D'Ambrosio Damon A, Huseth Anders S, Kennedy George G
Department of Entomology and Plant Pathology, North Carolina State University, Raleigh, NC, USA.
Pest Manag Sci. 2018 Mar 13. doi: 10.1002/ps.4907.
Reports of neonicotinoid seed treatment (NST) failure against Frankliniella fusca in the mid-south and southeastern USA led to the discovery of widespread resistance in these insect populations. Previous studies of NSTs in other crops have shown the concentration of the insecticide to change over time, which could reduce its efficacy. To understand this temporal effect in cotton with F. fusca, our study examined how plant age alters the effects of NSTs (imidacloprid, imidacloprid + thiodicarb and thiamethoxam) by examining larval establishment at multiple seedling ages during the period of cotton seedling susceptibility to this insect. Additionally, we used F. fusca populations with differing neonicotinoid sensitivity levels to understand how resistance impacts this changing efficacy.
Greenhouse studies showed that larval numbers were significantly greater on older NST-grown cotton seedlings. The population with elevated neonicotinoid resistance had a more rapid increase in larval number on thiamethoxam-treated plants over time.
NSTs reduce the number of F. fusca larvae on younger seedlings, but this effect declines as seedlings age. The duration of efficacy is shorter against neonicotinoid-resistant populations. Neonicotinoid resistance in cotton-infesting F. fusca populations may be accelerated by this time-dependent decrease in efficacy, which likely encourages low-dose exposure to these insecticides. © 2018 Society of Chemical Industry.
在美国中南部和东南部,有报道称新烟碱类种子处理剂(NST)对烟蓟马防治失败,这导致在这些昆虫种群中发现了广泛的抗性。此前对其他作物中NST的研究表明,杀虫剂的浓度会随时间变化,这可能会降低其功效。为了解棉花中烟蓟马的这种时间效应,我们的研究通过检查棉花幼苗对这种昆虫敏感期间多个幼苗年龄阶段的幼虫定殖情况,来研究植株年龄如何改变NST(吡虫啉、吡虫啉+硫双威和噻虫嗪)的效果。此外,我们使用了对新烟碱类敏感性水平不同的烟蓟马种群,以了解抗性如何影响这种变化的功效。
温室研究表明,在经NST处理的较老棉花幼苗上,幼虫数量显著更多。随着时间的推移,对新烟碱类抗性增强的种群在经噻虫嗪处理的植株上幼虫数量增加得更快。
NST可减少较年轻幼苗上烟蓟马幼虫的数量,但随着幼苗生长,这种效果会下降。对新烟碱类抗性种群的药效持续时间较短。侵染棉花的烟蓟马种群对新烟碱类的抗性可能会因药效随时间的下降而加速,这可能会促使这些杀虫剂的低剂量暴露。©2018化学工业协会。