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Changes in C:N:P stoichiometry modify N and P conservation strategies of a desert steppe species Glycyrrhiza uralensis. | LitMetric

Changes in C:N:P stoichiometry modify N and P conservation strategies of a desert steppe species Glycyrrhiza uralensis.

Sci Rep

Breeding Base for State Key Laboratory of Land Degradation and Ecological Restoration in Northwest China, Ningxia University, Yinchuan, 750021, China.

Published: August 2018

AI Article Synopsis

  • Numerous studies show that the balance of carbon, nitrogen, and phosphorus in soils and plants is affected by global changes.
  • The research tested how the N-fixing plant Glycyrrhiza uralensis adapts its nutrient conservation when subject to varying water and nitrogen levels in controlled experiments.
  • Findings revealed that changes in water and nitrogen levels influenced nutrient resorption in the plant's senescing leaves, affecting the stoichiometry of carbon, nitrogen, and phosphorus and potentially altering nutrient cycling in its desert steppe ecosystem.

Article Abstract

Numerous studies have concluded that carbon (C):nitrogen (N):phosphorus (P) stoichiometry in both soils and plants tends to be decoupled under global change. We consequently hypothesized that plants will adjust nutrient conservation strategies to balance the altered elemental stoichiometry accordingly. To test our hypothesis, we conducted two pot-cultured experiments (with 8-level water and 6-level N addition treatments) using N-fixing species Glycyrrhiza uralensis Fisch from a desert steppe in northwestern China. We observed that high water availability lowered total N content and the N:P ratio in soils, further promoting both N and P resorption from senescing leaves of G. uralensis. High N addition enhanced soil N availability and the N:P ratio, thereby reducing N resorption, but increasing P resorption of G. uralensis. Comparatively, there were also great changes in senescing leaf C:N:P stoichiometry while no clear changes were observed in either green leaf or root C:N:P stoichiometry of G. uralensis. As expected, the altered C:N:P stoichiometry may, in turn, modify N and P conservation strategies through their close linkages with N and P uptake in green leaves of G. uralensis. This modification may also further exert effects on N and P cycling of the desert steppe.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6107674PMC
http://dx.doi.org/10.1038/s41598-018-30324-wDOI Listing

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