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首页> 外文期刊>Field Crops Research >Boll distribution patterns in Bt and non-Bt cotton cultivars: I. Study on commercial irrigated farming systems in South Africa.
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Boll distribution patterns in Bt and non-Bt cotton cultivars: I. Study on commercial irrigated farming systems in South Africa.

机译:Bt和非Bt棉花品种的棉铃分布模式:I.南非商业灌溉农业系统的研究。

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摘要

Cotton (Gossypium hirsutum L.) cultivars containing the cryIAc gene accounted for 81% of South Africa's cotton production in 2004. Current research on Bt cotton in developed countries has revealed that this transgenic crop provides a key means for enhancing yields and boosting profits. Our study was designed to assess the agronomic efficiency of Bt cotton particularly in South African commercial (Paper 1) and small-scale (Paper 2) farming systems. Over several consecutive years, we compared yield boll distribution patterns (using a plant mapping analysis) of a Bt cultivar (NuOpal) with a conventional nearly isogenic line (DeltaOpal). Compared with the non-Bt cultivar, Bt cotton had better early boll retention rates at the first and second positions on the fruiting branches. Beyond the third position this trend was reversed, indicating that non-Bt cotton varieties offset losses occurring at the first two positions by producing fruits at further positions. Bt cotton thus had a higher average boll weight, shorter vegetative cycle, earlier boll opening, and 13% higher yield potential on average than the conventional control. These results indicate that using the transgenic variety provided better protection against bollworm as compared to chemical treatments - which are likely not effective at the onset of bollworm infestation and do not protect the first bolls. These observations demonstrate the advantage of transgenic Bt cotton when grown under near optimal conditions..
机译:2004年,含有cryIAc基因的棉花(Gossypium hirsutum L.)品种占南非棉花产量的81%。发达国家对Bt棉花的最新研究表明,这种转基因作物为提高单产和增加利润提供了关键手段。我们的研究旨在评估Bt棉花的农艺效率,尤其是在南非的商业(论文1)和小规模(论文2)种植系统中。在连续几年中,我们比较了Bt品种(NuOpal)与常规近等基因系(DeltaOpal)的产量铃分布模式(使用植物作图分析)。与非Bt品种相比,Bt棉花在子实体的第一和第二位置的早期铃铃保留率更高。除了第三个位置以外,这种趋势已经逆转,表明非Bt棉花品种通过在其他位置生产果实来抵消前两个位置的损失。因此,与传统对照相比,Bt棉的平均铃重更高,营养周期更短,铃打开更早,平均单产潜力高出13%。这些结果表明,与化学处理相比,使用转基因品种提供了更好的针对棉铃虫的保护-这种化学处理在棉铃虫侵染时可能无效,并且无法保护第一个棉铃。这些观察结果证明了在接近最佳条件下种植转基因Bt棉花的优势。

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