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  5. Nitrogen acquisition by plants and microorganisms in a temperate grassland

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Article
English
2016

Nitrogen acquisition by plants and microorganisms in a temperate grassland

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0 Files

English
2016
Scientific Reports
Vol 6 (1)
DOI: 10.1038/srep22642

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Yakov Kuzyakov
Yakov Kuzyakov

Institution not specified

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Qianyuan Liu
Na Qiao
Xingliang Xu
+5 more

Abstract

Nitrogen (N) limitation is common in most terrestrial ecosystems, often leading to strong competition between microorganisms and plants. The mechanisms of niche differentiation to reduce this competition remain unclear. Short-term 15 N experiments with NH 4 + , NO 3 − and glycine were conducted in July, August and September in a temperate grassland to evaluate the chemical, spatial and temporal niche differentiation by competition between plants and microorganisms for N. Microorganisms preferred NH 4 + and NO 3 − , while plants preferred NO 3 − . Both plants and microorganisms acquired more N in August and September than in July. The soil depth had no significant effects on microbial uptake, but significantly affected plant N uptake. Plants acquired 67% of their N from the 0–5 cm soil layer and 33% from the 5–15 cm layer. The amount of N taken up by microorganisms was at least seven times than plants. Although microorganisms efficiently compete for N with plants, the competition is alleviated through chemical partitioning mainly in deeper soil layer. In the upper soil layer, neither chemical nor temporal niche separation is realized leading to strong competition between plants and microorganisms that modifies N dynamics in grasslands.

How to cite this publication

Qianyuan Liu, Na Qiao, Xingliang Xu, Xiaoping Xin, Jessie Yc Han, Yuqiang Tian, Hua Ouyang, Yakov Kuzyakov (2016). Nitrogen acquisition by plants and microorganisms in a temperate grassland. Scientific Reports, 6(1), DOI: 10.1038/srep22642.

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Publication Details

Type

Article

Year

2016

Authors

8

Datasets

0

Total Files

0

Language

English

Journal

Scientific Reports

DOI

10.1038/srep22642

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