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Preferential sorption of phenolic phytotoxins to soil: Implications for altering the availability of allelochemicals

机译:酚类植物毒素优先吸附在土壤上:对改变化感物质的可用性的影响

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Allelopathy, secondary metabolite-mediated plant-to-plant interaction, is gaining application in current agricultural science as well as in invasion ecology. However, the role of sorption to soil in modifying the bioavailability of components in complex allelochemical mixtures is still obscure. Hence, the role of preferential sorption to soil in altering the chemical composition of plant exudates was studied in a silt loam soil using representative mixtures of plant phenolic acids, namely, hydroxybenzoic acid, vanillic acid, coumaric acid, and ferulic acid. The experiment was conducted using a batch equilibration technique, and data were fitted to a Freundlich isotherm. The concentration-dependent sorption coefficient (K-d) at 10 mu g mL(-1) was used to assess the sorption affinity of phenolic acids across different systems. Along with solid phase dissolution, all of the phenolic acids exhibited strong site-specific sorption, as evident from their nonlinear isotherms. Removal of organic matter substantially decreased the sorption affinity of all phenolic acids. Direct competition for sorption sites was observed even at low concentrations of phenolic acids. The K-d of hydroxybenzoic acid was decreased more than 90% in the presence of coumaric acid. About 95% of sorbed vanillic acid was displaced into the soil solution in the presence of ferulic acid. Hydroxybenzoic acid did not affect the sorption affinity of other phenolic acids significantly, whereas ferulic acid showed low displacement by other phenolic acids. The displacement pattern indicated directional sorption of phenolic acids with -OH and -COOH groups. Soil organic matter was associated with preferential sorption. This is the first study to elucidate competitive sorption characteristics of plant secondary metabolites in soil matrix. The results demonstrate that preferential sorption to soil can alter the availability of plant exudates in mixtures and thus may mediate their phytotoxic effects.
机译:二次代谢产物介导的植物间相互作用的化感作用正在当前的农业科学以及入侵生态学中得到应用。但是,吸附到土壤中改变复杂化感混合物中组分生物利用度的作用仍然不清楚。因此,在淤泥壤土中,使用植物酚酸的代表性混合物,即羟基苯甲酸,香草酸,香豆酸和阿魏酸,研究了土壤优先吸附对改变植物分泌物化学成分的作用。使用批平衡技术进行实验,并将数据拟合到Freundlich等温线。浓度依赖性吸附系数(K-d)在10μg mL(-1)处用于评估不同系统中酚酸的吸附亲和力。从固相溶解开始,所有酚酸均表现出较强的位点特异性吸附,这从其非线性等温线可以明显看出。去除有机物大大降低了所有酚酸的吸附亲和力。即使在低浓度的酚酸下,也观察到了对吸附位点的直接竞争。在香豆酸存在下,羟基苯甲酸的K-d降低了90%以上。在阿魏酸存在下,约95%吸附的香草酸被置换到土壤溶液中。羟基苯甲酸不会显着影响其他酚酸的吸附亲和力,而阿魏酸显示出较低的取代率。取代模式表明具有-OH和-COOH基团的酚酸的定向吸附。土壤有机质与优先吸附有关。这是第一个阐明植物次生代谢产物在土壤基质中竞争吸附特性的研究。结果表明,对土壤的优先吸附可以改变混合物中植物分泌物的利用率,因此可以介导其植物毒性作用。

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