we show that (i) higher pollinator diversity confers greater inter-annual stability in pollinator communities, (ii) temporal variation observed in pollinator abundance is primarily driven by the three-most dominant species, and (iii) crops in tropical regions demonstrate higher inter-annual variability in pollinator species richness than crops in temperate regions. We highlight the importance of recognizing wild pollinator diversity in agricultural landscapes to stabilize pollinator persistence across years to protect both biodiversity and crop pollination services. Short-term agricultural management practices aimed at dominant species for stabilizing pollination services need to be considered alongside longer term conservation goals focussed on maintaining and facilitating biodiversity to confer ecological stability. |
format | Online Article Text |
id | pubmed-8059553 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2021 |
publisher | The Royal Society |
record_format | MEDLINE/PubMed |
spelling | pubmed-80595532021-05-15 Wild insect diversity increases inter-annual stability in global crop pollinator communities Senapathi, Deepa Fründ, Jochen Albrecht, Matthias Garratt, Michael P. D. Kleijn, David Pickles, Brian J. Potts, Simon G. An, Jiandong Andersson, Georg K. S. Bänsch, Svenja Basu, Parthiba Benjamin, Faye Bezerra, Antonio Diego M. Bhattacharya, Ritam Biesmeijer, Jacobus C. Blaauw, Brett Blitzer, Eleanor J. Brittain, Claire A. Carvalheiro, Luísa G. Cariveau, Daniel P. Chakraborty, Pushan Chatterjee, Arnob Chatterjee, Soumik Cusser, Sarah Danforth, Bryan N. Degani, Erika Freitas, Breno M. Garibaldi, Lucas A. Geslin, Benoit de Groot, G. Arjen Harrison, Tina Howlett, Brad Isaacs, Rufus Jha, Shalene Klatt, Björn Kristian Krewenka, Kristin Leigh, Samuel Lindström, Sandra A. M. Mandelik, Yael McKerchar, Megan Park, Mia Pisanty, Gideon Rader, Romina Reemer, Menno Rundlöf, Maj Smith, Barbara Smith, Henrik G. Silva, Patrícia Nunes Steffan-Dewenter, Ingolf Tscharntke, Teja Webber, Sean Westbury, Duncan B. Westphal, Catrin Wickens, Jennifer B. Wickens, Victoria J. Winfree, Rachael Zhang, Hong Klein, Alexandra-Maria Proc Biol Sci Ecology While an increasing number of studies indicate that the range, diversity and abundance of many wild pollinators has declined, the global area of pollinator-dependent crops has significantly increased over the last few decades. Crop pollination studies to date have mainly focused on either identifying different guilds pollinating various crops, or on factors driving spatial changes and turnover observed in these communities. The mechanisms driving temporal stability for ecosystem functioning and services, however, remain poorly understood. Our study quantifies temporal variability observed in crop pollinators in 21 different crops across multiple years at a global scale. Using data from 43 studies from six continents, we show that (i) higher pollinator diversity confers greater inter-annual stability in pollinator communities, (ii) temporal variation observed in pollinator abundance is primarily driven by the three-most dominant species, and (iii) crops in tropical regions demonstrate higher inter-annual variability in pollinator species richness than crops in temperate regions. We highlight the importance of recognizing wild pollinator diversity in agricultural landscapes to stabilize pollinator persistence across years to protect both biodiversity and crop pollination services. Short-term agricultural management practices aimed at dominant species for stabilizing pollination services need to be considered alongside longer term conservation goals focussed on maintaining and facilitating biodiversity to confer ecological stability. The Royal Society 2021-03-31 2021-03-17 /pmc/articles/PMC8059553/ /pubmed/33726596 http://dx.doi.org/10.1098/rspb.2021.0212 Text en © 2021 The Authors. https://creativecommons.org/licenses/by/4.0/Published by the Royal Society under the terms of the Creative Commons Attribution License http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, provided the original author and source are credited. |
spellingShingle | Ecology Senapathi, Deepa Fründ, Jochen Albrecht, Matthias Garratt, Michael P. D. Kleijn, David Pickles, Brian J. Potts, Simon G. An, Jiandong Andersson, Georg K. S. Bänsch, Svenja Basu, Parthiba Benjamin, Faye Bezerra, Antonio Diego M. Bhattacharya, Ritam Biesmeijer, Jacobus C. Blaauw, Brett Blitzer, Eleanor J. Brittain, Claire A. Carvalheiro, Luísa G. Cariveau, Daniel P. Chakraborty, Pushan Chatterjee, Arnob Chatterjee, Soumik Cusser, Sarah Danforth, Bryan N. Degani, Erika Freitas, Breno M. Garibaldi, Lucas A. Geslin, Benoit de Groot, G. Arjen Harrison, Tina Howlett, Brad Isaacs, Rufus Jha, Shalene Klatt, Björn Kristian Krewenka, Kristin Leigh, Samuel Lindström, Sandra A. M. Mandelik, Yael McKerchar, Megan Park, Mia Pisanty, Gideon Rader, Romina Reemer, Menno Rundlöf, Maj Smith, Barbara Smith, Henrik G. Silva, Patrícia Nunes Steffan-Dewenter, Ingolf Tscharntke, Teja Webber, Sean Westbury, Duncan B. Westphal, Catrin Wickens, Jennifer B. Wickens, Victoria J. Winfree, Rachael Zhang, Hong Klein, Alexandra-Maria Wild insect diversity increases inter-annual stability in global crop pollinator communities |
title | Wild insect diversity increases inter-annual stability in global crop pollinator communities |
title_full | Wild insect diversity increases inter-annual stability in global crop pollinator communities |
title_fullStr | Wild insect diversity increases inter-annual stability in global crop pollinator communities |
title_full_unstemmed | Wild insect diversity increases inter-annual stability in global crop pollinator communities |
title_short | Wild insect diversity increases inter-annual stability in global crop pollinator communities |
title_sort | wild insect diversity increases inter-annual stability in global crop pollinator communities |
topic | Ecology |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8059553/ https://www.ncbi.nlm.nih.gov/pubmed/33726596 http://dx.doi.org/10.1098/rspb.2021.0212 |
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