数字农科院2.0

Global patterns and drivers of soil nematodes in response to nitrogen enrichment

文献类型: 外文期刊

作者: Wen Xing;Xiaoming Lu;Shuli Niu;Dima Chen;Jinsong Wang;Ya Liu;Bingxue Wang;Shuang Zhang;Zhaolei Li;Xijun Yao;Qiang Yu;Dashuan Tian

作者机构:

关键词: Ammonium toxicity;Diversity;Nitrogen deposition;Soil acidification;Soil nematode;Trophic levels

期刊名称: Catena

ISSN: 0341-8162

年卷期: 2022 年 213 卷

页码:

收录情况: SCIE(2022版)

摘要: Nitrogen (N) deposition significantly lessens ecosystem N limitation, and can even cause N saturation and soil acidification. The effects of N enrichment have been globally assessed for plants, microbial diversity and biomass. However, at higher trophic levels, the global patterns and controlling factors of soil nematodes fed by plants or microbes remain unclear in context of N enrichment. Here, we presented a meta-analysis of 66 N addition experiments on nematode diversity and abundance. Our results revealed a negative dependence of nematode diversity on the N addition rate; however, not for nematode abundance. Across climate gradients, N addition reduced nematode diversity in dry regions but enhanced it in moist regions. Furthermore, N inputs suppressed nematode abundance in cold regions but promoted it in warm regions. Between different trophic levels, the abundance of high trophic-level nematodes (omnivorous-carnivorous) was reduced more than low-level groups (plant-, bacteria- and fungi-feeding nematodes). This occurred through negative N-induced effects, including increased ammonium (NH4+), soil acidification, and reduced microbial biomass. This study indicates that the considerable reduction in nematode communities due to higher N loads in the future will diminish their top-down impacts on plant and microbial activities and even simplify soil food web, particularly in cold and dry areas.

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