Soil properties that affect the adsorption of ΦITL-1 and ΦRSP bacteriophages

IF 2.8 3区 农林科学 Q3 ENVIRONMENTAL SCIENCES Journal of Soils and Sediments Pub Date : 2024-03-28 DOI:10.1007/s11368-024-03785-y
V. H. Guadarrama-Pérez, R. M. Robledo-Pérez, L. G. Treviño-Quintanilla, M. Carrillo-Morales, O. Guadarrama-Pérez, J. Hernández-Romano
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Abstract

Purpose

Identify soil properties involved in the adsorption of the bacteriophages (phages) ΦITL-1 and ΦRSP, analyzing different soils and substrates used for greenhouse tomato crops.

Methods

Soil samples were collected from greenhouses in Mexico Central, and soil properties were obtained using the NOM-021-RECNAT-2000. For phage adsorption, soil or substrate was mixed with a phage solution, using three different Water Retention Capacity (WRC) levels, incubated under shaking to room temperature, and finally, the plaque-forming units were counted for each phage by titration.

Results

The phage elution counts showed that the amount of aqueous solution in the mixture is inversely related to the number of viral particles adsorbed on the soil. Furthermore, the soils with a sandy texture had lower adsorption of phages in comparison with the rest of the soils analyzed, which have clay, clay loam, and sandy loam textures. A correlation analysis showed that soil pH and texture are the properties that most influenced phage adsorption. Finally, a principal component analysis showed that Cation Exchange Capacity (CEC) has a direct relationship with phage adsorption.

Conclusion

In the present study, we demonstrated that soil texture, pH, CEC, and WRC are determinant variables that affect the adsorption of R. solanacearum phages ΦITL-1 and ΦRSP. Furthermore, we propose that the responsible mechanism may be due to the richness of cations in the soil, which could imply an electrostatic interaction with some exposed phage proteins. These results highlight the influence of soil properties on biocontrol strategies based on phages, which try to reduce the impact of soil-borne bacterial phytopathogens.

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影响 ΦITL-1 和 ΦRSP 噬菌体吸附的土壤特性
目的通过分析用于温室番茄作物的不同土壤和基质,确定吸附噬菌体(噬菌体)ΦITL-1 和 ΦRSP 的土壤特性。方法从墨西哥中部的温室采集土壤样本,使用 NOM-021-RECNAT-2000 获得土壤特性。结果噬菌体洗脱计数表明,混合物中的水溶液量与土壤上吸附的病毒颗粒数量成反比。此外,与其他质地为粘土、粘壤土和沙壤土的土壤相比,质地为沙土的土壤对噬菌体的吸附量较低。相关分析表明,土壤的 pH 值和质地对噬菌体的吸附影响最大。结论 在本研究中,我们证明了土壤质地、pH 值、阳离子交换容量和 WRC 是影响 R. solanacearum 噬菌体 ΦITL-1 和 ΦRSP 吸附的决定性变量。此外,我们还提出,影响吸附的机制可能是由于土壤中含有丰富的阳离子,这可能意味着与某些暴露在外的噬菌体蛋白之间存在静电作用。这些结果凸显了土壤特性对基于噬菌体的生物防治策略的影响,这些策略试图减少土传细菌性植物病原体的影响。
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来源期刊
Journal of Soils and Sediments
Journal of Soils and Sediments 环境科学-土壤科学
CiteScore
7.00
自引率
5.60%
发文量
256
审稿时长
3.5 months
期刊介绍: The Journal of Soils and Sediments (JSS) is devoted to soils and sediments; it deals with contaminated, intact and disturbed soils and sediments. JSS explores both the common aspects and the differences between these two environmental compartments. Inter-linkages at the catchment scale and with the Earth’s system (inter-compartment) are an important topic in JSS. The range of research coverage includes the effects of disturbances and contamination; research, strategies and technologies for prediction, prevention, and protection; identification and characterization; treatment, remediation and reuse; risk assessment and management; creation and implementation of quality standards; international regulation and legislation.
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