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首页> 外文期刊>Euphytica >Characterization of resistance to Helicoverpa armigera in three lines of transgenic Bt Upland cotton
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Characterization of resistance to Helicoverpa armigera in three lines of transgenic Bt Upland cotton

机译:三株转基因Bt陆地棉对棉铃虫的抗性鉴定

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摘要

In the present study, different Bt cotton lines, Shanxi94-24, Zhongxin94 and R19, showed good efficacy against populations of Helicoverpa armigera, in both laboratory and field assays. Laboratory bioassays, however, indicated that there was a declining level of efficacy with plant age, as the mortality (%) of it Helicoverpa decreased gradually when fed leaves sequentially from the first to the last developing node from the main stem. The mortality of neonate insects fed leaves from the three transgenic lines was as high as 100% before flowering, but only 50%–70% or so by peak flowering and boll set. The temporal difference in resistance of these transgenic Bt cotton lines was also demonstrated in a second set of bioassays of transgenie leaves simultaneously collected from the transgenic plants planted at different times from March 1 to September 11, 1999 at intervals of twenty days. No difference in efficacy was observed over 3 or 4 successive generations of three transgenic lines, i.e., resistance was stable in different generations. This confirms the stable transmission and expression of the Bt gene after being integrated into the genome of the cotton plant. The relationship between the temporal difference in efficacy of transgenic cotton lines and the possible risk of resistance development in bollworm larvae to Bt cotton are also discussed.
机译:在本研究中,在实验室和田间试验中,不同的Bt棉系山西94-24,中信94和R19对棉铃虫种群均显示出良好的抗药性。然而,实验室生物测定法表明,随着植株年龄的增长,药效水平下降,因为从主茎的第一个到最后一个发育节点依次进食叶片,Helicoverpa的死亡率(%)逐渐降低。用这三个转基因品系的叶片喂食的新生昆虫的死亡率在开花前高达100%,但在开花高峰和铃铃形成时只有50%-70%左右。这些转基因Bt棉系的抗性在时间上的差异在第二套转基因叶片生物测定中得到了证实,该测定同时从1999年3月1日至9月11日的不同时间种植的转基因植物中收集,间隔为20天。在三个转基因品系的3或4个连续世代中未观察到功效差异,即在不同世代中抗性是稳定的。这证实了将Bt基因整合到棉花基因组中后,其稳定的传播和表达得以实现。还讨论了转基因棉花品系功效的时间差异与棉铃虫幼虫对Bt棉花产生抗药性的可能风险之间的关系。

著录项

  • 来源
    《Euphytica 》 |2002年第3期| 343-351| 共9页
  • 作者单位

    Key Laboratory for Crop Genetics Germplasm Enhancement Ministry of Education and Department of Genetics and Crop Breeding Nanjing Agricultural University;

    Key Laboratory for Crop Genetics Germplasm Enhancement Ministry of Education and Department of Genetics and Crop Breeding Nanjing Agricultural University;

    Key Laboratory for Crop Genetics Germplasm Enhancement Ministry of Education and Department of Genetics and Crop Breeding Nanjing Agricultural University;

    Key Laboratory for Crop Genetics Germplasm Enhancement Ministry of Education and Department of Genetics and Crop Breeding Nanjing Agricultural University;

    Key Laboratory for Crop Genetics Germplasm Enhancement Ministry of Education and Department of Genetics and Crop Breeding Nanjing Agricultural University;

    Department of Plant Protection Nanjing Agricultural University;

    Department of Plant Protection Nanjing Agricultural University;

    Department of Plant Protection Nanjing Agricultural University;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    expression; genetic stability; Helicorverpa armigera; managing resistance; resistance; tolerance to transgenic Bt cotton; transgenic Bt cotton;

    机译:表达;遗传稳定性;棉铃虫;抗病性;抗性;对转基因Bt棉的耐受性;转基因Bt棉;

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