在全球尺度上,氮素添加对土壤线虫的干旱阈值影响较小

IF 5.6 1区 农林科学 Q1 SOIL SCIENCE
Yifei Peng , Ruibo Zhang , Jinsong Wang
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引用次数: 0

摘要

土壤线虫受土壤湿度调节,确定了线虫总多样性的全球干旱阈值。氮沉降对土壤线虫也有影响,但对其干旱阈值的影响尚不清楚。在此,我们综合了101个全球N添加研究的403对观测结果,以研究N富集如何沿干旱梯度调节线虫的丰度和多样性。我们确定了线虫丰度、多样性和生态指数(如成熟度指数、植物寄生指数、结构指数、富集指数和通道指数)的干旱阈值。具体而言,总线虫、植食性线虫和杂食性-掠食性线虫的丰度阈值为0.27,而细菌和真菌食性线虫的阈值分别为0.22和0.26。添加氮肥提高了细菌取食线虫、植物取食线虫和杂食性捕食线虫丰度的干旱阈值,以及Shannon多样性和成熟度指数,但降低了通道指数的干旱阈值。我们还分析了N添加对低于和高于干旱阈值的线虫群落的影响。添加氮使细菌摄食线虫和杂食性-掠食性线虫的丰度超过各自的阈值。在干旱阈值以下和高于阈值的情况下,持续降低Shannon多样性和丰富度,并降低高于阈值的结构指数。施氮对植物寄生指数总体没有影响,但在干旱阈值以上显著降低了植物寄生指数。这些发现表明,N添加不会改变线虫总丰度的干旱阈值,但它改变了不同营养类群的阈值响应,突出了它们在未来N沉降背景下对干旱的差异敏感性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Nitrogen addition has a minor effect on aridity thresholds for soil nematodes at the global scale

Nitrogen addition has a minor effect on aridity thresholds for soil nematodes at the global scale
Soil nematodes are regulated by soil moisture, with a global aridity threshold identified for total nematode diversity. Nitrogen (N) deposition also influences soil nematodes, but its effect on their aridity threshold remains unclear. Here, we synthesized 403 paired observations from 101 global N addition studies to investigate how N enrichment regulates nematode abundance and diversity along the aridity gradient. We identified aridity thresholds for both nematode abundance, diversity, and ecological indices (e.g., maturity index, plant parasitic index, structure index, enrichment index, and channel index). Specifically, the abundance of total, plant-feeding, and omnivorous-predatory nematodes exhibited a threshold at an aridity index (AI) of 0.27, while bacterial- and fungal-feeding nematodes had thresholds at AI values of 0.22 and 0.26, respectively. N addition raised the aridity thresholds for the abundance of bacterial-feeding, plant-feeding, and omnivorous-predatory nematodes, as well as Shannon diversity and maturity index, but lowered the aridity threshold for the channel index. We also analyzed the effects of N addition on the nematode community both below and above aridity thresholds. N addition decreased bacterial-feeding and omnivorous-predatory nematode abundance beyond their respective thresholds. It consistently reduced Shannon diversity and richness, both below and above aridity thresholds, and lowered the structure index above the thresholds. While N addition did not change the plant parasitic index overall, it significantly decreased this index beyond aridity thresholds. These findings suggest that N addition does not alter the aridity threshold for total nematode abundance, but it modifies the threshold response of different trophic groups, highlighting their differential sensitivities to aridity in the context of future N deposition.
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来源期刊
Geoderma
Geoderma 农林科学-土壤科学
CiteScore
11.80
自引率
6.60%
发文量
597
审稿时长
58 days
期刊介绍: Geoderma - the global journal of soil science - welcomes authors, readers and soil research from all parts of the world, encourages worldwide soil studies, and embraces all aspects of soil science and its associated pedagogy. The journal particularly welcomes interdisciplinary work focusing on dynamic soil processes and functions across space and time.
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