Wednesday, 6 September 2017
Reductions of plant cover induced by sheep grazing change the above-belowground partition and chemistry of organic C stocks in arid rangelands of Patagonian Monte, Argentina
J Environ Manage. 2017 Sep 1;199:139-147. doi: 10.1016/j.jenvman.2017.04.086. Epub 2017 May 18.
Larreguy C1, Carrera AL2, Bertiller MB2.
Author information
1
Instituto Patagónico para el Estudio de los Ecosistemas Continentales - CCT CENPAT- CONICET, Boulevard Brown 2915, Puerto Madryn, 9120, Chubut, Argentina. Electronic address: larreguy@cenpat-conicet.gob.ar.
2
Instituto Patagónico para el Estudio de los Ecosistemas Continentales - CCT CENPAT- CONICET, Boulevard Brown 2915, Puerto Madryn, 9120, Chubut, Argentina; Facultad de Ciencias Naturales - UNPSJB, Boulevard Brown 3000, Puerto Madryn, 9120, Chubut, Argentina.
Abstract
The objective of this study was to estimate the size and chemical quality of the total organic C stock and its partition between above-belowground plant parts and soil at sites with different plant cover induced by sheep grazing in the arid Patagonian Monte. This study was conducted at six representative sites with increasing signs of canopy disturbance attributed to grazing pressure. We used faeces density as a proxy of grazing pressure at each site. We assessed the total plant cover, shrub and perennial grass cover, total standing aboveground biomass (AGB), litter mass and belowground biomass (BGB) at each site. We further estimated the content of organic C, lignin and soluble phenols in plant compartments and the content of organic C, organic C in humic substances (recalcitrant C) and water soluble C (labile C) in soil at each site. Total plant cover was significantly related to grazing pressure. Standing AGB and litter mass decreased with increasing canopy disturbance while BGB did not vary across sites. Total organic C stock and the organic C stock in standing AGB increased with increasing total plant, shrub, and perennial grass cover. The organic C stock in litter mass increased with increasing total plant and shrub cover, while the organic C stock in BGB did not vary across sites. Lignin content in plant compartments increased with increasing total and shrub cover, while soluble phenols content did not change across sites. The organic C stock and the water soluble C content in soil were positively associated with perennial grass cover. Changes in total plant cover induced by grazing pressure negatively affected the size of the total organic C stock, having minor impact on the size of belowground than aboveground components. The reduction of perennial grass cover was reflected in decreasing chemical quality of the organic C stock in soil. Accordingly, plant managerial strategies should not only be focused on the amount of organic C sequestered but also on the chemical quality of organic C stocks since C chemistry could have an important impact on ecosystem functioning.
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KEYWORDS:
Arid ecosystems; C chemistry; Grazing disturbance; Organic C stocks perennial grass; Water soluble C
PMID: 28527740 DOI: 10.1016/j.jenvman.2017.04.086