首页> 外文期刊>Biology and fertility of soils: Cooperating Journal of the International Society of Soil Science >Determining the effect of soil properties on the stability of scopoletin and its toxicity to target plants
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Determining the effect of soil properties on the stability of scopoletin and its toxicity to target plants

机译:确定土壤性质对靶植物稳定性的影响及其靶发植物的毒性

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摘要

The sorption of the allelochemical scopoletin (7-hydroxy-6-methoxycoumarin) was studied in eight agricultural soils and different model sorbents. We also determined its degradation in selected soils and related sorption and degradation results to the expression of scopoletin phytotoxicity in soil towards two model plant species, Eruca vesicaria and Hordeum vulgaris. Scopoletin was sorbed to a greater extent in acid soils than in alkaline soils. Correlations with soil properties indicated that the soil pH and fine (silt/clay) fraction played a primary role in the sorption of scopoletin by soils. Weak interactions controlled its sorption in acid soils, whereas stronger interactions, probably with mineral clay constituents, became more relevant in alkaline clay soils. Dissipation of scopoletin in the soils was microbial-mediated and occurred more slowly in acid than alkaline soils. As a result, the phytotoxic activity of scopoletin was expressed in acid but not in alkaline soil. The results point to the influence that soil properties are expected to exert on the expression of the phytotoxicity of scopoletin in natural and agricultural ecosystems.
机译:在八个农业土壤和不同模型吸附剂中研究了等等化学微氨基(7-羟基-6-甲氧基豆林)的吸附。我们还确定了在选定的土壤中的降解和相关吸附和降解结果,结果在土壤中的两种模型植物物种,Eruca Vesicaria和Hordeum ventgaris中表达了肺泡植物毒性的表达。 Scopoletin在酸性土壤中更大程度地吸附在碱性土壤中。土壤性质的相关性表明土壤pH和细(淤泥/粘土)分数在土壤中对水肺素的吸附起着主要作用。弱相互作用对酸性土壤的吸附,而相互作用较强,可能与矿物粘土成分,在碱性粘土土壤中变得更加重要。在土壤中的微蛋白耗散是微生物介导的,并且在酸中比碱性土壤更缓慢地发生。结果,Scopoletin的植物毒性活性在酸中表达但不含碱性土壤。结果指出,预期土壤性质的影响力施加在天然和农业生态系统中水瓢素的植物毒性的表达。

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