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首页> 外文期刊>Phytoparasitica >Spinosad resistance selected in the laboratory strain of Phenacoccus solenopsis Tinsley (Hemiptera: Pseudococcidae): studies on risk assessment and cross-resistance patterns
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Spinosad resistance selected in the laboratory strain of Phenacoccus solenopsis Tinsley (Hemiptera: Pseudococcidae): studies on risk assessment and cross-resistance patterns

机译:在Phenacoccus solenopsis tinsley的实验室菌株中选择的Spinosad耐药性(Hemiptera:pseudococcidae):风险评估和交叉模式的研究

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摘要

Cotton is a major cash crop of Pakistan and susceptible to a variety of insect attacks including the cotton mealybug, Phenacoccus solenopsis Tinsley (Hemiptera: Pseudococcidae). In this study we determined the rate of risk of resistance development in P. solenopsis against spinosad by selection experiments and also evaluated the cross-resistance of spinosad selected population with spinetoram, profenofos, and deltamethrin. The spinosad selected population developed 539.49 and 15,233.84-fold resistance after 22 generations of selection compared with field and laboratory susceptible populations, respectively. Cross-resistance induced due to selection with spinosad was very low, medium and very high to profenofos, spinetoram, and deltamethrin, respectively in P. solenopsis. Realized heritability (h(2)) of spinosad resistance was 0.06. At constant slope = 1.10, ten-fold increase in resistance to spinosad would require 8.27, 3.1, and 1.91 generations for their corresponding h(2) = 0.06, 0.16 and 0.26 at 95% selection intensity. At constant h(2) = 0.06, the number of generations needed for ten-fold increase in spinosad resistance would be 8.27, 15.78, and 23.30 for their corresponding slope values 1.10, 2.10 and 3.10, respectively if selection intensity is 95%. The development of spinosad resistance in P. solenopsis can be reduced by adopting IPM strategies such as insecticide rotation schemes, i.e. discontinue the use of the same insecticide for as long as possible, use of refuges and adoption of suitable cultural and biological control practices.
机译:棉花是巴基斯坦的主要现金作物,易受各种昆虫袭击的影响,包括棉花般的肌肉,斯内特·斯内斯特(Hemiptera:伪陶昔)。在这项研究中,我们确定了通过选择实验确定P. Solenopsis抗旋转肌肌的抵抗率。并评估了用Spinetoram,Profenofos和Deltamethrin的Spinosad选定群体的交叉抗性。与场和实验室易感群体相比,Spinosad的群体在22代选择后开发了539.49和15,233.84倍倍率。由于Spinosad选择引起的交叉抗性非常低,中,非常高,分别在P.Soletopsis中分别在p.升中培养,Spinetoram和Δδ。脊椎抗性的实现遗传性(H(2))为0.06。在恒定斜率= 1.10时,对相应的H(2)= 0.06,0.16和0.26的相应H(2)= 0.06,0.16和0.26的10倍的抗性耐药性增加。在恒定的H(2)= 0.06时,对于它们相应的斜率1.10,2.10和3.10,Spinosad电阻的10倍增加所需的几种几种代数的数量分别是选择强度为95%。通过采用诸如杀虫剂旋转方案的IPM策略,可以减少P.Spoletopsis的抗性抗性的发展,即尽可能使用相同的杀虫剂,使用避难所和采用合适的文化和生物控制实践。

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