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Screening for potential bioactive varieties of Sesamum indicum Pedaiaceae,using diamondback moth as a testinsect

机译:以小菜蛾为试验材料筛选印度芝麻的潜在生物活性品种

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摘要

Sesame,(Sesamum indicum)(L)Pedaliaceae,has recently been found to be bioactive due to its constituent lignans:sesamin,sesamol and sesamolin. There exist thousands of races or cultivated varieties in addition to those growing as wild plants around especially the world's southern hemisphere.Sesame varieties (54)collected from Africa(the suggested orion)and Asia(the highest producing area)were tested for possible bioactivity on a susceptible strain of diamondback moth Plutella xylosteUa(L)(Lepidoptera:Phtellidae).Diamondback moth was,chosen as an ideal test insect due to its record of resistance to most xenobiotics. This susceptible strain had been maintained on radish seedlings in the laboratory for at least 18 generations. The sesame varieties,some of which had evaded insect incidence in a field trial,were individually incorporated into wheat germ-based artificial diets for diamondback moth.Differences in parameters such as developmental periods,survival,longevity,insect size and fecundity were recorded. The results obtained indicate that the modified artificial diet with propionic acid as the only preservative,with 50%w/w composition of sesame leaves,showed differences among varieties and also when compared to leaves of radish seedlings in the diet. The bioactive mechanisms recorded could be attributed to either an antifeedant,a toxicant,a growth regulator or a combination.Comparisons between the radish-incorporated and the average of the sesame. Incorporated artificial diets were as follows:2nd instar larval survival up to 4 days,84%and 59%;larval Success to pupa,64%and 28%;pupal success to adult,53%and 9%,respectively. The average pupal weight was 7.6mg for the control and 4.8mg for the sesame varieties.Varieties with consistent bioactive indicators were further analyzed for other insect parameters.
机译:芝麻(Sesamum indicum)(L)Pedaliaceae,由于其组成木脂素:芝麻素,芝麻素和芝麻素,最近被发现具有生物活性。除了作为野生植物生长的那些外,还存在成千上万的种族或栽培品种,尤其是在世界南半球。从非洲(建议的猎户座)和亚洲(产地最高)收集的芝麻品种(54)进行了可能的生物活性测试。小菜蛾是小菜蛾的易感菌株。由于其对大多数外源生物的抗性记录,其被选为理想的测试昆虫。该易感株已在实验室的萝卜幼苗上维持了至少18代。将芝麻品种(其中一些在田间试验中规避了昆虫的发病),分别掺入了以小麦胚芽为基础的小菜蛾人工饲料中。记录了发育时期,生存期,寿命,昆虫大小和繁殖力等参数的差异。结果表明,以丙酸为唯一防腐剂的改良人工饲料,芝麻叶成分占50%w / w,品种间以及与萝卜苗叶片相比均存在差异。记录的生物活性机制可以归因于拒食剂,毒物,生长调节剂或两者的结合。掺入萝卜的芝麻与芝麻籽的平均值之间的比较。人工喂养方法如下:二龄幼虫成虫存活4天,分别为84%和59%;幼虫对to的成功率分别为64%和28%;对成年pu的成功率分别为53%和9%。对照的平均p重为7.6mg,芝麻为4.8mg。进一步分析了具有一致生物活性指标的品种的其他昆虫参数。

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  • 来源
    《》|2006年|250-257|共8页
  • 会议地点 Beijing(CN)
  • 作者单位

    Laboratory of Pesticide Toxicology Graduate School of Science Technology,Chiba University,648 Matsudo,Matsudo-shi,Chiba-ken,Japan 271-8510;

    Laboratory of Crop Science;

    Laboratory of Pesticide Toxicology;

  • 会议组织
  • 原文格式 PDF
  • 正文语种
  • 中图分类 农业科学;
  • 关键词

  • 入库时间 2022-08-26 13:56:51

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