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Performance of sugar beet hybrids with sugar beet root maggot-resistant pollinators

机译:甜菜根抗授粉剂对甜菜杂种的表现

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摘要

Sugar beet root maggot (SBRM; Tetanops myopaeformis) is a major insect pest of sugar beet throughout much of North America. Two insecticides with the same mode of action are used almost exclusively for SBRM control. Alternative control strategies would be required if insecticide-resistant SBRM developed or the insecticides were no longer available due to regulatory actions. Germplasm lines with SBRM resistance are available, but information on the SBRM resistance of hybrid cultivars created by crossing these lines with a SBRM-susceptible cms parental line is lacking. This study compared the performance of four hybrids with SBRM-resistant pollinators to two susceptible hybrids, with and without insecticide, in four environments. In all environments, the hybrids with the SBRM-resistant pollinators and no insecticide had root yields equal to the SBRM-susceptible commercial hybrid with insecticide. In two environments, the root yields of the SBRM-susceptible hybrids were low and the difference between the root yields with and without insecticide was relatively small, indicating the insecticide was ineffective. In contrast, the root yields of the SBRM-resistant hybrids, with or without insecticide, in these trials were substantially higher than the susceptible hybrids and similar to corresponding root yields at the other sites. Based upon these trials, it appears that hybrids produced with the currently available resistance sources would have sufficient SBRM resistance to prevent catastrophic yield reductions due to SBRM feeding, could reduce uncertainty caused by fluctuations in insecticide effectiveness, would provide protection against the development of insecticide-resistant SBRM strains, and also provide a useful level of SBRM protection, if the current insecticides were no longer available.
机译:甜菜根(SBRM; Tetanops myopaeformis)是整个北美大部分地区的主要甜菜害虫。具有相同作用方式的两种杀虫剂几乎仅用于SBRM控制。如果开发了抗杀虫剂的SBRM或由于管制行动而不再提供杀虫剂,则将需要其他控制策略。可以使用具有SBRM抗性的种质品系,但是缺乏有关通过将这些品系与SBRM易感cms亲本品系杂交而产生的杂交品种的SBRM抗性的信息。这项研究比较了四种具有SBRM抗性授粉剂的杂种与两种有或没有杀虫剂的易感杂种在四种环境中的性能。在所有环境中,具有抗SBRM授粉剂且无杀虫剂的杂种的根系产量等于具有杀虫剂的SBRM易感商业杂种的根系产量。在两种环境中,SBRM易感杂种的根系产量较低,有和没有杀虫剂的根系产量之间的差异相对较小,表明该杀虫剂无效。相反,在这些试验中,有或没有杀虫剂的抗SBRM的杂种的根系产量显着高于易感杂种,并且与其他部位的相应根系产量相似。根据这些试验,看来使用目前可用的抗性源生产的杂种将具有足够的SBRM抗性,以防止由于SBRM进料而导致的灾难性减产,可以减少由杀虫剂效力波动引起的不确定性,可以为开发杀虫剂提供保护。如果目前无法使用杀虫剂,那么它们具有抗性的SBRM菌株,并且还提供了有用的SBRM保护水平。

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