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超越根区:揭示植物周围土壤性质和生物群梯度。

Beyond the rootzone: Unveiling soil property and biota gradients around plants.

机构信息

Institute of Botany, The Czech Academy of Sciences, Zámek 1, CZ-252 43 Průhonice, Czech Republic; Department of Botany, Faculty of Science, Charles University, Benátská 2, CZ-128 01 Prague, Czech Republic.

Institute of Botany, The Czech Academy of Sciences, Zámek 1, CZ-252 43 Průhonice, Czech Republic.

出版信息

Sci Total Environ. 2024 Nov 1;949:175032. doi: 10.1016/j.scitotenv.2024.175032. Epub 2024 Jul 25.

DOI:10.1016/j.scitotenv.2024.175032
PMID:39059657
Abstract

Although the effects of plants on soil properties are well known, the effects of distance from plant roots to root-free soil on soil properties and associated soil organisms are much less studied. Previous research on the effects of distance from a plant explored specific soil organisms and properties, however, comparative studies across a wide range of plant-associated organisms and multiple model systems are lacking. We conducted a controlled greenhouse experiment using soil from two contrasting habitats. Within each soil type, we cultivated two plant species, individually and in combination, studying soil organisms and properties in the root centre, the root periphery, and the root-free zones. We showed that the distance from the cultivated plant (representing decreasing amount of plant roots) had a significant impact on the abiotic properties of the soil (pH and available P and N) and also on the composition of the fungal, bacterial, and nematode communities. The specific patterns, however, did not always match our expectations. For example, there was no significant relationship between the abundance of fungal pathogens and the distance from the cultivated plant compared to a strong decrease in the abundance of arbuscular mycorrhizal fungi. Changes in soil chemistry along the distance from the cultivated plant were probably one of the important drivers that affected bacterial communities. The abundance of nematodes also decreased with distance from the cultivated plant, and the rate of their responses reflected the distribution of their food sources. The patterns of soil changes along the gradient from plant to root-free soil were largely similar in two contrasting soil types and four plant species or their mixtures. This suggests that our results can be generalised to other systems and contribute to a better understanding of the mechanisms of soil legacy formation.

摘要

尽管植物对土壤特性的影响众所周知,但植物根系到无根土壤的距离对土壤特性和相关土壤生物的影响研究得较少。以前对植物距离影响的研究探索了特定的土壤生物和特性,然而,缺乏跨广泛的植物相关生物和多个模型系统的比较研究。我们在一个控制温室实验中使用了两种不同生境的土壤。在每种土壤类型中,我们单独和组合培养了两种植物物种,研究了根中心、根外围和无根区的土壤生物和特性。我们表明,与培养植物的距离(代表植物根系数量的减少)对土壤的非生物特性(pH 值和可利用的 P 和 N)以及真菌、细菌和线虫群落的组成有显著影响。然而,具体模式并不总是符合我们的预期。例如,与丛枝菌根真菌丰度的强烈下降相比,真菌病原体的丰度与距培养植物的距离之间没有显著关系。沿距培养植物的距离,土壤化学变化可能是影响细菌群落的重要驱动因素之一。线虫的丰度也随距培养植物的距离而降低,其响应速度反映了它们食物来源的分布。从植物到无根土壤的梯度上土壤变化的模式在两种截然不同的土壤类型和四种植物物种或它们的混合物中基本相似。这表明我们的结果可以推广到其他系统,并有助于更好地理解土壤遗留物形成的机制。

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