Interactive effects between yields of Bt and non-Bt corn and planting dates in the southeastern United States.

Francis P F Reay-Jones, G David Buntin, Dominic D Reisig
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Abstract

Transgenic corn (Zea mays L.) expressing insecticidal toxins from Bacillus thuringiensis (Bt) helps to control or suppress injury from a range of target insect pests. This study summarizes the yield benefits of Bt corn from field trials in Georgia, North Carolina, and South Carolina evaluating Bt and non-Bt corn hybrids from 2009 to 2023. For Cry1A.105 + Cry2Ab2 and Cry1Ab + Cry1F Bt corn, the percentage increase in yield between Bt and non-Bt corn hybrids did not vary significantly among years or states. Across years, the percentage increase in yield for both Bt traits relative to non-Bt corn hybrids increased with planting date, indicating that the yield benefit of planting Bt corn was greater later in the growing season. On average, Bt hybrids in both families had a significantly higher yield compared to their non-Bt pairs, with yields declining in later planting dates. Yields declined with increasing kernel injury from Helicoverpa zea (Boddie) and leaf injury from Spodoptera frugiperda (J. E. Smith) in both Bt and non-Bt hybrids. While insect pressure increased in later planted corn trials, identifying causal relationships between increases in insect damage and associated yield losses in corn is challenging given the numerous factors that influence corn yield during the season. In addition to illustrating the highly variable yield benefits of planting Bt corn, our study suggests that yield increases in Bt corn may occur more frequently than previously documented in the southeastern United States.

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美国东南部Bt和非Bt玉米产量与种植日期之间的相互作用效应。
表达苏云金芽孢杆菌(Bt)杀虫毒素的转基因玉米(Zea mays L.)有助于控制或抑制一系列目标害虫的伤害。本研究总结了从 2009 年到 2023 年在佐治亚州、北卡罗来纳州和南卡罗来纳州评估 Bt 和非 Bt 玉米杂交种的田间试验中 Bt 玉米的产量效益。对于 Cry1A.105 + Cry2Ab2 和 Cry1Ab + Cry1F Bt 玉米,Bt 玉米杂交种与非 Bt 玉米杂交种的增产百分比在不同年份或州之间没有显著差异。在不同年份,两种 Bt 性状相对于非 Bt 玉米杂交种的增产百分比随种植日期的增加而增加,这表明在生长季节的后期种植 Bt 玉米的增产效益更大。平均而言,两个系列的 Bt 杂交种的产量明显高于非 Bt 杂交种,但在较晚的播种期产量有所下降。在 Bt 和非 Bt 杂交种中,随着 Helicoverpa zea(Boddie)造成的籽粒伤害和 Spodoptera frugiperda(J. E. Smith)造成的叶片伤害的增加,产量也在下降。虽然在后期种植的玉米试验中昆虫压力有所增加,但由于影响玉米产量的因素众多,要确定昆虫危害增加与玉米相关产量损失之间的因果关系具有挑战性。除了说明种植 Bt 玉米的产量效益变化很大之外,我们的研究还表明,在美国东南部,Bt 玉米的增产可能比以前记录的更为频繁。
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