The Impact of Herbivores on Nitrogen Mineralization Rate: Consequences for Salt-marsh Succession
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Soil net N-mineralization rate was measured along a successional gradient in salt-marsh sites that were grazed by vertebrate herbivores, and in 5-year-old exclosures from which the animals were excluded. Mineralization rate was significantly higher at ungrazed than at grazed sites. In the absence of grazing, mineralization rate increased over the course of succession, whereas it remained relatively low when sites were grazed. The largest differences in mineralization rate between grazed and ungrazed sites were found at late successional stages where grazing pressure was lowest. The amount of plant litter was significantly lower at grazed sites. In addition, the amount of litter and potential litter (non-woody, live shoots) was linearly related to net N-mineralization rate. This implies that herbivores reduced mineralization rate by preventing litter accumulation. Bulk density was higher at grazed salt-marsh sites than at ungrazed sites. This factor may also have contributed to the differences in net N-mineralization rate between grazed and ungrazed sites.
Chen Q, Smit C, Pen I, Olff H PeerJ. 2022; 9:e12633.
PMID: 35036137 PMC: 8710046. DOI: 10.7717/peerj.12633.
Plant-herbivore-decomposer stoichiometric mismatches and nutrient cycling in ecosystems.
Cherif M, Loreau M Proc Biol Sci. 2013; 280(1754):20122453.
PMID: 23303537 PMC: 3574320. DOI: 10.1098/rspb.2012.2453.
Schrama M, Heijning P, Bakker J, van Wijnen H, Berg M, Olff H Oecologia. 2012; 172(1):231-43.
PMID: 23271034 DOI: 10.1007/s00442-012-2484-8.
Hidding B, Nolet B, de Boer T, de Vries P, Klaassen M Oecologia. 2009; 162(1):199-208.
PMID: 19756762 PMC: 2776151. DOI: 10.1007/s00442-009-1450-6.
Olofsson J, de Mazancourt C, Crawley M Oecologia. 2006; 150(4):582-9.
PMID: 17024383 DOI: 10.1007/s00442-006-0555-4.