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Global challenges faced by engineered Bacillus thuringiensis Cry genes in soybean (Glycine max L.) in the twenty-first century

机译:苏云金芽孢杆菌工程化Cry基因在二十一世纪大豆(Glycine max L.)中面临的全球挑战

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摘要

The most important insect pests causing severe economic damages to soybean (Glycine max L.) production worldwide are Chrysodeixis includens (Walker, Noctuidae), Anticarsia gemmatalis (Hübner, Erebidae), Helicoverpa gelotopoeon (Dyar, Noctuidae), Crocidosema aporema (Walsingham; Tortricidae), Spodoptera albula (Walker, Noctuidae), S. cosmiodes (Walker, Noctuidae), S. eridania (Stoll, Noctuidae), S. frugiperda (Smith; Noctuidae), Helicoverpa armigera (Hübner, Noctuidae), H. zea (Boddie; Noctuidae) and Telenomus podisi (Hymenoptera,Platygastidae). Despite the success of biotech Bacillus thuringiensis (Bt)/herbicide tolerance (HT)-soybean in the past decade in terms of output, unforeseen mitigated performances have been observed due to changes in climatic events that favors the emergence of insect resistance. Thus, there is a need to develop hybrids with elaborated gene stacking to avert the upsurge in insect field tolerance to crystal (Cry) toxins in Bt-soybean. This study covers the performance of important commercial transgenic soybean developed to outwit destructive insects. New gene stacking soybean events such as Cry1Ac-, Cry1AF- and PAT-soybean (DAS-81419-2®, Conkesta™ technology), and MON-87751-7 × MON-87701–2 × MON 87708 × MON 89788 (bearing Cry1A.105 [Cry1Ab, Cry1F, Cry1Ac], Cry2Ab, Cry1Ac) are being approved and deployed in fields. Following this deployment trend, we recommend herein that plant-mediated RNA interference into Bt-soybean, and the application of RNA-based pesticides that is complemented by other best agricultural practices such as refuge compliance, and periodic application of low-level insecticides could maximize trait durability in Bt-soybean production in the twenty-first century.
机译:在全球范围内对大豆(Glycine max L.)的生产造成严重经济损失的最重要的害虫是金孢子虫(Walker,Noctuidae),双核抗Carcarsia gemmatalis(Hübner,Erebidae),Helicoverpa gelotopoeon(Dyar,Noctuidae),Crocidosema aporema(Walsingham; Tortricidae) ),斜纹夜蛾(Spodoptera albula)(沃克,夜蛾科),拟南芥(W. ; Noctuidae)和Telenomus podisi(膜翅目,lat科)。尽管在过去十年中,转基因苏云金芽孢杆菌(Bemillus thuringiensis)(em)(Bem)(Bt )/除草剂耐受性(HT)-大豆取得了成功,但由于变化,人们观察到了无法预料的减缓性能在气候事件中有利于抗虫性的出现。因此,需要开发具有精心设计的基因堆叠的杂种,以防止昆虫田间对 Bt -大豆中晶体(Cry)毒素的耐受性高涨。这项研究涵盖了重要的商业转基因大豆的表现,以胜过破坏性昆虫。新的基因堆叠大豆事件,例如 Cry1Ac -, Cry1AF -和 PAT -大豆(DAS-81419-2 ®,Conkesta™技术)和MON-87751-7×MON-87701–2×MON 87708×MON 89788(带有 Cry1A.105 [ Cry1Ab,Cry1F,Cry1Ac ], Cry2Ab,Cry1Ac )正在被批准并部署到现场。遵循这种部署趋势,我们在此建议植物介导的RNA干扰 Bt-大豆,并应用基于RNA的农药,并辅之以其他最佳农业实践,如避难所合规和定期施用在二十一世纪,使用低含量的杀虫剂可使Bem -大豆生产中的性状持久性最大化。

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