The Influence of an Innovative Bioproduct on Soil and Substrate Characteristics during Strawberry Cultivation

S. Buragienė, Kristina Lekavičienė, A. Adamavičienė, E. Vaiciukevičius, E. Šarauskis
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Abstract

Farming systems should be sustainable in order to protect the soil from diseases and pests while preserving the environment and generating economic and social benefits. The use of biological products can help reduce the negative characteristics that damage the soil and increase the likelihood of healthy plant growth. Therefore, the aim of this study was to investigate the influence of biotreatment on the physical properties of different soils and substrates as well as strawberry (Fragaria × ananassa) yield. In the laboratory trials, “Asia” strawberries were grown one by one in special containers on different soils and substrates: loam (L), clay (C), sandy loam (SL), compost soil (CS), and coconut fiber (CF). The soils and substrates were treated once a week with a biological product based on molasses and magnesium sulfate and fertilized with a complex fertilizer: NPK11-11-21 + K2O + Mg, S, B, Cu, Fe, Mn, Mo, and Zn, enriched with potassium. Soil and substrate temperature, moisture, density, total porosity, aeration porosity, electrical conductivity as well as strawberry yield were measured in the test containers containing the plants. Studies have shown that the use of bioproducts does not significantly improve the physical properties of soils and substrates. However, the trend of the results shows that using the bioproduct for a longer period of time would have a greater effect on the physical properties of the soils and substrates, especially for peat-based substrates prepared for greenhouse use. Berry yields increased significantly (46.6% and 100%) with biotreatment in the CS and CF variants.
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创新生物产品对草莓栽培过程中土壤和基质特征的影响
农业系统应具有可持续性,以保护土壤免受病虫害,同时保护环境并产生经济和社会效益。使用生物产品有助于减少破坏土壤的负面特征,增加植物健康生长的可能性。因此,本研究旨在调查生物处理对不同土壤和基质的物理特性以及草莓(Fragaria × ananassa)产量的影响。在实验室试验中,"亚洲 "草莓在特殊容器中逐一种植在不同的土壤和基质上:壤土(L)、粘土(C)、沙壤土(SL)、堆肥土(CS)和椰子纤维(CF)。土壤和基质每周用糖蜜和硫酸镁生物制品处理一次,并施以复合肥:NPK11-11-21 + K2O + Mg、S、B、Cu、Fe、Mn、Mo 和 Zn,富含钾。在装有植物的试验容器中测量了土壤和基质的温度、湿度、密度、总孔隙度、通气孔隙度、电导率以及草莓产量。研究表明,使用生物产品并不能显著改善土壤和基质的物理性质。不过,结果的趋势表明,长时间使用生物制品会对土壤和基质的物理性质产生更大的影响,尤其是为温室使用而准备的泥炭基质。经过生物处理的 CS 和 CF 变体的浆果产量大幅提高(分别为 46.6% 和 100%)。
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