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Resistance of Bt-maize (MON810) against the stem borers Busseola fusca (Fuller) and Chilo partellus (Swinhoe) and its yield performance in Kenya

机译:Bt玉米(MON810)对stem虫Busseola fusca(Fuller)和Chilo partellus(Swinhoe)的抗性及其在肯尼亚的产量表现

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摘要

A study was conducted to assess the performance of maize hybrids with Bt event MON810 (Bt-hybrids) against the maize stem borer Busseola fusca (Fuller) in a biosafety greenhouse (BGH) and against the spotted stem borer Chilo partellus (Swinhoe) under confined field trials (CFT) in Kenya for three seasons during 2013–2014. The study comprised 14 non-commercialized hybrids (seven pairs of near-isogenic Bt and non-Bt hybrids) and four non-Bt commercial hybrids. Each plant was artificially infested twice with 10 first instar larvae. In CFT, plants were infested with C. partellus 14 and 24 days after planting; in BGH, plants were infested with B. fusca 21 and 31 days after planting. In CFT, the seven Bt hybrids significantly differed from their non-Bt counterparts for leaf damage, number of exit holes, percent tunnel length, and grain yield. When averaged over three seasons, Bt-hybrids gave the highest grain yield (9.7 t ha−1), followed by non-Bt hybrids (6.9 t ha−1) and commercial checks (6 t ha−1). Bt-hybrids had the least number of exit holes and percent tunnel length in all the seasons as compared to the non-Bt hybrids and commercial checks. In BGH trials, Bt-hybrids consistently suffered less leaf damage than their non-Bt near isolines. The study demonstrated that MON810 was effective in controlling B. fusca and C. partellus. Bt-maize, therefore, has great potential to reduce the risk of maize grain losses in Africa due to stem borers, and will enable the smallholder farmers to produce high-quality grain with increased yield, reduced insecticide inputs, and improved food security.
机译:进行了一项研究以评估Bt事件MON810(Bt-hybrids)的玉米杂交种在密闭条件下对生物安全温室(BGH)中的玉米茎bore(Busseola fusca(Fuller))和斑点茎spot(Chilo partellus(Swinhoe))的性能。 2013-2014年在肯尼亚进行了三个季节的现场测试(CFT)。该研究包括14个非商业化的杂种(七对近等基因Bt和非Bt杂种)和四个非Bt商业化杂种。用10只第一龄幼虫对每株植物进行两次人工感染。在CFT中,种植后14天和24天将植物感染了C.partellus;在BGH中,在种植后21天和31天用B.fusca侵染植物。在CFT中,这7个Bt杂种在叶片损伤,出孔数量,隧道长度百分比和谷物产量方面与非Bt杂种显着不同。在三个季节平均时,Bt杂交种的单产最高(9.7t ha -1 ),其次是非Bt杂种(6.9t ha -1 ),商业支票(6 t sup> -1 )。与非Bt杂种和商业支票相比,Bt杂种在所有季节的出口孔数和隧道长度百分比最少。在BGH试验中,Bt杂种始终比其非Bt近等高线遭受更少的叶片损伤。研究表明MON810可有效控制褐腐双歧杆菌和Part.us.Partellus。因此, Bt -玉米在降低非洲由于茎bore虫造成的玉米谷物损失的风险方面具有巨大潜力,并将使小农户能够以提高产量,减少杀虫剂投入的方式生产优质谷物,并改善了粮食安全。

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