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  4. Drought intensity and duration interact to magnify losses in primary productivity
 

Drought intensity and duration interact to magnify losses in primary productivity

URI
https://arbor.bfh.ch/handle/arbor/46132
Date Issued
2025-10-16
Author(s)
Ohlert, Timothy
Smith, Melinda D.
Collins, Scott L.
Knapp, Alan K.
Dukes, Jeffrey S.
Sala, Osvaldo
Wilkins, Kate D.
Munson, Seth M.
Anderson, Maggie I.
Avolio, Meghan L.
Chen, Anping
Hayden, Meghan T.
Holdrege, Martin C.
Slette, Ingrid J.
Wilfahrt, Peter
Beier, Claus
Fraser, Lauchlan H.
Jentsch, Anke
Loik, Michael E.
Luo, Yiqi
Maestre, Fernando T.
Phillips, Richard P.
Power, Sally A.
Yahdjian, Laura
Yu, Qiang
Chen, Angel
Felton, Andrew J.
Gherardi, Laureano A.
Lyon, Nicholas J.
Abdoli, Hamed
Abedi, Mehdi
Alberti, Juan
Arroyo, Antonio I.
Asbjornsen, Heidi
Auge, Harald
Bachle, Seton
Bahn, Michael
Bartholomew, David C.
Batbaatar, Amgaa
Bauerle, Taryn L.
Beard, Karen H.
Behn, Kai
Beil, Ilka
Biancari, Lucio
Blindow, Irmgard
Bondaruk, Viviana Florencia
Borer, Elizabeth T.
Bork, Edward W.
Bruschetti, Carlos Martin
Byrne, Kerry M.
Cahill, James F.
Calvo, Dianela A.
Carbognani, Michele
Carlyle, Cameron N.
Castillioni, Karen
Castillo-Garcia, Miguel
Chandregowda, Manjunatha H.
Chang, Scott X.
Chieppa, Jeff
Churchill, Amber C.
Cianciaruso, Marcus Vinicius
Cordeiro, Amanda L
Cousins, Sara A. O.
Cusack, Daniela F.
Dahlke, Sven
Daleo, Pedro
Dietterich, Lee H.
Dubbert, Maren
Eisenhauer, Nico
Forte, T’ai G. W.
Funk, Flavia A.
Galiano, Darcy
Greenville, Aaron C.
Han, Liebao
Haugum, Siri Vatsø
Hautier, Yann
Hector, Andy
Henry, Hugh A. L.
Hoss, Daniela
Isbell, Forest
Jordan, Samuel E.
Ke, Yuguang
Kelly, Eugene F.
Koerner, Sally E.
Kreyling, Juergen
Kröel-Dulay, György
Kröpfl, Alicia I.
Kübert, Angelika
Kulmatiski, Andrew
Lamb, Eric G.
Larsen, Klaus Steenberg
Lee, Steven
Limbu, Smriti Pehim
Linstädter, Anja
Liu, Shirong
Longo, Grisel
Loydi, Alejandro
Luan, Junwei
Lubbe, F. Curtis
Malyshev, Andrey V.
McIntire, Cameron D.
Metcalfe, Daniel B.
Mokoka, Malesela Vincent
Mori, Akira S.
Mudongo, Edwin
Newman, Gregory S.
Nielsen, Uffe N.
Ochoa-Hueso, Raúl
O’Connor, Rory C.
Ogaya, Romà
Oñatibia, Gastón R.
Orbán, Ildikó
Osborne, Brooke B.
Otfinowski, Rafael
Pärtel, Meelis
Pascual, Jesús
Peñuelas, Josep
Peri, Pablo L.
Pescador, David S.
Peter, Guadalupe
Petraglia, Alessandro
Picon-Cochard, Catherine
Pillar, Valério D.
Piñeiro-Guerra, Juan M.
Ploughe, Laura Weber
Plowes, Robert M.
Portales-Reyes, Cristy
Prober, Suzanne M.
Pueyo, Yolanda
Rahmati, Golsa
Reed, Sasha C.
Rodríguez, Dana Aylén
Rogers, William E.
Roscher, Christiane
Rowley, David W.
Sánchez, Ana M.
Santos, Bráulio A.
Schellenberg, Michael P.
Scherer-Lorenzen, Michael
Seabloom, Eric W.
Shen, Ruonan
Shi, Baoku
Souza, Lara
Stampfli, Andreas  
Standish, Rachel J.
Sternberg, Marcelo
Sun, Wei
Sünnemann, Marie
Tedder, Michelle
Terry, Tyson J.
Thorvaldsen, Pål
Tielbörger, Katja
Tissink, Maud
Vadeboncoeur, Matthew A.
Valdecantos, Alejandro
van den Brink, Liesbeth
Vandvik, Vigdis
Velle, Liv Guri
Wanke, Svenja
Wardle, Glenda M.
Wei, Cunzheng
Werner, Christiane
Wiehl, Georg
Williams, Jennifer L.
Wolf, Amelia A.
Wu, Honghui
Xu, Chong
Yang, Xuechen
Yang, Yadong
Yost, Jenifer L.
Young, Alyssa L.
Yue, Ping
Zeberio, Juan M.
Zeiter, Michaela  
Zhang, Haiyang
Zhu, Juntao
Zuo, Xiaoan
Type
Article
Language
English
Abstract
The increasing severity and frequency of drought pose serious threats to plant species worldwide. Yet, we lack a general understanding of how various intensities of droughts affect plant traits, in particular root traits. Here, using a meta-analysis of drought experiments (997 effect sizes from 76 papers), we investigate the effects of various intensities of droughts on some of the key morphological root traits. Our results show that root length, root mean diameter, and root area decline when drought is of severe or extreme intensity, whereas severe drought increases root tissue density. These patterns are most pronounced in trees compared to other plant functional groups. Moreover, the long duration of severe drought decreases root length in grasses and root mean diameter in legumes. The decline in root length and root diameter due to severe drought in trees was independent of drought duration. Our results suggest that morphological root traits respond strongly to increasing intensity of drought, which further depends on drought duration and may vary among plant functional groups. Our meta-analysis highlights the need for future studies to consider the interactive effects of drought intensity and drought duration for a better understanding of variable plant responses to drought.
Publisher DOI
10.1126/science.ads8144
Journal
Science
ISSN
0036-8075
Organization
Hochschule für Agrar-, Forst- und Lebensmittelwissenschaften  
Agronomie  
Volume
390
Issue
6770
Publisher
American Association for the Advancement of Science
Submitter
Stampfli, Andreas
Citation apa
Ohlert, T., Smith, M. D., Collins, S. L., Knapp, A. K., Dukes, J. S., Sala, O., Wilkins, K. D., Munson, S. M., Anderson, M. I., Avolio, M. L., Chen, A., Hayden, M. T., Holdrege, M. C., Slette, I. J., Wilfahrt, P., Beier, C., Fraser, L. H., Jentsch, A., Loik, M. E., … Zuo, X. (2025). Drought intensity and duration interact to magnify losses in primary productivity. In Science (Vol. 390, Issue 6770). American Association for the Advancement of Science. https://arbor.bfh.ch/handle/arbor/46132
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