Facenda Gracia, Real Miguel, Galán-Pérez Jose A, Gámiz Beatriz, Celis Rafael
Instituto de Recursos Naturales y Agrobiología de Sevilla (IRNAS), CSIC, Avenida Reina Mercedes 10, 41012 Sevilla, Spain.
Plants (Basel). 2023 Mar 10;12(6):1278. doi: 10.3390/plants12061278.
Soil plays a primary role in the activity of plant allelochemicals in natural and agricultural systems. In this work, we compared the phytotoxicity of three natural hydroxycoumarins (umbelliferone, esculetin, and scopoletin) to different model plant species (, , and ) in Petri dishes, and then selected the most phytotoxic compound (umbelliferone) to assess how its adsorption and dissipation in two distinct soils affected the expression of its phytotoxic activity. The root growth inhibitory effect of umbelliferone was significantly greater than that of esculetin and scopoletin, and the dicot species ( and ) were more sensitive to the hydroxycoumarins than the monocot species (). For all three plant species tested, the phytotoxicity of umbelliferone decreased in the following order: soilless (Petri dishes) > soil 1 > soil 2. In soil 2 (alkaline), umbelliferone displayed negligible adsorption ( < 0.01) and rapid biodegradation (t = 0.2-0.8 days), and its phytotoxicity was barely expressed. In soil 1 (acid), umbelliferone displayed enhanced adsorption ( = 2.94), slower biodegradation (t = 1.5-2.1 days), and its phytotoxicity was better expressed than in soil 2. When the microbial activity of soil 2 was suppressed by autoclaving, the phytotoxicity of umbelliferone, in the presence of soil, became similar to that observed under soilless conditions. The results illustrate how soil processes can reduce the allelopathic activity of hydroxycoumarins in natural and agricultural ecosystems, and suggest scenarios where the bioactivity of hydroxycoumarins may be better expressed.
在自然和农业系统中,土壤在植物化感物质的活性方面起着主要作用。在本研究中,我们在培养皿中比较了三种天然羟基香豆素(伞形酮、七叶亭和东莨菪素)对不同模式植物物种(、和)的植物毒性,然后选择了植物毒性最强的化合物(伞形酮)来评估其在两种不同土壤中的吸附和消散如何影响其植物毒性活性的表达。伞形酮对根生长的抑制作用明显大于七叶亭和东莨菪素,双子叶物种(和)比单子叶物种()对羟基香豆素更敏感。对于所有测试的三种植物物种,伞形酮的植物毒性按以下顺序降低:无土(培养皿)>土壤1>土壤2。在土壤2(碱性)中,伞形酮的吸附可忽略不计(<0.01)且生物降解迅速(t = 0.2 - 0.8天),其植物毒性几乎未表现出来。在土壤1(酸性)中,伞形酮的吸附增强(= 2.94),生物降解较慢(t = 1.5 - 2.1天),其植物毒性比在土壤2中表现得更好。当通过高压灭菌抑制土壤2的微生物活性时,在有土壤存在的情况下,伞形酮的植物毒性变得与无土条件下观察到的相似。结果说明了土壤过程如何降低自然和农业生态系统中羟基香豆素的化感活性,并提出了羟基香豆素生物活性可能更好表达的情景。