Instituto de Recursos Naturales y Agrobiología de Sevilla (IRNAS), CSIC, Avenida Reina Mercedes 10, 41012, Sevilla, Spain.
Sci Rep. 2019 Jul 5;9(1):9764. doi: 10.1038/s41598-019-46031-z.
Coumarins represent an important family of allelochemicals with fungicidal, bactericidal, insecticidal, nematicidal, and herbicidal properties. Like for other allelochemicals, the short persistence of coumarins in soils can reduce their biological activity and hamper their application as environmentally friendly agrochemicals. We evaluated the sorption of the coumarin umbelliferone by eight soils and six sorbent materials, and then selected two nanoengineered sorbents, hexadecyltrimethylammonium-modified Arizona montmorillonite (SA-HDTMA) and olive-mill waste biochar (BC), to assess the effect of their addition to two distinct soils on umbelliferone sorption, persistence, and leaching. Umbelliferone was sorbed to a greater extent by the acid soils (A1-A2, K > 4.0 L kg) than by the alkaline soils (B1-B6, K < 0.5 L kg). The addition of BC and SA-HDTMA at a rate of 4% to alkaline soil (B2) increased the umbelliferone sorption K value from 0.3 to 1.6-2.0 L kg, whereas their addition to acid soil (A1) increased the K value from 4.6 to 12.2-19.0 L kg. Incubation experiments showed that BC had more impact than SA-HDTMA on the persistence of umbelliferone in the soils, increasing its half-life from 0.3-2.5 to 1.2-14.4 days, depending on the soil. Furthermore, the addition of BC to the top 0-5 cm of soil columns reduced leaching of umbelliferone and led to accumulation of umbelliferone residues in the top 0-5 cm soil layer. The addition of nanoengineered materials, such as organoclays and biochars, could thus be a suitable strategy to increase the persistence and reduce the mobility of coumarins in the rhizosphere with the aim of prolonging their biological activity.
香豆素是一类重要的化感物质,具有杀菌、抑菌、杀虫、杀线虫和除草活性。与其他化感物质一样,香豆素在土壤中的短持留性会降低其生物活性,并阻碍其作为环保型农用化学品的应用。我们评估了 8 种土壤和 6 种吸附剂材料对香豆素伞形酮的吸附作用,然后选择了两种纳米工程化的吸附剂,十六烷基三甲基铵修饰的亚利桑那蒙脱石(SA-HDTMA)和橄榄加工厂废生物炭(BC),以评估将它们添加到两种不同土壤中对伞形酮吸附、持久性和淋溶的影响。与碱性土壤(B1-B6,K < 0.5 L kg)相比,酸性土壤(A1-A2,K > 4.0 L kg)对伞形酮的吸附程度更大。将 BC 和 SA-HDTMA 以 4%的比例添加到碱性土壤(B2)中,使伞形酮的吸附 K 值从 0.3 增加到 1.6-2.0 L kg,而将其添加到酸性土壤(A1)中,则使 K 值从 4.6 增加到 12.2-19.0 L kg。培养实验表明,BC 比 SA-HDTMA 更能影响伞形酮在土壤中的持久性,使伞形酮的半衰期从 0.3-2.5 增加到 1.2-14.4 天,这取决于土壤。此外,将 BC 添加到土壤柱的 0-5 cm 顶部减少了伞形酮的淋溶,并导致伞形酮残留在 0-5 cm 土壤层的顶部积累。因此,添加纳米工程材料,如有机黏土和生物炭,可能是一种增加香豆素在根际中的持久性和降低其移动性的合适策略,目的是延长其生物活性。