EH Graham Centre, Charles Sturt University, Wagga Wagga, NSW 2678, Australia.
J Chem Ecol. 2013 Feb;39(2):283-97. doi: 10.1007/s10886-013-0248-5. Epub 2013 Feb 9.
Flavonoids are biologically active low molecular weight secondary metabolites that are produced by plants, with over 10,000 structural variants now reported. Due to their physical and biochemical properties, they interact with many diverse targets in subcellular locations to elicit various activities in microbes, plants, and animals. In plants, flavonoids play important roles in transport of auxin, root and shoot development, pollination, modulation of reactive oxygen species, and signalling of symbiotic bacteria in the legume Rhizobium symbiosis. In addition, they possess antibacterial, antifungal, antiviral, and anticancer activities. In the plant, flavonoids are transported within and between plant tissues and cells, and are specifically released into the rhizosphere by roots where they are involved in plant/plant interactions or allelopathy. Released by root exudation or tissue degradation over time, both aglycones and glycosides of flavonoids are found in soil solutions and root exudates. Although the relative role of flavonoids in allelopathic interference has been less well-characterized than that of some secondary metabolites, we present classic examples of their involvement in autotoxicity and allelopathy. We also describe their activity and fate in the soil rhizosphere in selected examples involving pasture legumes, cereal crops, and ferns. Potential research directions for further elucidation of the specific role of flavonoids in soil rhizosphere interactions are considered.
类黄酮是生物活性的低分子量次生代谢产物,由植物产生,目前已报道了超过 10000 种结构变体。由于其物理和生化特性,它们与亚细胞位置的许多不同靶标相互作用,在微生物、植物和动物中引发各种活性。在植物中,类黄酮在生长素的运输、根和芽的发育、授粉、活性氧的调节以及豆科植物根瘤菌共生中的共生细菌信号转导中发挥重要作用。此外,它们还具有抗菌、抗真菌、抗病毒和抗癌活性。在植物中,类黄酮在植物组织和细胞内和之间运输,并由根特异性释放到根际,在那里它们参与植物/植物相互作用或化感作用。随着时间的推移,通过根分泌或组织降解释放的类黄酮苷元和糖苷都存在于土壤溶液和根分泌物中。尽管类黄酮在化感干扰中的相对作用尚未得到很好的描述,不如一些次生代谢物,但我们提供了它们参与自毒作用和化感作用的经典例子。我们还描述了它们在涉及牧草豆科植物、谷类作物和蕨类植物的选定实例中的土壤根际中的活性和命运。考虑了进一步阐明类黄酮在土壤根际相互作用中的特定作用的潜在研究方向。