首页> 外文期刊>Natural product communications >Phytotoxicity of Triterpenes and Limonoids from the Rutaceae and Meliaceae. 5 alpha,6 beta,8 alpha,12 alpha-Tetrahydro-28-norisotoonafolin - a Potent Phytotoxin from Toona ciliata
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Phytotoxicity of Triterpenes and Limonoids from the Rutaceae and Meliaceae. 5 alpha,6 beta,8 alpha,12 alpha-Tetrahydro-28-norisotoonafolin - a Potent Phytotoxin from Toona ciliata

机译:芸香科和Mel科的三萜和柠檬苦素类的植物毒性。 5 alpha,6 beta,8 alpha,12 alpha-Tetrahydro-28-norisotoonafolin-一种来自香椿的有效植物毒素

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摘要

Limonoids and triterpenes are the largest groups of secondary metabolites and have notable biological activities. Meliaceae and Rutaceae are known for their high diversity of metabolites, including limonoids, and are distinguished from other families due to the frequent occurrence of such compounds. The increased interest in crop protection associated with the diverse bioactivity of these compounds has made these families attractive in the search for new allelopathic compounds. In the study reported here we evaluated the bioactivity profiles of four triterpenes (1-4) and six limonoids (5-10) from Meliaceae and Rutaceae. The compounds were assessed in a wheat coleoptile bioassay and those that had the highest activities were tested on the standard target species Lepidium sativum (cress), Lactuca sativa (lettuce), Lycopersicon esculentum (tomato) and Allium cepa (onion). Limonoids showed phytotoxic activity and 5 alpha,6 beta,8 alpha,12 alpha-tetrahydro-28-norisotoonafolin (10) and gedunin (5) were the most active, with bioactivity levels similar to, and in some cases better than, those of the commercial herbicide Logran. The results indicate that these products could also be allelochemicals involved in the ecological interactions of these plant species.
机译:柠檬苦素和三萜是次生代谢产物的最大组,并具有明显的生物学活性。科和芸香科以其代谢产物(包括柠檬苦素)的高度多样性而闻名,由于此类化合物的频繁出现而与其他家族区分开来。与这些化合物的多种生物活性相关的对农作物保护的兴趣日益增加,使这些家族在寻找新的化感病化合物方面具有吸引力。在这里报道的研究中,我们评估了Mel科和芸香科的四个三萜(1-4)和六个柠檬苦素(5-10)的生物活性。在小麦胚芽鞘生物测定法中对化合物进行了评估,并在标准目标物种小菜蛾(水芹),莴苣(莴苣),番茄(番茄)和洋葱洋葱(洋葱)上测试了活性最高的化合物。柠檬苦素类具有植物毒性活性,其中5个alpha,6个beta,8个alpha,12个α-四氢-28-去甲异黄酮(10)和根葛菌素(5)最为活跃,其生物活性水平与某些生物活性相似,并且在某些情况下要好于商业除草剂Logran。结果表明,这些产物也可能是参与这些植物物种生态相互作用的化感物质。

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