Literature DB >> 33226653

Mature conifers assimilate nitrate as efficiently as ammonium from soils in four forest plantations.

Xulun Zhou1,2,3, Ang Wang1,3,4, Erik A Hobbie5, Feifei Zhu1,3,4, Yuying Qu1,3,4, Luming Dai1,4, Dejun Li6, Xueyan Liu7, Weixing Zhu8, Keisuke Koba9, Yinghua Li2, Yunting Fang1,3,4.   

Abstract

Conifers are considered to prefer to take up ammonium (NH4 + ) over nitrate (NO3 - ). However, this conclusion is mainly based on hydroponic experiments that separate roots from soils. It remains unclear to what extent mature conifers can use nitrate compared to ammonium under field conditions where both roots and soil microbes compete for nitrogen (N). We conducted an in situ whole mature tree nitrogen-15 (15 N) labeling experiment (15 NH4 + vs 15 NO3 - ) over 15 d to quantify ammonium and nitrate uptake and assimilation rates in four 40-yr-old monoculture coniferous plantations (Pinus koraiensis, Pinus sylvestris, Picea koraiensis and Larix olgensis, respectively). For the whole tree, 15 NO3 - contributed 39% to 90% to total 15 N tracer uptake among four plantations during the study period. At day 3, the 15 NO3 - accounted for 77%, 64%, 62% and 59% by Larix olgensis, Pinus koraiensis, Pinus sylvestris and Picea koraiensis, respectively. Our study indicates that mature coniferous trees assimilated nitrate as efficiently as ammonium from soils even at low soil nitrate concentration, in contrast to the results from hydroponic experiments showing that ammonium uptake dominated over nitrate. This implies that mature conifers can adapt to increasing availability of nitrate in soil, for example, under the context of globalization of N deposition and global warming.
© 2020 The Authors New Phytologist © 2020 New Phytologist Foundation.

Entities:  

Keywords:  15N labeling; ammonium; conifers; nitrate; nitrogen uptake preference; temperate forests

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Substances:

Year:  2020        PMID: 33226653     DOI: 10.1111/nph.17110

Source DB:  PubMed          Journal:  New Phytol        ISSN: 0028-646X            Impact factor:   10.151


  2 in total

1.  Interspecific differences in the responses of root phosphatase activities and morphology to nitrogen and phosphorus fertilization in Bornean tropical rain forests.

Authors:  Yu Hirano; Kanehiro Kitayama; Nobuo Imai
Journal:  Ecol Evol       Date:  2022-03-07       Impact factor: 2.912

2.  Is plastidic glutamine synthetase essential for C3 plants? A tale of photorespiratory mutants, ammonium tolerance and conifers.

Authors:  Daniel Marino; Rafael A Cañas; Marco Betti
Journal:  New Phytol       Date:  2022-03-26       Impact factor: 10.323

  2 in total

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