Cargando…
Globally invariant metabolism but density-diversity mismatch in springtails
Soil life supports the functioning and biodiversity of terrestrial ecosystems. Springtails (Collembola) are among the most abundant soil arthropods regulating soil fertility and flow of energy through above- and belowground food webs. However, the global distribution of springtail diversity and dens...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Nature Publishing Group UK
2023
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9905565/ https://www.ncbi.nlm.nih.gov/pubmed/36750574 http://dx.doi.org/10.1038/s41467-023-36216-6 |
_version_ | 1784883825073979392 |
---|---|
author | Potapov, Anton M. Guerra, Carlos A. van den Hoogen, Johan Babenko, Anatoly Bellini, Bruno C. Berg, Matty P. Chown, Steven L. Deharveng, Louis Kováč, Ľubomír Kuznetsova, Natalia A. Ponge, Jean-François Potapov, Mikhail B. Russell, David J. Alexandre, Douglas Alatalo, Juha M. Arbea, Javier I. Bandyopadhyaya, Ipsa Bernava, Verónica Bokhorst, Stef Bolger, Thomas Castaño-Meneses, Gabriela Chauvat, Matthieu Chen, Ting-Wen Chomel, Mathilde Classen, Aimee T. Cortet, Jerome Čuchta, Peter Manuela de la Pedrosa, Ana Ferreira, Susana S. D. Fiera, Cristina Filser, Juliane Franken, Oscar Fujii, Saori Koudji, Essivi Gagnon Gao, Meixiang Gendreau-Berthiaume, Benoit Gomez-Pamies, Diego F. Greve, Michelle Tanya Handa, I. Heiniger, Charlène Holmstrup, Martin Homet, Pablo Ivask, Mari Janion-Scheepers, Charlene Jochum, Malte Joimel, Sophie Claudia S. Jorge, Bruna Jucevica, Edite Ferlian, Olga Iuñes de Oliveira Filho, Luís Carlos Klauberg-Filho, Osmar Baretta, Dilmar Krab, Eveline J. Kuu, Annely de Lima, Estevam C. A. Lin, Dunmei Lindo, Zoe Liu, Amy Lu, Jing-Zhong Luciañez, María José Marx, Michael T. McCary, Matthew A. Minor, Maria A. Nakamori, Taizo Negri, Ilaria Ochoa-Hueso, Raúl Palacios-Vargas, José G. Pollierer, Melanie M. Querner, Pascal Raschmanová, Natália Rashid, Muhammad Imtiaz Raymond-Léonard, Laura J. Rousseau, Laurent Saifutdinov, Ruslan A. Salmon, Sandrine Sayer, Emma J. Scheunemann, Nicole Scholz, Cornelia Seeber, Julia Shveenkova, Yulia B. Stebaeva, Sophya K. Sterzynska, Maria Sun, Xin Susanti, Winda I. Taskaeva, Anastasia A. Thakur, Madhav P. Tsiafouli, Maria A. Turnbull, Matthew S. Twala, Mthokozisi N. Uvarov, Alexei V. Venier, Lisa A. Widenfalk, Lina A. Winck, Bruna R. Winkler, Daniel Wu, Donghui Xie, Zhijing Yin, Rui Zeppelini, Douglas Crowther, Thomas W. Eisenhauer, Nico Scheu, Stefan |
author_facet | Potapov, Anton M. Guerra, Carlos A. van den Hoogen, Johan Babenko, Anatoly Bellini, Bruno C. Berg, Matty P. Chown, Steven L. Deharveng, Louis Kováč, Ľubomír Kuznetsova, Natalia A. Ponge, Jean-François Potapov, Mikhail B. Russell, David J. Alexandre, Douglas Alatalo, Juha M. Arbea, Javier I. Bandyopadhyaya, Ipsa Bernava, Verónica Bokhorst, Stef Bolger, Thomas Castaño-Meneses, Gabriela Chauvat, Matthieu Chen, Ting-Wen Chomel, Mathilde Classen, Aimee T. Cortet, Jerome Čuchta, Peter Manuela de la Pedrosa, Ana Ferreira, Susana S. D. Fiera, Cristina Filser, Juliane Franken, Oscar Fujii, Saori Koudji, Essivi Gagnon Gao, Meixiang Gendreau-Berthiaume, Benoit Gomez-Pamies, Diego F. Greve, Michelle Tanya Handa, I. Heiniger, Charlène Holmstrup, Martin Homet, Pablo Ivask, Mari Janion-Scheepers, Charlene Jochum, Malte Joimel, Sophie Claudia S. Jorge, Bruna Jucevica, Edite Ferlian, Olga Iuñes de Oliveira Filho, Luís Carlos Klauberg-Filho, Osmar Baretta, Dilmar Krab, Eveline J. Kuu, Annely de Lima, Estevam C. A. Lin, Dunmei Lindo, Zoe Liu, Amy Lu, Jing-Zhong Luciañez, María José Marx, Michael T. McCary, Matthew A. Minor, Maria A. Nakamori, Taizo Negri, Ilaria Ochoa-Hueso, Raúl Palacios-Vargas, José G. Pollierer, Melanie M. Querner, Pascal Raschmanová, Natália Rashid, Muhammad Imtiaz Raymond-Léonard, Laura J. Rousseau, Laurent Saifutdinov, Ruslan A. Salmon, Sandrine Sayer, Emma J. Scheunemann, Nicole Scholz, Cornelia Seeber, Julia Shveenkova, Yulia B. Stebaeva, Sophya K. Sterzynska, Maria Sun, Xin Susanti, Winda I. Taskaeva, Anastasia A. Thakur, Madhav P. Tsiafouli, Maria A. Turnbull, Matthew S. Twala, Mthokozisi N. Uvarov, Alexei V. Venier, Lisa A. Widenfalk, Lina A. Winck, Bruna R. Winkler, Daniel Wu, Donghui Xie, Zhijing Yin, Rui Zeppelini, Douglas Crowther, Thomas W. Eisenhauer, Nico Scheu, Stefan |
author_sort | Potapov, Anton M. |
collection | PubMed |
description | Soil life supports the functioning and biodiversity of terrestrial ecosystems. Springtails (Collembola) are among the most abundant soil arthropods regulating soil fertility and flow of energy through above- and belowground food webs. However, the global distribution of springtail diversity and density, and how these relate to energy fluxes remains unknown. Here, using a global dataset representing 2470 sites, we estimate the total soil springtail biomass at 27.5 megatons carbon, which is threefold higher than wild terrestrial vertebrates, and record peak densities up to 2 million individuals per square meter in the tundra. Despite a 20-fold biomass difference between the tundra and the tropics, springtail energy use (community metabolism) remains similar across the latitudinal gradient, owing to the changes in temperature with latitude. Neither springtail density nor community metabolism is predicted by local species richness, which is high in the tropics, but comparably high in some temperate forests and even tundra. Changes in springtail activity may emerge from latitudinal gradients in temperature, predation and resource limitation in soil communities. Contrasting relationships of biomass, diversity and activity of springtail communities with temperature suggest that climate warming will alter fundamental soil biodiversity metrics in different directions, potentially restructuring terrestrial food webs and affecting soil functioning. |
format | Online Article Text |
id | pubmed-9905565 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2023 |
publisher | Nature Publishing Group UK |
record_format | MEDLINE/PubMed |
spelling | pubmed-99055652023-02-08 Globally invariant metabolism but density-diversity mismatch in springtails Potapov, Anton M. Guerra, Carlos A. van den Hoogen, Johan Babenko, Anatoly Bellini, Bruno C. Berg, Matty P. Chown, Steven L. Deharveng, Louis Kováč, Ľubomír Kuznetsova, Natalia A. Ponge, Jean-François Potapov, Mikhail B. Russell, David J. Alexandre, Douglas Alatalo, Juha M. Arbea, Javier I. Bandyopadhyaya, Ipsa Bernava, Verónica Bokhorst, Stef Bolger, Thomas Castaño-Meneses, Gabriela Chauvat, Matthieu Chen, Ting-Wen Chomel, Mathilde Classen, Aimee T. Cortet, Jerome Čuchta, Peter Manuela de la Pedrosa, Ana Ferreira, Susana S. D. Fiera, Cristina Filser, Juliane Franken, Oscar Fujii, Saori Koudji, Essivi Gagnon Gao, Meixiang Gendreau-Berthiaume, Benoit Gomez-Pamies, Diego F. Greve, Michelle Tanya Handa, I. Heiniger, Charlène Holmstrup, Martin Homet, Pablo Ivask, Mari Janion-Scheepers, Charlene Jochum, Malte Joimel, Sophie Claudia S. Jorge, Bruna Jucevica, Edite Ferlian, Olga Iuñes de Oliveira Filho, Luís Carlos Klauberg-Filho, Osmar Baretta, Dilmar Krab, Eveline J. Kuu, Annely de Lima, Estevam C. A. Lin, Dunmei Lindo, Zoe Liu, Amy Lu, Jing-Zhong Luciañez, María José Marx, Michael T. McCary, Matthew A. Minor, Maria A. Nakamori, Taizo Negri, Ilaria Ochoa-Hueso, Raúl Palacios-Vargas, José G. Pollierer, Melanie M. Querner, Pascal Raschmanová, Natália Rashid, Muhammad Imtiaz Raymond-Léonard, Laura J. Rousseau, Laurent Saifutdinov, Ruslan A. Salmon, Sandrine Sayer, Emma J. Scheunemann, Nicole Scholz, Cornelia Seeber, Julia Shveenkova, Yulia B. Stebaeva, Sophya K. Sterzynska, Maria Sun, Xin Susanti, Winda I. Taskaeva, Anastasia A. Thakur, Madhav P. Tsiafouli, Maria A. Turnbull, Matthew S. Twala, Mthokozisi N. Uvarov, Alexei V. Venier, Lisa A. Widenfalk, Lina A. Winck, Bruna R. Winkler, Daniel Wu, Donghui Xie, Zhijing Yin, Rui Zeppelini, Douglas Crowther, Thomas W. Eisenhauer, Nico Scheu, Stefan Nat Commun Article Soil life supports the functioning and biodiversity of terrestrial ecosystems. Springtails (Collembola) are among the most abundant soil arthropods regulating soil fertility and flow of energy through above- and belowground food webs. However, the global distribution of springtail diversity and density, and how these relate to energy fluxes remains unknown. Here, using a global dataset representing 2470 sites, we estimate the total soil springtail biomass at 27.5 megatons carbon, which is threefold higher than wild terrestrial vertebrates, and record peak densities up to 2 million individuals per square meter in the tundra. Despite a 20-fold biomass difference between the tundra and the tropics, springtail energy use (community metabolism) remains similar across the latitudinal gradient, owing to the changes in temperature with latitude. Neither springtail density nor community metabolism is predicted by local species richness, which is high in the tropics, but comparably high in some temperate forests and even tundra. Changes in springtail activity may emerge from latitudinal gradients in temperature, predation and resource limitation in soil communities. Contrasting relationships of biomass, diversity and activity of springtail communities with temperature suggest that climate warming will alter fundamental soil biodiversity metrics in different directions, potentially restructuring terrestrial food webs and affecting soil functioning. Nature Publishing Group UK 2023-02-07 /pmc/articles/PMC9905565/ /pubmed/36750574 http://dx.doi.org/10.1038/s41467-023-36216-6 Text en © The Author(s) 2023 https://creativecommons.org/licenses/by/4.0/Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) . |
spellingShingle | Article Potapov, Anton M. Guerra, Carlos A. van den Hoogen, Johan Babenko, Anatoly Bellini, Bruno C. Berg, Matty P. Chown, Steven L. Deharveng, Louis Kováč, Ľubomír Kuznetsova, Natalia A. Ponge, Jean-François Potapov, Mikhail B. Russell, David J. Alexandre, Douglas Alatalo, Juha M. Arbea, Javier I. Bandyopadhyaya, Ipsa Bernava, Verónica Bokhorst, Stef Bolger, Thomas Castaño-Meneses, Gabriela Chauvat, Matthieu Chen, Ting-Wen Chomel, Mathilde Classen, Aimee T. Cortet, Jerome Čuchta, Peter Manuela de la Pedrosa, Ana Ferreira, Susana S. D. Fiera, Cristina Filser, Juliane Franken, Oscar Fujii, Saori Koudji, Essivi Gagnon Gao, Meixiang Gendreau-Berthiaume, Benoit Gomez-Pamies, Diego F. Greve, Michelle Tanya Handa, I. Heiniger, Charlène Holmstrup, Martin Homet, Pablo Ivask, Mari Janion-Scheepers, Charlene Jochum, Malte Joimel, Sophie Claudia S. Jorge, Bruna Jucevica, Edite Ferlian, Olga Iuñes de Oliveira Filho, Luís Carlos Klauberg-Filho, Osmar Baretta, Dilmar Krab, Eveline J. Kuu, Annely de Lima, Estevam C. A. Lin, Dunmei Lindo, Zoe Liu, Amy Lu, Jing-Zhong Luciañez, María José Marx, Michael T. McCary, Matthew A. Minor, Maria A. Nakamori, Taizo Negri, Ilaria Ochoa-Hueso, Raúl Palacios-Vargas, José G. Pollierer, Melanie M. Querner, Pascal Raschmanová, Natália Rashid, Muhammad Imtiaz Raymond-Léonard, Laura J. Rousseau, Laurent Saifutdinov, Ruslan A. Salmon, Sandrine Sayer, Emma J. Scheunemann, Nicole Scholz, Cornelia Seeber, Julia Shveenkova, Yulia B. Stebaeva, Sophya K. Sterzynska, Maria Sun, Xin Susanti, Winda I. Taskaeva, Anastasia A. Thakur, Madhav P. Tsiafouli, Maria A. Turnbull, Matthew S. Twala, Mthokozisi N. Uvarov, Alexei V. Venier, Lisa A. Widenfalk, Lina A. Winck, Bruna R. Winkler, Daniel Wu, Donghui Xie, Zhijing Yin, Rui Zeppelini, Douglas Crowther, Thomas W. Eisenhauer, Nico Scheu, Stefan Globally invariant metabolism but density-diversity mismatch in springtails |
title | Globally invariant metabolism but density-diversity mismatch in springtails |
title_full | Globally invariant metabolism but density-diversity mismatch in springtails |
title_fullStr | Globally invariant metabolism but density-diversity mismatch in springtails |
title_full_unstemmed | Globally invariant metabolism but density-diversity mismatch in springtails |
title_short | Globally invariant metabolism but density-diversity mismatch in springtails |
title_sort | globally invariant metabolism but density-diversity mismatch in springtails |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9905565/ https://www.ncbi.nlm.nih.gov/pubmed/36750574 http://dx.doi.org/10.1038/s41467-023-36216-6 |
work_keys_str_mv | AT potapovantonm globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT guerracarlosa globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT vandenhoogenjohan globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT babenkoanatoly globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT bellinibrunoc globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT bergmattyp globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT chownstevenl globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT deharvenglouis globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT kovaclubomir globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT kuznetsovanataliaa globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT pongejeanfrancois globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT potapovmikhailb globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT russelldavidj globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT alexandredouglas globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT alatalojuham globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT arbeajavieri globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT bandyopadhyayaipsa globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT bernavaveronica globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT bokhorststef globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT bolgerthomas globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT castanomenesesgabriela globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT chauvatmatthieu globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT chentingwen globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT chomelmathilde globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT classenaimeet globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT cortetjerome globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT cuchtapeter globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT manueladelapedrosaana globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT ferreirasusanasd globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT fieracristina globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT filserjuliane globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT frankenoscar globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT fujiisaori globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT koudjiessivigagnon globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT gaomeixiang globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT gendreauberthiaumebenoit globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT gomezpamiesdiegof globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT grevemichelle globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT tanyahandai globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT heinigercharlene globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT holmstrupmartin globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT hometpablo globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT ivaskmari globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT janionscheeperscharlene globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT jochummalte globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT joimelsophie globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT claudiasjorgebruna globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT jucevicaedite globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT ferlianolga globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT iunesdeoliveirafilholuiscarlos globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT klaubergfilhoosmar globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT barettadilmar globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT krabevelinej globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT kuuannely globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT delimaestevamca globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT lindunmei globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT lindozoe globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT liuamy globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT lujingzhong globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT lucianezmariajose globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT marxmichaelt globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT mccarymatthewa globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT minormariaa globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT nakamoritaizo globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT negriilaria globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT ochoahuesoraul globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT palaciosvargasjoseg globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT pollierermelaniem globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT quernerpascal globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT raschmanovanatalia globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT rashidmuhammadimtiaz globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT raymondleonardlauraj globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT rousseaulaurent globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT saifutdinovruslana globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT salmonsandrine globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT sayeremmaj globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT scheunemannnicole globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT scholzcornelia globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT seeberjulia globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT shveenkovayuliab globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT stebaevasophyak globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT sterzynskamaria globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT sunxin globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT susantiwindai globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT taskaevaanastasiaa globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT thakurmadhavp globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT tsiafoulimariaa globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT turnbullmatthews globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT twalamthokozisin globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT uvarovalexeiv globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT venierlisaa globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT widenfalklinaa globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT winckbrunar globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT winklerdaniel globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT wudonghui globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT xiezhijing globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT yinrui globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT zeppelinidouglas globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT crowtherthomasw globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT eisenhauernico globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails AT scheustefan globallyinvariantmetabolismbutdensitydiversitymismatchinspringtails |