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麻疯树蒴果中的佛波醇酯在各种生物测定中的活性。

Activities of Jatropha curcas phorbol esters in various bioassays.

机构信息

Institute for Animal Production in the Tropics and Subtropics (480b), University of Hohenheim, Stuttgart, Germany.

出版信息

Ecotoxicol Environ Saf. 2012 Apr;78:57-62. doi: 10.1016/j.ecoenv.2011.11.002. Epub 2011 Dec 15.

Abstract

Jatropha curcas seeds contain 30-35% oil, which can be converted to high quality biodiesel. However, Jatropha oil is toxic, ascribed to the presence of phorbol esters (PEs). In this study, isolated phorbol ester rich fraction (PEEF) was used to evaluate the activity of PEs using three aquatic species based bioassays (snail (Physa fontinalis), brine shrimp (Artemeia salina), daphnia (Daphnia magna)) and microorganisms. In all the bioassays tested, increase in concentration of PEs increased mortality with an EC(50) (48 h) of 0.33, 26.48 and 0.95 mg L(-1) PEs for snail, artemia and daphnia, respectively. The sensitivity of various microorganisms for PEs was also tested. Among the bacterial species tested, Streptococcus pyogenes and Proteus mirabilis were highly susceptible with a minimum inhibitory concentration (MIC) of 215 mg L(-1) PEs; and Pseudomonas putida were also sensitive with MIC of 251 mg L(-1) PEs. Similarly, Fusarium species of fungi exhibited EC(50) of 58 mg L(-1) PEs, while Aspergillus niger and Curvularia lunata had EC(50) of 70 mg L(-1). The snail bioassay was most sensitive with 100% snail mortality at 1 μg of PEs mL(-1). In conclusion, snail bioassay could be used to monitor PEs in Jatropha derived products such as oil, biodiesel, fatty acid distillate, kernel meal, cake, glycerol or for contamination in soil or other environmental matrices. In addition, PEs with molluscicidal/antimicrobial activities could be utilized for agricultural and pharmaceutical applications.

摘要

麻疯树种子含有 30-35%的油,可转化为高质量的生物柴油。然而,麻疯树油是有毒的,这归因于存在佛波酯(PEs)。在这项研究中,使用三种基于水生生物的生物测定法(蜗牛(Physa fontinalis)、卤虫(Artemeia salina)、水蚤(Daphnia magna))和微生物来评估分离的佛波酯丰富馏分(PEEF)中 PEs 的活性。在所有测试的生物测定法中,PEs 浓度的增加会增加死亡率,蜗牛、卤虫和水蚤的 EC50(48 小时)分别为 0.33、26.48 和 0.95mg L(-1)PEs。还测试了各种微生物对 PEs 的敏感性。在所测试的细菌种中,化脓链球菌和奇异变形杆菌对 PEs 非常敏感,最小抑制浓度(MIC)为 215mg L(-1)PEs;而假单胞菌也很敏感,MIC 为 251mg L(-1)PEs。同样,真菌属的镰刀菌表现出 58mg L(-1)PEs 的 EC50,而黑曲霉和旋孢腔菌的 EC50 为 70mg L(-1)PEs。蜗牛生物测定法最敏感,1μg PEs mL(-1)时 100%的蜗牛死亡。总之,蜗牛生物测定法可用于监测麻疯树衍生产品(如油、生物柴油、脂肪酸馏分、仁粉、饼、甘油)或土壤或其他环境基质中的 PEs。此外,具有杀螺/抗菌活性的 PEs 可用于农业和制药应用。

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