首页> 外文期刊>Silvae Genetica >Resistance of Transgenic Hybrid Triploids in Populus tomentosa Carr. Against 3 Species of Lepidopterans Following Two Winter Dormancies Conferred by High Level Expression of Cowpea Trypsin Inhibitor Gene
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Resistance of Transgenic Hybrid Triploids in Populus tomentosa Carr. Against 3 Species of Lepidopterans Following Two Winter Dormancies Conferred by High Level Expression of Cowpea Trypsin Inhibitor Gene

机译:转基因三倍体在毛白杨中的抗性。 of豆胰蛋白酶抑制剂基因高水平表达导致的两个冬眠后对3种鳞翅类动物的侵害

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摘要

Hybrid triploid poplars [(P. tomentosa x P. bolleana) x P. tomentosa] genetically engineered with cowpea trypsin inhibitor (CpTI) gene have been out-planted in field for two years. They were used to detect their efficacy against 3 species of poplar defoliators: forest tent capterpillar, Malacosoma disstria Hiibner, gypsy moth, Lymantria dispar Linnaeus and willow moth, Stilpnotia Candida Staudinger by using detached leaves and for the purpose of identifying the CpTI gene at the molecular level. Foliage of transgenic poplars elicited an increase in larval mortality rate and a decrease in foliage consumption, wet weight gains, faeces excretion, deposited pupae number and pupae weight, thus indicating its effectiveness in affecting the growth, development and fecundity of larvae rather than only directly killing them. PCR and Southern blotting analyses confirmed the stable incorporation of CpTI gene while pro-teinase inhibitory assays disclosed its high level expression in the two-field-season of transgenic trees. Efficacious insect resistance and higher content of CpTI in foliage were found in transgenic clone TG04, TG07, TG08 and TG71, demonstrating a correspondence between the insect resistance level and the CpTI content in the foliage of transgenic poplar.
机译:用cow豆胰蛋白酶抑制剂(CpTI)基因进行基因工程改造的杂交三倍体杨树[(P. tomentosa x P. bolleana)x P. tomentosa]已在田间种植了两年。它们被用于检测其对3种杨树落叶者的功效:使用离体的叶子并用于鉴定CpTI基因,目的是对三叶杨的落叶树种,森林的cap毛虫,马氏疟原虫Hiibner,吉普赛蛾,Lymantria dispar Linnaeus和柳蛾,Stilpnotia Candida Staudinger进行检测。分子水平。转基因杨树的叶片引起幼虫死亡率的增加,叶片消耗,湿重增加,粪便排泄,deposited的数量和number的重量减少,从而表明其有效地影响了幼虫的生长,发育和繁殖力,而不仅仅是直接影响杀死他们。 PCR和Southern印迹分析证实了CpTI基因的稳定整合,而蛋白蛋白酶抑制测定法揭示了CpTI基因在转基因树两场季节中的高水平表达。在转基因克隆TG04,TG07,TG08和TG71中发现了有效的抗虫性和叶片中CpTI的含量较高,表明转基因杨树叶片中的抗虫性水平与CpTI含量之间存在对应关系。

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