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首页> 外文期刊>Planta medica: Natural products and medicinal plant research >Mutagenicity of natural anthraquinones from Rubia tinctorum in the Drosophila wing spot test.
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Mutagenicity of natural anthraquinones from Rubia tinctorum in the Drosophila wing spot test.

机译:果蝇翅斑试验中天然茜草的天然蒽醌的致突变性。

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摘要

Mutagenicity of anthraquinone aglycones from Rubia tinctorum L. (Rubiaceae) was examined using the somatic mutation and recombination test in Drosophila melanogaster. Larvae heterozygous for recessive wing trichome mutations, multiple wing hairs (mwh), and flare (flr3) were exposed to test compounds and wings of emerged mwh/flr3 females were inspected for the presence of phenotypically mutant mosaic spots. No significant increase in the frequency of mutant spots was observed after the treatment of Drosophila larvae with pure alizarin, xanthopurpurin, and lucidin, or with the crude mixture of anthraquinone aglycones. In contrast, the naphthohydroquinone mollugin induced mainly single spots that can originate either from somatic mutation or from mitotic recombination. Twin spots, consisting of both the mwh and flr3 subclones and originating exclusively from mitotic recombination, were also enhanced, but the increase was only marginally significant. We suggest that mollugin exhibits both the mutagenic and recombinagenic activities.
机译:在果蝇中使用体细胞突变和重组试验检测了茜草(Rubiaacec)的蒽醌苷元的致突变性。幼虫杂合的隐性翼毛状体突变,多翼毛(mwh)和耀斑(flr3)暴露于测试化合物,并检查出现的mwh / flr3雌性的翅膀表型突变的镶嵌斑的存在。在果蝇幼虫用纯茜素,黄嘌呤嘌呤和lucidin或蒽醌苷元的粗混合物处理后,未观察到突变点频率的显着增加。相比之下,萘氢醌类软体动物主要诱导单个斑点,该斑点可能源于体细胞突变或有丝分裂重组。由mwh和flr3亚克隆组成且仅起源于有丝分裂重组的双胞胎斑点也得到了增强,但这种增加仅微不足道。我们建议,软体动物展示了诱变和重组活动。

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