Impact of bacterial inoculations on Pisum sativum L. biometric parameters and associated bacterial and AM fungal communities under semi-arid field conditions in Tunisia

IF 4.8 2区 农林科学 Q1 SOIL SCIENCE Applied Soil Ecology Pub Date : 2024-11-25 DOI:10.1016/j.apsoil.2024.105757
Houda Ilahi , Alice Calvo , Sana Dhane , Mustapha Missbah El Idrissi , Lahcen Ouahmane , Mohamed Najib Alfeddy , Thomas Reitz , Fabiano Sillo , Raffaella Balestrini , Bacem Mnasri
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Abstract

In Mediterranean agroecosystems, pea (Pisum sativum L.) is one important crop due to its nutritional benefits and high protein content. However, soil nutrient availability and soil health are known to affect pea productivity, especially under arid and semi-arid conditions. Currently, the use of plant growth-promoting bacteria (PGPB) may represent a bio-based tool to improve pea productivity in drought-affected areas. Nevertheless, there is limited knowledge on how PGPB inoculations in field could impact native communities of bacteria and arbuscular mycorrhizal fungi (AMF) in these areas. Here, a two-year field study in Tunisia was established to evaluate the effects of inoculating two pea varieties with three strains of potential PGPB, including Rhizobium laguerreae and two strains of Erwinia sp., on agronomic performance and soil microbial communities. Inoculations improved productivity and all measured biometric parameters, with the treatment including a consortia of the three strains showing the highest benefits. Metabarcoding analysis showed an increased bacterial and AM fungal diversity in soil of inoculated plants. Additionally, specific AMF-bacterial associations were identified, suggesting a synergistic role in enhancing soil health and pea growth. Overall, this study highlights the potential of targeted bacterial inoculations to improve pea performance under semi-arid environments by exploiting beneficial plant-microbe interactions. These results support the use of microbial inoculants as a sustainable agricultural practice in semi-arid areas, also improving the understanding of their impact on native bacterial and AM fungal communities.
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突尼斯半干旱田间条件下细菌接种对 Pisum sativum L. 生物计量参数以及相关细菌和 AM 真菌群落的影响
在地中海农业生态系统中,豌豆(Pisum sativum L.)因其营养价值和高蛋白含量而成为一种重要作物。然而,众所周知,土壤养分供应和土壤健康会影响豌豆的产量,尤其是在干旱和半干旱条件下。目前,使用植物生长促进菌(PGPB)可能是提高干旱地区豌豆产量的一种生物工具。然而,关于在田间接种 PGPB 如何影响这些地区的本地细菌群落和丛枝菌根真菌(AMF)的知识还很有限。在此,我们在突尼斯开展了一项为期两年的田间研究,以评估给两个豌豆品种接种三种潜在 PGPB 菌株(包括根瘤菌和两株 Erwinia sp.)对农艺表现和土壤微生物群落的影响。接种提高了生产率和所有测量的生物计量参数,其中包括三种菌株的联合菌株的处理效果最好。元条码分析显示,接种植物土壤中的细菌和AM真菌多样性有所增加。此外,还发现了特定的 AMF-细菌联合体,这表明它们在增强土壤健康和豌豆生长方面发挥着协同作用。总之,这项研究强调了有针对性的细菌接种在半干旱环境下通过利用有益的植物-微生物相互作用来提高豌豆生长性能的潜力。这些结果支持在半干旱地区使用微生物接种剂作为一种可持续的农业实践,同时也提高了人们对微生物接种剂对本地细菌和AM真菌群落的影响的认识。
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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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