首页> 外文期刊>Chemoecology: An International Journal Emphasizing Evolutionary Approaches to Chemical Ecology >Biologically active secondary metabolites in white clover (Trifolium repens L.) - a review focusing on contents in the plant, plant-pest interactions and transformation
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Biologically active secondary metabolites in white clover (Trifolium repens L.) - a review focusing on contents in the plant, plant-pest interactions and transformation

机译:白三叶草(Trifolium repens L.)中的具有生物活性的次生代谢产物-一项针对植物中内容,植物-害虫相互作用和转化的综述

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摘要

To exploit biologically active compounds from white clover (Trifolium repens L.) for suppressing weeds and soil-borne diseases, either as isolated products (biopesticides) or through cultivars with enhanced production of these compounds, the biologically active compounds must be identified, plant content measured, and their fate in soil known. The present review summarizes the published knowledge needed for such exploitation; providing essential information on structure and concentration of flavonols, flavones, condensed tannins, isoflavones, isoflavanones, pterocarpans, coumestans, cyanogenic glucosides, and saponins in healthy and stressed white clover plants. Various stresses and particular cultivars affect the concentrations of several of the compounds. Information on biological effects and the degradation/transformation of these compounds in plants or by microorganisms is available. There is no information on the degradation pathway in soil, the mechanisms of exudation and leaching of compounds from plants, and soil sorption properties of the compounds. The clover soil fatigue problem is increasing in grasslands and causes problems especially in organic farming. Research efforts focused on biological elements of clover soil fatigue have not explained it, and the influence of secondary metabolites has not been investigated. There are few investigations into the interaction between beneficial fungi/fungal-diseases and the occurrence of biologically active secondary metabolites in white clover plants. Such studies are critical to better understand beneficial fungi and pathogens.
机译:为了利用白三叶草(Trifolium repens L.)的生物活性化合物抑制杂草和土传疾病,无论是作为分离产品(生物农药)还是通过提高这些化合物产量的栽培品种,都必须鉴定生物活性化合物,植物含量测量,他们在土壤中的命运众所周知。本综述总结了这种开发所需要的公开知识;提供有关健康和强调白三叶草植物中黄酮醇,黄酮,缩合单宁,异黄酮,异黄酮,罗汉果,香豆素,氰基葡萄糖苷和皂苷的结构和浓度的基本信息。各种胁迫和特定栽培品种影响几种化合物的浓度。可获得有关植物或微生物中这些化合物的生物学效应和降解/转化的信息。没有关于土壤中的降解途径,化合物从植物中渗出和浸出的机理以及该化合物在土壤中的吸附特性的信息。草原的三叶草土壤疲劳问题正在加剧,尤其在有机农业中引起问题。尚未针对三叶草土壤疲劳的生物学因素进行研究,也未对次生代谢产物的影响进行研究。关于白三叶草植物中有益真菌/真菌病与生物活性次生代谢物之间相互作用的研究很少。这些研究对于更好地了解有益的真菌和病原体至关重要。

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