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Effects of Simulated Precipitation Gradients on Nutrient Resorption in the Desert Steppe of Northern China

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Journal Front Plant Sci
Date 2023 Sep 15
PMID 37711301
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Abstract

Background: Changes in rainfall induced by climate change will likely influence the utilization of water resources and affect the nutrient cycle in plants in the water-limited desert steppe. In order to understand the response of nitrogen and phosphorus resorption characteristics of plant leaves to precipitation changes, this study compared the nitrogen (N) resorption efficiency, phosphorus (P) resorption efficiency and influencing factors of plants in a desert steppe through water treatment experiments.

Methods: A 4-year field experiment was performed to examine the response and influencing factors of nitrogen (N) and phosphorus resorption efficiency of five dominant plants in desert steppe to simulated precipitation change in Inner Mongolia, with four simulated precipitation gradients including reducing water by 50%, natural precipitation, increasing water by 50%, increasing water by 100%.

Results: Compared with natural precipitation, increasing water by 100% significantly increased soil moisture, and significantly increased the aboveground biomass of , , , decreased the N concentrations in green leaves of S. breviflora, , , , decreased the N concentrations in senesced leaves of C. songorica, decreased the P concentrations in green leaves of and , decreased the NRE of . NRE was significantly negatively correlated with N concentration in senesced leaves, and PRE was significantly negatively correlated with P concentration in senesced leaves.

Conclusions: Increasing water indirectly reduces NRE by reducing plant leaf green leaves nitrogen concentration, and decreasing water indirectly reduces PRE by reducing soil moisture.

References
1.
Luo W, Xu C, Ma W, Yue X, Liang X, Zuo X . Effects of extreme drought on plant nutrient uptake and resorption in rhizomatous vs bunchgrass-dominated grasslands. Oecologia. 2018; 188(2):633-643. DOI: 10.1007/s00442-018-4232-1. View

2.
Xu Z, Hou Y, Zhang L, Liu T, Zhou G . Ecosystem responses to warming and watering in typical and desert steppes. Sci Rep. 2016; 6:34801. PMC: 5056398. DOI: 10.1038/srep34801. View

3.
Reed S, Townsend A, Davidson E, Cleveland C . Stoichiometric patterns in foliar nutrient resorption across multiple scales. New Phytol. 2012; 196(1):173-180. DOI: 10.1111/j.1469-8137.2012.04249.x. View

4.
Smith M, Knapp A, Collins S . A framework for assessing ecosystem dynamics in response to chronic resource alterations induced by global change. Ecology. 2010; 90(12):3279-89. DOI: 10.1890/08-1815.1. View

5.
Beier C, Beierkuhnlein C, Wohlgemuth T, Penuelas J, Emmett B, Korner C . Precipitation manipulation experiments--challenges and recommendations for the future. Ecol Lett. 2012; 15(8):899-911. DOI: 10.1111/j.1461-0248.2012.01793.x. View