More than a decade of irrigation alters soil nematode communities in a drought-prone Scots pine forest

IF 4.8 2区 农林科学 Q1 SOIL SCIENCE Applied Soil Ecology Pub Date : 2024-09-04 DOI:10.1016/j.apsoil.2024.105621
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Abstract

With their various feeding types, soil nematodes play a crucial role in the soil food web. Here, we investigated if and how soil nematodes responded to a long-term irrigation in a drought-prone Scots pine (Pinus sylvestris) forest in southern Switzerland, applied to study whether greater soil water availability would improve tree health and reduce tree mortality. After 14 years of irrigation, tree vitality and soil development had improved significantly. However, morphological observations of the soil nematodes revealed a decrease in their total number in the irrigated plots. Overall, the irrigated plots had a lower nematode richness compared with the dry control plots, but the Shannon index did not differ between the two treatments. In addition, the nematode community shifted significantly as a result of the irrigation. Soil physical parameters, such as sand and silt contents and bulk density, were significantly positively correlated with the nematode community in the irrigation treatment. According to a DNA marker sequence analysis, a total of 43 genera of nematodes were assigned. Predatory nematodes were significantly less abundant in the irrigated plots than in the dry control plots, as the average number decreased to 74 in the irrigated plots compared to 3579 in the dry control plots, while non-predators were not significantly affected. A differential abundance analysis revealed that the genera Tripyla and Anatonchus were the predators that declined the most. Overall, marker sequence analysis of forest soil nematodes appears to be a suitable tool for assessing changes in nematode communities and taxa. The disappearance of predatory nematodes under irrigation, however, can perhaps only be explained if other predatory animal groups, such as predatory mites or millipedes, are also analyzed at the same time.

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十多年的灌溉改变了易受干旱影响的苏格兰松树林中的土壤线虫群落
土壤线虫的食性多种多样,在土壤食物网中发挥着至关重要的作用。在这里,我们调查了土壤线虫是否以及如何对瑞士南部易受干旱影响的苏格兰松树林的长期灌溉做出反应,以研究更多的土壤水分供应是否会改善树木健康并降低树木死亡率。经过 14 年的灌溉,树木的生命力和土壤的发育都得到了显著改善。然而,对土壤线虫的形态观察显示,灌溉地块的线虫总数有所减少。总体而言,灌溉地块的线虫丰富度低于干旱对照地块,但两种处理的香农指数并无差异。此外,灌溉导致线虫群落发生了显著变化。在灌溉处理中,土壤物理参数(如含沙量、粉砂含量和容重)与线虫群落呈显著正相关。根据 DNA 标记序列分析,共确定了 43 个线虫属。灌溉地块中捕食线虫的数量明显少于干旱对照地块,灌溉地块中捕食线虫的平均数量减少到 74 条,而干旱对照地块中捕食线虫的平均数量为 3579 条,而非捕食线虫没有受到明显影响。丰度差异分析表明,Tripyla 属和 Anatonchus 属是减少最多的捕食者。总之,森林土壤线虫的标记序列分析似乎是评估线虫群落和类群变化的合适工具。然而,只有同时分析其他捕食性动物群落,如捕食性螨虫或千足类,才能解释灌溉条件下捕食性线虫的消失。
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来源期刊
Applied Soil Ecology
Applied Soil Ecology 农林科学-土壤科学
CiteScore
9.70
自引率
4.20%
发文量
363
审稿时长
5.3 months
期刊介绍: Applied Soil Ecology addresses the role of soil organisms and their interactions in relation to: sustainability and productivity, nutrient cycling and other soil processes, the maintenance of soil functions, the impact of human activities on soil ecosystems and bio(techno)logical control of soil-inhabiting pests, diseases and weeds.
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