| Literature DB >> 21749598 |
W Stanley Harpole1, Jacqueline T Ngai, Elsa E Cleland, Eric W Seabloom, Elizabeth T Borer, Matthew E S Bracken, James J Elser, Daniel S Gruner, Helmut Hillebrand, Jonathan B Shurin, Jennifer E Smith.
Abstract
Synergistic interactions between multiple limiting resources are common, highlighting the importance of co-limitation as a constraint on primary production. Our concept of resource limitation has shifted over the past two decades from an earlier paradigm of single-resource limitation towards concepts of co-limitation by multiple resources, which are predicted by various theories. Herein, we summarise multiple-resource limitation responses in plant communities using a dataset of 641 studies that applied factorial addition of nitrogen (N) anpan>d pan> class="Chemical">phosphorus (P) in freshwater, marine and terrestrial systems. We found that more than half of the studies displayed some type of synergistic response to N and P addition. We found support for strict definitions of co-limitation in 28% of the studies: i.e. community biomass responded to only combined N and P addition, or to both N and P when added separately. Our results highlight the importance of interactions between N and P in regulating primary producer community biomass and point to the need for future studies that address the multiple mechanisms that could lead to different types of co-limitation.Entities:
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Year: 2011 PMID: 21749598 DOI: 10.1111/j.1461-0248.2011.01651.x
Source DB: PubMed Journal: Ecol Lett ISSN: 1461-023X Impact factor: 9.492