Nematode Communities in Soils of the Same Volcanic Origin across a Gradient of Naturalization: From Intensive Agriculture to Forest

Sustainability Pub Date : 2024-07-23 DOI:10.3390/su16156307
Silvia Landi, G. d’Errico, Barbara Manachini
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Abstract

Nematodes play a key role in ecological environments. Biotic indices based on soil nematode community are effectively used for assessing soil health status. This work represents the opportunity to investigate three different management practices continuously maintained for 40 or more decades on soils with the same geological origin. This unique feature allows us to reduce variables and link biotic with abiotic factors. Therefore, the nematode communities of three neighboring volcanic soils under different managements were examined. The maximum values in soil biodiversity were found in the forest environment in which all the trophic groups were detected and well balanced. Instead, in permanent grassing and carnation crop greenhouse (CG), biodiversity indices progressively decreased with the intensification of agricultural practices. Furthermore, CG showed a stronger dominance of a specific plant-parasitic nematode identified as Heterodera daverti. Nematode indicators demonstrated that changes in the nematode community gradually varied from anthropic to natural environments whereas soil properties were feebly correlated to nematode community indicators. In conclusion, we demonstrated that biodiversity and ecological indices applied to the soil nematode community are effective at detecting alterations due to anthropogenic impact. Nematodes seem to be susceptible to perceiving the soil dynamics.
同一火山产地土壤中的线虫群落跨越归化梯度:从密集农业到森林
线虫在生态环境中发挥着关键作用。基于土壤线虫群落的生物指数可有效用于评估土壤健康状况。这项工作为我们提供了一个机会,研究在具有相同地质起源的土壤上持续 40 年或更长时间的三种不同管理方法。这一独特之处使我们能够减少变量,并将生物因素与非生物因素联系起来。因此,我们研究了三种相邻火山土壤在不同管理方式下的线虫群落。在森林环境中,土壤的生物多样性达到了最高值,所有营养群都被检测到,而且非常平衡。相反,在永久性草地和康乃馨作物温室(CG)中,生物多样性指数随着农业实践的加强而逐渐降低。此外,在永久草地和康乃馨作物温室中,一种被确认为 Heterodera daverti 的特定植物寄生线虫占据了更大的优势。线虫指标表明,从人为环境到自然环境,线虫群落的变化逐渐不同,而土壤特性与线虫群落指标的相关性很弱。总之,我们证明了应用于土壤线虫群落的生物多样性和生态指数能有效检测人为影响造成的变化。线虫似乎很容易感知土壤的动态变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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