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Long-term nitrogen addition regulates root nutrient capture and leaf nutrient resorption in Larix gmelinii in a boreal forest

Authors :
Lei Wang
Yajuan Xing
Qinggui Wang
Xiaochun Wang
Tong Liu
Yue Feng
Guancheng Liu
Zhiwei Yin
Source :
European Journal of Forest Research. 140:763-776
Publication Year :
2021
Publisher :
Springer Science and Business Media LLC, 2021.

Abstract

Human activities accelerate global nitrogen (N) deposition, and elevated N availability may alter the stoichiometric balance of nutrients and then affect nutrient absorption by plants. The boreal forest is considered one of the world’s most N-limited ecosystems, and its response to N deposition is already a hot issue. In order to explore how long-term nitrogen addition influences nutrient uptake and distribution in Larix gmelinii in a boreal forest, four N treatment levels (0, 25, 50 and 75 kg N ha−1 yr−1) have been applied in a boreal forest since May 2011. Nitrogen addition significantly reduced the soil pH, significantly changed the soil N availability, increased the total N and N/P in needles and fine roots, and decreased the total P in needles and the C/N in soil. Nitrogen addition significantly reduced nitrogen resorption efficiency, and its impacts on P resorption efficiency were not significant. Nitrogen addition significantly increased the root length, surface area and diameter of 4th- and 5th-order transport fine roots. The N and N/P of needles showed seasonal variation. The needle N concentration and N/P were positively correlated with N addition, while the needle P was negatively correlated with nitrogen addition. With increase in nitrogen addition, Larix gmelinii increased its investment in its belowground parts, which may explain why Larix gmelinii tended to put more C in long-lived roots to improve its C utilization efficiency. Given the P deficiency caused by N addition, Larix gmelinii may be more likely to absorb P from the soil and adjust its C distribution to meet its P demand rather than relying on internal nutrient resorption.

Details

ISSN :
16124677 and 16124669
Volume :
140
Database :
OpenAIRE
Journal :
European Journal of Forest Research
Accession number :
edsair.doi...........00bfee3a7dc463f47a6abc85e55438d9
Full Text :
https://doi.org/10.1007/s10342-021-01364-1