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Metabolism of Methoxychlor by the P450-Monooxygenase CYP6G1 Involved in Insecticide Resistance of Drosophila melanogaster after Expression in Cell Cultures of Nicotiana tabacum.
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- Chemistry & Biodiversity, 2010, v. 7, n. 3, p. 722, doi. 10.1002/cbdv.200900020
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- Article
Impact of Bt -corn MON88017 in comparison to three conventional lines on Trigonotylus caelestialium (Kirkaldy) (Heteroptera: Miridae) field densities.
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- Transgenic Research, 2009, v. 18, n. 2, p. 203, doi. 10.1007/s11248-008-9207-2
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An evaluation of methods for assessing the impacts of Bt-maize MON810 cultivation and pyrethroid insecticide use on Auchenorrhyncha (planthoppers and leafhoppers).
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- Agricultural & Forest Entomology, 2008, v. 10, n. 4, p. 331, doi. 10.1111/j.1461-9563.2008.00394.x
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Rapid degradation of the Cry3Bb1 protein from Diabrotica-resistant Bt-corn MON88017 during ensilation and fermentation in biogas production facilities.
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- Journal of the Science of Food & Agriculture, 2008, v. 88, n. 10, p. 1709, doi. 10.1002/jsfa.3269
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Metabolism of imidacloprid and DDT by P450 CYP6G1 expressed in cell cultures of Nicotiana tabacum suggests detoxification of these insecticides in Cyp6g1-overexpressi ng strains of Drosophila melanogaster, leading to resistance.
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- Pest Management Science, 2008, v. 64, n. 1, p. 65, doi. 10.1002/ps.1472
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Impact of Bt maize pollen (MON810) on lepidopteran larvae living on accompanying weeds.
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- Molecular Ecology, 2006, v. 15, n. 9, p. 2677, doi. 10.1111/j.1365-294X.2006.02962.x
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Comparison of the Biotransformation of the <sup>14</sup>C-Labelled Insecticide Carbaryl by Non-Transformed and Human CYP1A1-, CYP1A2-, and CYP3A4-Transgenic Cell Cultures of Nicotiana tabacum.
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- Chemistry & Biodiversity, 2006, v. 3, n. 8, p. 878, doi. 10.1002/cbdv.200690091
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Biotransformation of atrazine in transgenic tobacco cell culture expressing human P450.
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- Pest Management Science, 2004, v. 60, n. 1, p. 49, doi. 10.1002/ps.770
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Biotransformation of [ring-U-<sup>14</sup>C]4-n-nonylphenol by Agrostemma githago cell culture in a two-liquid-phase system.
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- Biotechnology Letters, 2003, v. 25, n. 16, p. 1375, doi. 10.1023/A:1024968119882
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BIOSAFETY OF HYBRIDS BETWEEN TRANSGENIC VIRUS-RESISTANT SUGAR BEET AND SWISS CHARD.
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- Ecological Applications, 2001, v. 11, n. 1, p. 142, doi. 10.1890/1051-0761(2001)011[0142:BOHBTV]2.0.CO;2
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- Article
Metabolism of the herbicide glufosinate-ammonium in plant cell cultures of transgenic (rhizomania-resistant) and non-transgenic sugarbeet(Beta vulgaris), carrot (Daucus carota), purple foxglove (digitalis purpurea) and thorn apple (datura st
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- Pest Management Science, 2001, v. 57, n. 1, p. 46, doi. 10.1002/1526-4998(200101)57:1<46::AID-PS256>3.0.CO;2-1
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Impact of gene flow from cultivated beet on genetic diversity of wild sea beet populations.
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- Molecular Ecology, 1999, v. 8, n. 10, p. 1733, doi. 10.1046/j.1365-294X.1999.00769.x
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A biosynthetic route to [<sup>14</sup>C]-labelled rhamnolipids.
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- Journal of Labelled Compounds & Radiopharmaceuticals, 1997, v. 39, n. 8, p. 705, doi. 10.1002/(SICI)1099-1344(199708)39:8<705::AID-JLCR11>3.0.CO;2-7
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- Article